Vedemy
1 days ago

Entry-Level Microbiology Research Associate Trainee Jobs at Syngene, Apply Online

 

Entry-Level Microbiology Jobs at Syngene | MSc Microbiology Jobs | Research Trainee Jobs

Syngene is offering a promising entry-level opportunity in its QC Microbiology division, providing fresh postgraduates with a solid launchpad into the pharmaceutical and biotechnology industry. This role is well suited for candidates eager to start their professional careers at a reputed, innovation-driven CRO, gaining practical experience in microbiological testing, quality control, and laboratory operations. For those exploring Entry-Level Microbiology Jobs at Syngene | MSc Microbiology Jobs | Research Trainee Jobs, this position delivers an excellent blend of industry-oriented training, regulatory exposure, and long-term career growth in Bangalore.


RESEARCH ASSOCIATE TRAINEE

Date: 12 Jan 2026

Location: Bangalore, KA, IN, 560099

Division: Essential Functions


JOB DESCRIPTION

Job Title: QC Microbiology Analyst

Job Location: Bangalore

Level: Entry Level

 

About Syngene:

Syngene ([www.syngeneintl.com] is a research-driven contract organization engaged in integrated discovery, development, and manufacturing services, supporting the entire journey from early research to commercial production.

At Syngene, safety is a core value embedded in both professional and personal conduct. The organization treats safety with the same importance as business performance, emphasizing shared responsibility and accountability through strict adherence to safety guidelines, procedures, and SOPs in both principle and practice.

 

Mandatory expectation for all roles as per Syngene safety guidelines

·         Consistently follow established safety practices and procedures, both individually and across aligned teams.

·         Support the development and implementation of procedures, practices, and systems that promote safe operations and ensure compliance with organizational integrity and quality standards.

·         Foster a workplace culture that emphasizes environmental responsibility, health, and safety (EHS), along with strong operational discipline at all times.

·         Maintain the safety of oneself, team members, and laboratory/plant facilities by strictly adhering to safety protocols and EHS requirements in the workplace.

·         Ensure timely completion of all mandatory trainings related to data integrity, health, and safety by self and all team members.

·         Adhere to Syngene’s quality standards consistently.

·         Take responsibility and hold teams accountable for achieving defined safety objectives.

·         Monitor, govern, and periodically review safety performance metrics.


Core Purpose of the Role:

·         Microbiology analysis (Bioburden, MLT, Test for specified organisms, BET analysis, Sterility)

·         Chemical analysis for water samples

·         Environmental Monitoring

·         Utility Monitoring

·         Water sampling

·         Microbiology lab maintenance

 

Role Accountabilities

·         Handle the receipt of samples including raw materials, in-process materials, finished products, and stability samples.

·         Perform microbiological testing, sterility testing, bacterial endotoxin testing, and chemical analysis of various water grades (PW, WFI, POW) in accordance with defined specifications.

·         Manage samples effectively and coordinate with the team to ensure smooth and timely sample release activities.

·         Conduct bioburden testing and microbial limit tests as required.

·         Execute method verification activities for BET, sterility, MLT, and bioburden assays.

·         Carry out environmental monitoring of clean rooms within the microbiology laboratory.

·         Manage all microbiology-related operations including media receipt, inventory maintenance, media preparation, sterilization, growth promotion testing, culture upkeep, and proper media disposal.

·         Monitor and review temperature records of laboratory equipment and clean rooms, along with differential pressure monitoring in the QC Microbiology laboratory.

·         Prepare disinfectants and oversee cleaning and fumigation activities within the microbiology laboratory.

·         Comply with established EHSS policies and maintain high standards of hygiene.

·         Take on additional microbiology-related responsibilities as assigned.

 

Syngene Values

All employees will consistently demonstrate alignment with our core values:

·         Excellence

·         Integrity

·         Professionalism

 

Skills and Capabilities

·       Conduct microbial testing of water, oral solid dosage (OSD) products, injectable products, and perform environmental monitoring activities.

·       Demonstrate a strong work ethic with high levels of dedication, enthusiasm, motivation, and the ability to contribute effectively within a team.

·       Possess good verbal and written communication skills, strong listening ability, keen attention to detail, and a proactive approach to work.

·       Adapt effectively to fast-paced, dynamic, and uncertain work environments.

·       Manage tight timelines efficiently while prioritizing tasks and responsibilities.

·       Exhibit the ability to generate innovative ideas and implement creative solutions.

·       Work collaboratively in a team setting and remain flexible to work in rotational shifts when required.

·       Maintain strong focus and accountability in assigned responsibilities.

·       Ensure accurate and thorough documentation practices.

 

Education: M.Sc. Microbiology

 

Vedemy
3 days ago

Scientist Job at BRIC-NIPGR | Life Sciences Candidates, Attend the Walk-in Interview

 

Scientist Job at BRIC-NIPGR | Life Sciences | Walk-in Interview

The BRIC–National Institute of Plant Genome Research (NIPGR) is conducting a walk-in interview for the esteemed post of Project Scientist-I. This Life Sciences opportunity is part of a high-impact, DBT-supported multi-institutional initiative centered on wheat genomics and climate resilience. The project focuses on leveraging advanced genomic approaches to enhance wheat productivity and improve its nutritional quality.

 

About the Institute

BRIC-NIPGR is an autonomous institute under the Department of Biotechnology (DBT) with a strong specialization in plant genomics. It offers a world-class research ecosystem for Life Science professionals, supporting both fundamental and applied research aimed at advancing crop improvement and strengthening food security.

 

Position Details

The National Institute of Plant Genome Research (NIPGR) is organizing a walk-in interview for a senior Project Scientist-I role. Although this position represents a substantial advancement for candidates aiming for Project Assistant posts, it is a crucial opportunity for Life Science professionals with expertise in crop genomics. The appointment is under a DBT-supported multi-institutional project led by Dr. Swarup K. Parida, concentrating on the identification of wheat traits to enhance climate resilience and nutritional value.

Position: Project Scientist-I (01 Post)

Emoluments: 56,000 + 27% HRA per month

Project Title: “Germplasm Characterization and Trait Discovery in Wheat using Genomics Approaches and its Integration for Improving Climate Resilience, Productivity, and Nutritional Quality”

PI: Dr. Swarup K. Parida, Scientist, NIPGR

Age Limit: Maximum 35 years.

Tenure: Initial appointment for one year, co-terminus with the project.

 

Eligibility & Desired Expertise

Applicants should have an outstanding academic record along with specialized technical expertise in plant molecular biology.

Essential Qualifications:

v  Ph.D. (Awarded) in Life Science, Biotechnology, Bioinformatics, or Plant Molecular Biology OR.

v  M.Tech in Engineering/Technology

v  Academic Record: Minimum 60% marks throughout their education.

v  Compliance with DST norms (OM SR/S9/Z-05/2019).

 

Desirable Experience:

 

·         Research publications in international journals of repute.

·         Technical Preference: Hands-on experience in CRISPR-Cas genome editing and genetic transformation in crops.

 

Walk-in Interview Schedule

In contrast to a typical Project Assistant application that is often conducted entirely online, this position requires candidates to appear in person before the selection committee.

·         Date: Wednesday, January 28, 2026.

·         Registration Time: 10:30 a.m. to 11:00 a.m. Candidates arriving after 11:00 a.m. will not be interviewed.

·         Interview Start: 11:00 a.m. onwards.

·         Venue: BRIC–National Institute of Plant Genome Research, Aruna Asaf Ali Marg, New Delhi–110067.

 

Required Documents:

·         Duly filled application form in the prescribed format.

·         Original degrees, transcripts, and experience certificates.

·         Copy of Ph.D. thesis and publications.

If you are aiming for a Project Assistant position but possess a Ph.D. with hands-on experience in CRISPR technology, this Project Scientist opening at NIPGR represents a natural career advancement. Although institutes like IISER regularly advertise comparable senior research roles, NIPGR’s strong emphasis on plant genomics makes this a distinctive Life Sciences opportunity in New Delhi. Candidates should report for registration by 10:30 a.m. on January 28, 2026, carrying all original documents and their thesis.

Vedemy
4 days ago

LV Prasad Eye Institute Hiring Life Sciences For Project Research Scientist Job, Applications Invited

 

PhD Life Sciences Jobs at LV Prasad Eye Institute, Applications Invited

LV Prasad Eye Institute, Hyderabad, invites applications for PhD Life Sciences positions under an ICMR-funded research project aimed at developing advanced therapeutic approaches for ocular diseases. Eligible Indian nationals are encouraged to apply for the post of Project Research Scientist-I (Non-Medical). This role provides a valuable opportunity for PhD graduates in Life Sciences, Medicinal Chemistry, or Pharmaceutical Chemistry to engage in high-end research encompassing molecular biology, microbiome analysis, and translational eye research. The position is well suited for candidates aspiring to pursue impactful PhD-level research careers at leading biomedical research institutions in India.


Post: Project Research Scientist-I

Location: LV Prasad Eye Institute, located at Banjara Hills, Hyderabad, is inviting applications from eligible and qualified Indian nationals for the post of Project Research Scientist-I (Non-Medical). The appointment is under an ICMR-funded research project titled “Therapeutic potential for the topical application of bacterial bioactive metabolites to modulate pathogenic interactions and inhibit growth of Corynebacterium in severe dry eye disease.” This position is purely contractual and will be based at BHERC, LV Prasad Eye Institute, Hyderabad. The duration of the appointment will be co-terminus with the project.

ICMR-Project: Intermediate

·      Principal Investigator: Dr. K. Anurasri

·      No. of posts: Project Research Scientist-I (Non-Medical) – 01 (Life Science)

·  Project Title: Therapeutic potential for the topical application of bacterial bioactive metabolites to modulate pathogenic interactions and inhibit growth of Corynebacterium in severe dry eye disease

·       Emoluments: Rs. 56,000/- + HRA (16,800/-) = Rs. 72,800/-

·      Duration: Initial appointment will be for one year, which may be further extended subject to the project duration and performance. The position will be co-terminated with the project.

·    Essential Qualification: The candidate must have first class in post graduate degree in Life Science / Medicinal / Pharmaceutical Chemistry with a Ph.D. Suitable candidates whose Ph.D. thesis is submitted may also apply.

·    Desirable Qualification: The applicant should possess hands-on experience with a range of molecular biology techniques, including cell culture, RT-qPCR, Western blotting, confocal microscopy, flow cytometry, RNA extraction, and related methods. A working knowledge of RNA sequencing data analysis and metabolomics data analysis is also expected.


Terms and Conditions

·         Interested candidates may send the CV to PI (Dr. K. Anurasri) at E-mail: [[email protected]] (mailto:[email protected]) on or before 17th January 2025. Please mention “Application for ICMR Intermediate project – Project Scientist I” in the subject line of the email.

·         Shortlisted candidates would be intimated by e-mail for the screening and interview (Online/Offline).

·         No TA/DA will be paid for attending the interview.

·         The candidate selected for above said post will be purely temporary and will be co-terminus with the project.

Vedemy
8 days ago

Entry-Level BSc Biotech Jobs at Syngene – Apply Online

 

BSc Biotech Jobs | Syngene is Hiring a Lab Operations Executive | Apply Now

 

Looking to launch your career with a reputed research organization? Syngene is inviting applications for the role of Lab Operations Executive in Bengaluru, presenting a great opportunity for graduates interested in BSc biotech and life science roles within a professional discovery biology setup. This entry-level position is well suited for individuals who are enthusiastic about laboratory operations, safety standards, and quality compliance.

 

Job Details

·         Job Title: Lab Operations Executive

·         Location: Bangalore, KA, IN, 560099

·         Division: Discovery Services

 

About the Company

Syngene is an innovation-driven contract research, development, and manufacturing organization that delivers end-to-end scientific services, from early-stage discovery to commercial production. Recognized worldwide for its operational excellence and strong ethical standards, Syngene prioritizes safety, quality, and professionalism across all its scientific and operational functions.

 

Key Responsibilities

·         Coordinate PR activities, manage inventory, oversee lab maintenance and daily operations, and ensure adherence to safety, compliance, quality, and data integrity standards within Discovery Biology.

·         Support organizational goals and strategic initiatives by contributing to lab and store maintenance, quality systems, PR coordination, inventory control, and maintaining safety, compliance, and data integrity across Discovery Biology functions.

 

Education

·         B.Sc. (Life science/Biotechnology)

 

Experience

 

·         Entry Level

 

Skills and Competencies

·         Manage casual staff and daily manpower requirements

·         Maintain and update laboratory logbooks accurately

·         Coordinate CapEX installation activities with cross-functional teams and external vendors

·         Ensure proper storage of inventory materials at ambient conditions in stores

·         Oversee and track routine day-to-day laboratory operational needs

·         Carry out scheduled defrosting of −20 °C and −80 °C laboratory equipment

·         Manage liquid nitrogen, dry ice, and wet ice requirements for different experiments and teams

·         Adhere strictly to Syngene laboratory safety rules and regulations

·         Monitor, record, and maintain cold room temperature logs

·         Provide support for Quality Management System (QMS) activities

·         Prepare media, buffers, and acids in accordance with established guidelines

·         Assist in LN₂ facility operations, including routine maintenance and upkeep of cell line inventory


Functional Skills

·         Excellent interpersonal, communication, collaboration, analytical skills.

·         Ability to work with team with professionalism and discretion.

This role offers a great opportunity to start your professional career with one of India’s leading CROs. For candidates looking for Syngene jobs that provide hands-on laboratory experience, a strong safety culture, and a commitment to scientific excellence, the Lab Operations Executive position serves as an ideal platform for growth in the life sciences sector.

Vedemy
11 days ago

Project Associate Jobs at TATA Memorial Centre ACTREC | Bioinformatics Jobs


Project Associate Jobs at TATA Memorial Centre ACTREC | Bioinformatics Jobs | Apply Now

 

Seeking high-impact Project Associate opportunities in cancer research? ACTREC under TATA Memorial Centre is inviting applications for a Project Associate-I position, combining bioinformatics, computational biology, and AI-driven cancer research—an excellent opportunity for life science postgraduates looking to build a strong and meaningful research career.

 

·         Location: Kharghar, Navi Mumbai

 

About the Institute:

The TATA Memorial Centre is widely recognized for its excellence in healthcare and plays a leading role in advanced cancer treatment, research, and education. Operating from the Advanced Centre for Treatment, Research and Education in Cancer (ACTREC) at Kharghar, Navi Mumbai, the institute is dedicated to advancing cancer research to enhance patient outcomes.

 

Reference No: ACTREC/ADVT-1/2026

 

Job Details:

·         Job Title: Project Associate – I (On Project)

·         Project Title: Microchromosomes and Their Role in Cancer

·         Mode of Interview: Online

 

Consolidated Salary:

·         Rs. 39,370/- per month. (Rs. 31,000/- + 27% HRA) p.m. or national fellowship, if available.

 

Duration:

·         Six months and extendable. (The work progress of candidates will be monitored, and extension may be given after 6 months.)

 

Key Responsibilities:

·         Computational data analysis related to cancer research

·         Bioinformatics and AI-based data interpretation

·         Supporting research activities linked to microchromosomes

·         Assisting in project documentation and reporting

 

Skills Required:

 

• Solid expertise in bioinformatics and computational biology

• Hands-on experience with data analysis and artificial intelligence tools

• Awareness of and adherence to national research standards

• Strong analytical abilities with effective problem-solving skills

 

Educational Qualification:

·         A Master’s degree in computational biology, bioinformatics, or allied areas with common programming subjects such as Python, R, Linux shell, etc.

 

Desirable Experience:

·         Preference will be given to candidates with hands-on experience in computational data analysis, including bioinformatics and artificial intelligence. Applicants who have qualified national-level examinations such as CSIR NET, GATE, or DBT-JRF will have an added advantage.

 

Important Dates:

·         Last Date to Apply: 14 January 2026 (up to 05:00 PM)

·         Interview Date: 21 January 2026

 

Steps to Apply:

v  Eligible candidates must submit the online application.

v  The application should include:

·         Recent CV

·         Degree certificates

·         Recent passport-size photograph

·         ID proof

·          Applications must be submitted online through the given Google Form link.

·         The last date of application is 14 January 2026 till 05:00 PM.

 

General Terms and Conditions:

·         Only shortlisted candidates will be contacted by email and informed about the interview date and timings.

·         Incomplete applications, including missing document attachments, will not be considered for shortlisting.

·         The interview will be conducted in online mode only.

·         The position is temporary and project-based in nature.

 

These Project Associate positions at ACTREC provide a prestigious gateway into cancer research under the TATA Memorial Centre, offering an excellent opportunity for candidates aiming to grow in bioinformatics and advanced life science research in India.

Vedemy
11 days ago

Scientist Job at NIPER | Life Sciences Candidates Apply Now For Project Research Scientist Position | Earn 72,800 per month


Scientist Job at NIPER | Life Sciences | Project Research Scientist | Apply Now

The National Institute of Pharmaceutical Education and Research (NIPER), Hyderabad, has opened applications for a prestigious Scientist position in its Department of Biological Sciences. This recruitment drive is linked to an ICMR-supported research project focused on developing innovative therapeutic approaches to combat drug-resistant tuberculosis. The Life Sciences role provides an excellent opportunity for researchers to work under the guidance of Dr. Nitin Pal Kalia, a renowned specialist in mycobacterial bioenergetics and infectious disease research.

 

About the Institute

NIPER Hyderabad is recognized as a “Centre of Excellence” in pharmaceutical sciences, offering state-of-the-art facilities for advanced drug discovery research. The institute houses modern animal facilities and BSL-3 laboratories essential for tuberculosis studies. A Scientist position at NIPER offers a highly respected environment for individuals aspiring to build careers in academic research or advanced pharmaceutical R&D.

 

About the Project

The project centers on studying the energy metabolism of Mycobacterium tuberculosis. It specifically examines how inhibition of key NADH dehydrogenases—enzymes involved in cellular respiration—results in synthetic lethality, a condition in which the bacteria are unable to survive due to the concurrent disruption of vital metabolic pathways.

 

Vacancy Details

·         Position: Project Research Scientist–I

·         Project PI: Dr. Nitin Pal Kalia; Co-PI: Dr. Vasundhra Bhandari

·         Fellowship: 72,800 per month (56,000 plus 30% HRA)

·         Annual Increment: 5% increase in salary from the third year

·         Age Limit: 35 years (relaxable by 5 years for SC/ST candidates and 3 years for OBC candidates)

 

Eligibility & Technical Requirements

Essential Qualification:

·         Postgraduate degree in Life Sciences, or allied fields with 2 years of research experience.


Desirable Skills for this Scientist Job:

·         BSL-3 Expertise: Experience handling Risk Group III pathogens (specifically M. tuberculosis) in high-containment Biosafety Level-2 and Level-3 facilities.

·         Molecular Biology: Proficiency in gene cloning, expression, and standard molecular assays.

·         Assay Development: Hands-on experience in in-vitro assay development and in-vivo (animal model) experimentation.

 

Application Process

 

·         Deadline: January 12, 2026.

·         Submission: Email a single PDF document containing your detailed resume (personal details, education, credentials, and DOB proof)

·         Subject Line: Must be “ICMR project post name application”.

·         Selection: Only shortlisted candidates will receive an email invitation for the interview.

Obtaining a Scientist position at NIPER Hyderabad through this recruitment initiative represents an important opportunity for researchers working in tuberculosis research. This Life Sciences role enables candidates to be part of a crucial ICMR-funded project and gain hands-on experience with advanced BSL-3 pathogens. Offering an attractive fellowship and a research-focused, innovation-driven environment, the position is well suited for postgraduates with expertise in molecular biology and animal experimentation. Applicants should ensure their applications are submitted to the Principal Investigator by January 12, 2026.


Vedemy
12 days ago

Apply Now for Genomic Analyst Job at AIC CCMB

 

Genomic Analyst Jobs | AIC-CCMB Recruitment | Apply Now

Seeking to take your life science career forward in clinical genomics? AIC-CCMB is inviting applications for Genomic Analyst roles within its Clinical Genomics & Bioinformatics team. This position provides practical, hands-on experience in real-world molecular diagnostics, next-generation sequencing, and clinical reporting, making it an excellent opportunity for professionals looking to build a meaningful career in bioinformatics with national-level impact.

 

Job Details:

Position Title: Genome / Bioinformatics Analyst

Location: Hyderabad, India

Type: Full-time

 

About the Centre

The Atal Incubation Centre – Centre for Cellular & Molecular Biology (AIC-CCMB) is a leading technology incubator located at CSIR-CCMB, Hyderabad, established under the Atal Innovation Mission of NITI Aayog, Government of India. It promotes and supports deep-science startups in the fields of life sciences and biotechnology. CSIR-CCMB offers more than 35 genetic tests to clinicians across the country, while AIC-CCMB delivers molecular diagnostics services through its Clinical Genomics & Bioinformatics division.

 

Key Responsibilities

·         Collaborate with the bioinformatics and laboratory teams to manage samples requiring NGS-based analyses.

·         Review quality control data and carry out NGS data analysis in accordance with established protocols and guidelines (exome, whole genome, mitochondrial genome), including troubleshooting data quality and technical issues.

·         Analyze, prioritize, and interpret clinically relevant disease-associated variants by integrating annotated variant data with genomic databases, prediction tools, ACMG guidelines, and clinical information.

·         Prepare clinical reports and work closely with the team to ensure timely delivery within defined turnaround times (TATs).

·         Contribute to internal research projects whenever required.

·         Coordinate with the reporting manager to enhance the accuracy and overall quality of reporting processes and outputs.

·         Apply appropriate methods for validation of identified variants when needed, assist in primer/probe design, and monitor developments following NGS reporting.


Required Experience

A Master’s degree or equivalent qualification in Biotechnology, Bioinformatics, Human Genetics, Genomics, Medical Genetics, Clinical Genetics & Diagnostics, or a related field, along with at least 1–2 years of relevant professional experience.

 

Skills

·         Should be able to pick up the job responsibilities efficiently within 3–4 months.

·         Understanding of genetic disorders and ACMG guidelines.

·         Strong analytical and problem-solving skills.

·         Excellent communication and teamwork abilities.

·         Ability to work well under pressure and meet deadlines.

·         Prior experience in NGS technologies will be an added advantage.

 

Salary

Best in industry as per experience

 

Last Date for Application: January 15, 2026

If you are looking to advance your life science career through meaningful genomic analyst roles, this opportunity at AIC-CCMB provides exceptional exposure to clinical genomics, diagnostics, and applied bioinformatics. Be part of a team that connects cutting-edge research with healthcare delivery on a national level.


Vedemy
14 days ago

Microbiology Jobs at Cipla – MSc Candidates Apply Online


Microbiology Jobs | Cipla is Hiring a Junior Team Member | Apply Now

 

If you are aspiring to build a rewarding career in microbiology within the pharmaceutical sector, Cipla is offering an opportunity to join as a Junior Team Member – Microbiology at its Baddi facility. This QA-focused role is well suited for MSc Microbiology graduates who wish to work in highly regulated environments, contributing to microbiological quality, regulatory compliance, and product safety while progressing along a respected career path at Cipla.

 

v  Job Details

·         Job Title: Junior Team Member – Microbiology

·         Location: Baddi, Himachal Pradesh

·         Req Id: 101687

 

About the Company

Cipla is an internationally reputed pharmaceutical organization renowned for its strong focus on quality, regulatory compliance, and patient-focused innovation. Equipped with advanced manufacturing facilities and robust quality assurance systems, Cipla provides promising long-term career opportunities for life science professionals in QA and Microbiology roles.

 

Key Responsibilities


·         Perform microbiological analysis based on assigned work plans and priorities

·         Evaluate and verify data in accordance with established specifications and microbiological procedures

·         Compile, review, and submit reports within stipulated timelines

·         Promptly identify and report errors, deviations, and non-compliance issues

·         Conduct investigations, initiate CAPA, and resolve laboratory-related errors

·         Maintain accurate raw data documentation in compliance with cGMP, GLP, and GDP requirements

·         Ensure strict adherence to SOPs and applicable regulatory standards

·         Oversee the upkeep, calibration, and performance evaluation of laboratory instruments and equipment


Education Qualification

 

·         M. Sc (Microbiology)

 

Relevant Work Experience

 

·         1–5 years’ experience for analyst and 3–7 years for reviewer in Microbiology

·         Good knowledge of Microbiology, skill to perform assigned task, communication in English

 

Skills Required

 

·         Strong knowledge of pharmaceutical microbiology

·         Hands-on experience in sterility testing and environmental monitoring

·         Understanding of cGMP, GLP, and regulatory compliance

·         Documentation and data review skills

·         Good communication skills in English

The Junior Team Member – Microbiology position at Cipla presents a strong entry-to-mid level career opportunity for life science graduates seeking to build a meaningful and stable career in Microbiology and QA roles. Offering practical exposure to pharmaceutical quality systems, regulatory requirements, and essential microbiological testing, this role is well suited for MSc Microbiology professionals aiming to advance within a reliable and well-established Cipla career framework. Individuals focused on long-term development, continuous learning, and contributing to healthcare quality are encouraged to apply.


Vedemy
15 days ago

Medical Coding Jobs at ICON Careers | Life Science Jobs 


Medical Coding Jobs at ICON Careers | Life Science Jobs | Apply | Now

Seeking medical coding roles that offer global exposure, strong clinical research experience, and long-term career growth? ICON Careers presents an excellent opportunity for life science graduates to work as a Medical Coding Specialist II. This role provides practical involvement in clinical trials, compliance-driven medical coding, and collaboration with international healthcare teams, making it an appealing career option for those aiming to build a future in clinical research.

 

·         Job Title: Medical Coding Specialist II

·         Locations: Bangalore, Chennai, Trivandrum, Bengaluru

·         Job Reference: JR139920

·         Department: Clinical Data Management

 

About the Company:

ICON plc is an internationally reputed healthcare intelligence and clinical research organization. With a strong focus on innovation and an inclusive work culture, ICON Careers enable professionals to play a key role in impactful clinical research while developing their careers in a supportive and high-performance workplace.

 

Job Overview:

The Medical Coding Specialist II position involves advanced coding of clinical trial data, with a strong emphasis on maintaining accuracy, uniformity, and regulatory compliance across multiple studies, while contributing to efficient and high-quality clinical data management processes.

 

Educational Requirements:

·         Bachelor’s degree in life sciences or a related discipline

 

Key Responsibilities:

·         Perform advanced medical coding using MedDRA and WHO Drug

·         Ensure accuracy and consistency of coded clinical trial data

·         Resolve complex coding discrepancies with cross-functional teams

·         Support development of medical coding conventions and procedures

·         Implement updates in coding standards across studies

 

Skills Required:

·         Strong understanding of medical coding standards

·         Experience in clinical trial data and regulatory requirements

·         High attention to detail and data accuracy

·         Effective communication and teamwork skills

·         Problem-solving ability in complex coding scenarios

 

Medical coding roles at ICON Careers provide a rewarding, growth-focused career path for life science graduates interested in clinical research. This position blends technical skill development, international exposure, and long-term career advancement within a well-established and trusted healthcare organization.

Vedemy
21 days ago


Quality Assurance Job at Licious | Microbiology & Food Technology Candidates, Apply Now

 

Quality Assurance Job at Licious | Microbiology & Food Technology | Apply Now

Licious, India’s top D2C food-tech company, is inviting applications for the role of Quality Assurance Executive at its Gurugram unit. This quality assurance position plays a crucial part in delivering fresh, premium-quality meat and seafood to millions of customers across more than 20 cities. Building a career with Licious means working in a dynamic, innovation-driven setup where food safety is paramount. The role is well suited for professionals looking for a responsible microbiology-focused position in the perishable products sector, with an emphasis on maintaining complete cold-chain integrity.

·         Job Position: Quality Assurance Executive

·         Location: Gurugram, Haryana, India

 

About the Company

Launched in 2015, Licious has reshaped India’s meat and seafood market with its farm-to-fork operating model. As a prominent Direct-to-Consumer brand, Licious oversees the complete supply chain, ensuring products remain fresh, unfrozen, and compliant with global quality standards. Choosing a career at Licious means working with advanced food technologies while contributing to a brand built on transparency and freshness.

 

Job Overview

The Quality Assurance Executive oversees the structured monitoring of meat processing operations to ensure compliance with FSSAI regulations and internal quality standards. This role demands a practical, hands-on involvement in food safety, covering everything from raw material checks to final product evaluation.

 

Key Responsibilities

v Food Safety & Compliance

·         Regulatory Adherence: Ensure all processes comply with HACCP, ISO 22000, and FSSAI guidelines.

·         Hygiene Standards: Conduct routine inspections of the production floor, equipment, and cold storage facilities.

 

v Testing & Microbiology

·         Parameter Analysis: Conduct sampling and testing of physical, chemical, and microbiological quality parameters.

·         Complaint Handling: Investigate quality issues and customer complaints to identify root causes and implement corrective actions.

 

v Audits & Documentation

·         Audit Support: Assist in internal and external quality audits, preparing all technical documentation and corrective action plans.

·         Reporting: Maintain real-time records of test results and quality parameters for the Regional Quality Manager.

 

v Process Improvement & Training

·         Optimization: Collaborate with supply chain and operations teams to identify production bottlenecks and enhance raw material quality.

·         Staff Training: Lead sessions for production staff on best practices, hygiene, and safety protocols.

 

Qualifications & Required Skills

To be successful in this quality assurance job, candidates must possess:

·         Education: Bachelor’s or Master’s degree in Food Technology, Microbiology, or related fields.

·         Experience: 2–3 years in QA/QC within the food industry, specifically with meat or perishable products.

·         Technical Knowledge: Strong understanding of FSSAI norms and ISO standards.

·         Attributes: High attention to detail, analytical mindset, and the ability to thrive in a dynamic, fast-paced environment.

 

Why Pursue a Licious Career?

·         Industry Leader: Work for India’s most successful D2C food-tech brand.

·         Skill Development: Gain specialized experience in cold chain management and high-standard microbiology job functions.

·         Growth: Opportunity to impact the production process of a brand serving over 32 lakh customers.

A quality assurance role at Licious Gurugram presents a strong career opportunity for food scientists and microbiology professionals. This position plays a key part in the Licious career journey, providing practical exposure to upholding top-tier food safety standards in the D2C industry. If you come from a microbiology background and are committed to ensuring perishable product quality, this is your chance to be a vital contributor to Licious’s success.

Vedemy
22 days ago

 

AI in Biotechnology: Transforming Drug Discovery and Personalized Medicine by 2033


AI in Biotechnology: Transforming Drug Discovery and Personalized Medicine by 2033

AI is rapidly transforming the biotechnology sector by enhancing how new treatments are discovered, developed, and delivered. From accelerating drug discovery to enabling personalized medicine, AI blends advanced technology with life sciences to drive innovation and reshape global healthcare. According to a recent Research and Markets report, the AI in biotechnology market—previously estimated at USD 3.23 billion in 2024—is now expected to reach nearly USD 14.97 billion by 2033. This impressive 21.1% CAGR signals a future where data-driven research, efficient drug development, and personalized medical solutions will play a central role in modern healthcare.

AI in Biotechnology’s Transformative Role

The use of AI in biotechnology goes far beyond a gradual technological improvement; it marks a fundamental shift in how research and the healthcare industry function. By analyzing vast biological datasets and predicting molecular interactions, AI-driven systems enable drug discovery to become faster, more accurate, and more cost-efficient.

Traditional research methods are unable to keep up with the massive volumes of genomic and clinical data produced daily, highlighting the need for AI in biotechnology. At present, AI algorithms help researchers identify drug targets, improve clinical trial efficiency, and advance personalized medicine tailored to individual patients. This allows healthcare solutions to be more precise by taking into account each patient’s genetic composition and health profile.

Market Growth and Key Drivers of Artificial Intelligence in Biotechnology

Four major trends have come to influence the advancement of AI in the biotechnology industry:

·         Surge in Biological Data: The fast-growing volume of genomic and clinical data is driving the need for powerful AI analytics, enabling advances in drug discovery and personalized medicine.

·         Faster Drug Discovery: AI helps lower development costs and reduce trial failures by accurately predicting the performance of potential drug candidates.

·     Advancement of Personalized Medicine: AI enables biotech companies and healthcare professionals to design and customize treatments based on the specific needs of each individual.

·         Automation and Operational Efficiency: AI streamlines every phase of biotechnology operation—from initial research to manufacturing—enhancing efficiency across drug discovery and personalized medicine processes.

These trends collectively create a smarter, faster, and more precise era of healthcare innovation.

Leading Innovators Driving AI in Biotechnology

Leading pharmaceutical giants such as Eli Lilly, AstraZeneca, Pfizer, Roche, and Novartis, together with innovators like DeepMind, Insilico Medicine, and Exscientia, are constantly expanding the scope of this field. Ongoing investments in AI-based drug discovery, personalized medicine initiatives, strategic collaborations, and cutting-edge technologies are reshaping therapeutic development worldwide.

According to the Research and Markets report, these advancements further establish AI as a core component of the future healthcare ecosystem—one that is predictive, personalized, and driven by data. As AI technologies continue to scale, their efficiency and impact will only increase.

The Road Ahead:

By 2033, AI in biotechnology will become essential to medical innovation, driving smarter drug discovery, more precise predictions, and enhanced outcomes in personalized medicine. As data continues to play a central role in healthcare, AI-driven biotechnology will achieve greater levels of efficiency, accuracy, and worldwide influence. The future of biotechnology will be strongly shaped by AI-enabled drug development, individualized treatment strategies, and highly adaptive personalized medicine systems designed to improve healthcare for everyone.

Vedemy
24 days ago

Brawn Laboratories Hiring Freshers For Microbiologist Jobs

 

Freshers Microbiologist Job Vacancies at Brawn Laboratories

Freshers Microbiologist Job Vacancies at Brawn Laboratories have opened up an excellent opportunity for early-career candidates looking to begin their professional journey in pharmaceutical and laboratory testing roles. This opening is ideal for B.Sc / M.Sc Microbiology graduates seeking hands-on experience in routine microbiological testing, water analysis, documentation, and GMP-compliant laboratory operations within a reputed organization.

 

Job Title: Microbiologist

Company: Brawn Laboratories

Location: Faridabad

Experience: 0 – 1 Year (Minimum 6 months experience preferred)

Salary: 2 3 Lacs P.A.

Gender Preference: Male (as per role requirement)

 

Job Summary

Brawn Laboratories is seeking a motivated and detail-oriented Microbiologist to support routine microbiological testing and laboratory operations. The role involves water testing, media preparation, and basic microbiological analysis in compliance with quality and safety standards.

 

Key Responsibilities

·         Carry out microbiological testing of raw water, purified water, and WFI in accordance with approved procedures

·         Prepare culture media, perform sterilization, and conduct growth promotion tests

·         Execute routine microbiological examinations, including:

·         Total Viable Count (TVC)

·         Environmental monitoring activities

·         Microbial limit testing

·         Ensure accurate documentation and record maintenance in line with GMP/GLP requirements

·         Assist with cleaning, sanitizing, and upkeep of the microbiology laboratory and its equipment

·         Adhere strictly to aseptic practices and laboratory safety guidelines

·         Provide support to senior microbiologists during investigations, validation activities, and audits

·         Maintain compliance with established quality standards and standard operating procedures (SOPs)

·         Report any deviations, out-of-specification results, or irregular findings to supervisors

·         Take part in routine laboratory operations and contribute to continuous improvement efforts

 

Educational Qualification

·         B.Sc / M.Sc in Microbiology or Biochemistry

 

Experience & Skills Required

·         At least 6 months of hands-on experience in a microbiology laboratory, preferably in pharmaceutical, food, or water testing environments

·         Fundamental understanding of GMP, GLP, and standard microbiological testing techniques

·         Working knowledge of common laboratory equipment such as autoclaves, incubators, laminar airflow units, and related instruments

·         Strong skills in documentation and maintaining accurate laboratory records

·         Flexibility to work in shifts when required

·         High level of attention to detail along with a strong eagerness to learn and develop new skills

Vedemy
25 days ago

Genomics Testing in India: How Reliance Plans a Cost Disruption


Can Reliance’s Genomics Testing Break the Cost Barrier and Transform Indian Healthcare?

Imagine going for a routine health check-up where a single, simple test can read your entire genome—revealing hidden disease risks and guiding personalized treatment—at a cost comparable to a regular blood test. What once seemed like a distant dream is now becoming reality in India. Spearheaded by Reliance Industries, this initiative aims to make genomic testing—long known for its high costs—affordable and accessible to the masses. This shift has the potential to fundamentally reshape healthcare decision-making in the years ahead.

 

The problem: powerful science, limited reach

Genomic testing is a well-established diagnostic tool that enables early disease detection, more effective treatment strategies, and truly personalized medical care. By analyzing an individual’s genome, doctors can uncover hidden disease risks, identify inherited conditions, and predict how patients may respond to specific drugs—allowing therapies to be tailored under the principles of personalized medicine. However, for much of India, this promise has remained out of reach. High costs—often 10,000 or morehave restricted DNA testing to a handful of elite hospitals and affluent patients. As a result, precision medicine has remained on the fringes of the Indian healthcare system, with preventive and predictive care being far less utilized than its potential allows.

 

The news: Reliance’s genomics push

According to recent reports and insights from industry experts and executives, Reliance is preparing for a nationwide launch of affordable genomic testing in the coming year, leveraging its expanding healthcare ecosystem. Following its acquisition of Strand Life Sciences, the company plans to introduce genomic or targeted DNA testing panels at prices below 1,000nearly one-tenth of the prevailing market cost. This strategy echoes Reliances well-known telecom approach of prioritizing scale before margins and represents one of the boldest moves yet to advance precision medicine in India.

 

What the early evidence shows

Reliance’s approach centers on selectively analyzing clinically significant regions of the genome—those most likely to be associated with disease risk and therapeutic response—rather than sequencing the entire genome.

 

Key observations from pilots and early deployments include:

·         Participants: Broad and diverse patient populations accessing genomic tests through hospitals and digital healthcare platforms.

·         Methodology: Targeted DNA analysis using blood or saliva samples, interpreted through AI-powered bioinformatics systems.

·         Comparison: Traditional, expensive genomic testing methods contrasted with automated, large-scale testing pipelines.

·         Findings: Accurate identification of key genetic markers linked to cancer susceptibility and treatment response.

·         Cost Implication: Significant reduction in testing costs while preserving clinical value, making precision medicine accessible to a much larger population.

 

How it works:

Think of the genome as an enormous instruction manual. Earlier genomic tests attempted to read the entire book—an approach that delivered detailed insights but came at a very high cost. Reliance’s model takes a smarter route by focusing only on the most critical and disease-relevant sections, while using AI to analyze and interpret the patterns within them. This streamlined approach makes testing much faster and significantly more affordable for the general population, enabling large-scale genomic screening without compromising essential clinical accuracy.

 

Why it matters for healthcare:

Affordable genomic testing has the potential to transform India’s healthcare system from a reactive model to a preventive one. Individuals with a family history of cancer can benefit from early risk assessment, often before any symptoms develop, enabling timely monitoring and intervention.

 

For doctors, genomic insights provide an added depth to clinical decision-making. They minimize the reliance on trial-and-error approaches and help in choosing more precise and effective therapies. Early adoption of genomic testing also reinforces the practice of precision medicine while contributing to lower long-term healthcare costs.

 

Reliance’s real advantage lies in its massive reach. By combining genomic testing with digital health platforms and pharmaceutical networks, the company can extend these services to millions of people—including those who have never viewed DNA testing as a routine part of healthcare.

Limits and open questions:

This approach is not a universal solution. Large-scale genomic testing brings important challenges related to data privacy, informed consent, and ownership of genetic information. From a scientific standpoint, targeted testing may overlook rare genetic variants, and the long-term consequences of widespread DNA screening are still under evaluation. Precision medicine is most effective when genomic data is combined with proper clinical interpretation and genetic counselling.


Even so, Reliance’s move into low-cost genomic testing marks a significant advancement rather than a quick fix. It will neither replace medical professionals nor eradicate disease, but it does expand the boundaries of what healthcare can achieve. By making DNA testing more accessible and broadening the reach of precision medicine, this initiative has the potential to substantially transform healthcare in India

Vedemy
28 days ago

Researchers Discover Ants’ Hidden Power Against Superbugs

New Study Shows Ants May Help Solve the Superbug Crisis

Can you imagine that the tiny insects crawling around, from gardens to kitchens, might actually help combat “superbugs”? Recent research suggests that ants could play a role in developing new antibiotics to fight harmful pathogens.
Researchers at Auburn University in the United States have discovered that ants are far more advanced than humans when it comes to antibiotic resistance. The study examined how ants use antimicrobial components to fight pathogens and how their defence mechanisms have remained effective throughout evolution.
Superbugs are bacteria and fungi that have developed resistance to even the most powerful antibiotics, causing serious concern among doctors as infections become increasingly difficult—or sometimes impossible—to treat. Researchers have found that ants can produce natural substances capable of killing harmful microbes, including superbugs. These findings may open new avenues for developing medicines to address the rising challenge of antibiotic resistance.
Humans have relied on antibiotics for under a hundred years, yet resistance to many infections has already emerged. In contrast, ants have been producing antimicrobial substances for tens of millions of years and have evolved effective strategies to prevent infections. As Dr. Penick, assistant professor of entomology and lead author of the study, noted, ants may offer valuable lessons on how to use potent antimicrobial compounds more effectively.

Tiny Ants, Big Antibiotic Warehouse

For this research, the scientists examined six ant species commonly found around college campuses and backyards in the southeastern United States. These everyday ants, often unnoticed underfoot, may have the potential to produce powerful antibiotics capable of combating superbugs.
A recent study published in the *Biological Journal of the Linnean Society* proposed two explanations for how ants control microbes without driving antibiotic resistance. The first hypothesis suggests that ants produce multiple classes of antimicrobial compounds derived from different chemical components. If one compound is ineffective, they switch to another combination to eliminate the germs. Penick explained that, similar to how humans change antibiotics when one fails, ants rely on a diverse range of antimicrobial chemicals. The researchers tested this idea using solvent extracts from ants and found evidence supporting the hypothesis.
The second hypothesis suggests that ants can generate antibiotics tailored to attack specific microbes. In humans, achieving such precise targeting is difficult, as antibiotics used to treat one infection often destroy beneficial microbes along with the harmful ones. This broad impact has contributed to the gradual development of drug resistance, leading to the emergence of superbugs.
The research demonstrates that ants are capable of producing distinct compounds that act against different types of pathogens. Some of these substances are effective against gram-negative bacteria, others target fungi, and a few work against gram-positive bacteria. The researchers tested all the ant extracts against the drug-resistant superbug Candida auris, a hospital-spreading fungus that poses serious treatment challenges. Remarkably, every extract showed strong effectiveness, nearly eliminating the superbug, indicating that ants may be a source of compounds with genuine therapeutic value.
“The next step is to determine precisely what these compounds are and understand their mechanisms of action,” Penick said. “This knowledge could guide our own approaches or even result in the discovery of new medically valuable compounds.” The research team also included Katy Chon, a graduate student at Kennesaw State University, and Darmon Kahvazadeh, a graduate research assistant in entomology and plant pathology at Auburn University.

Vedemy
29 days ago

Scientists Uncover a Surprise Link: A Single Gene May Directly Spark Mental Illness

Imagine learning that a single, tiny gene—no more than a minute strand within your DNA—could steer the brain toward emotional difficulties long before any signs are visible. For years, such a notion sounded unlikely. Scientists have generally believed that mental illness results from the combined effect of many small genetic factors interacting with life experiences. However, a recent study from Universität Leipzig has challenged this long-held view.

The scientists closely examined a rare gene known as GRIN2A, and their findings have taken the neuroscience field by surprise. Rather than functioning as just one small component of a complex system, this gene appears able to directly cause psychiatric symptoms on its own. In many individuals studied, these symptoms emerged far earlier than usual—sometimes in childhood—well before the age at which most mental illnesses typically develop.

The researchers examined medical and genetic data from 121 individuals carrying variants of the GRIN2A gene. Some children exhibited emotional difficulties, unusual changes in behavior, or early signs linked to severe conditions. Others showed mental health–related problems, such as mood fluctuations or anxiety-related traits, without the seizures or learning impairments typically associated with GRIN2A disorders. This unexpected pattern was one of the study’s most striking findings.

To explore what could be occurring within the brain, the researchers examined how GRIN2A influences the regulation of NMDA receptors. These receptors function like small electrical “channels” that enable communication between nerve cells. When GRIN2A is disrupted, these channels become less effective. Reduced signaling between neurons can lead to internal imbalances that may contribute to mental illness and other mental health problems, including anxiety.

What adds further interest to this study is the preliminary effort toward treatment. Working with pediatric neurologist Dr. Steffen Syrbe, the researchers provided L-serine—a naturally occurring compound that helps support NMDA receptor function—to some patients. Several participants reported noticeable improvements, including better overall mental well-being and reduced anxiety with improved emotional control. While it is much too soon to consider this a cure, the findings provide an encouraging sign.

This discovery was the result of years of dedicated work rather than a sudden finding. Professors Johannes Lemke and Steffen Syrbe have collaborated for almost 15 years, following families and collecting cases from across the globe. Through this sustained effort, they established the world’s largest registry of GRIN2A patients. That extensive dataset ultimately enabled them to identify a clear pattern indicating that, in certain cases, a single gene can directly contribute to mental illness.

This finding marks the beginning of a new phase in psychiatric genetics. It could allow clinicians to recognize vulnerable children at an earlier stage, develop more precise treatment approaches, and better understand why some individuals develop severe conditions while others face only mild mental health issues or anxiety. Above all, it highlights how even the smallest biological signals can uncover profound insights into the workings of the human mind.

Vedemy
31 days ago

The Immune Cells Behind Longevity: Scientists

Reveal New Ageing Clue

 

What if the secret to a longer, healthier life lay in a small population of immune cells? Instead of relying on a pill or device, longevity may come from within our own bodies, where immune cells—particularly T helper cells—quietly protect and maintain health. A recent study from Ben-Gurion University of the Negev indicates that a unique subset of T helper cells could play a crucial role in supporting healthier aging and extending lifespan.

 

With advancing age, cells gradually lose their capacity to repair damage. Senescent cells—those that no longer divide—form naturally over time, but their excessive accumulation can promote inflammation and harm surrounding tissues. This process contributes to visible aging and raises the likelihood of age-related diseases. As a result, developing strategies to eliminate these senescent cells has become a key focus in research on longevity and healthy aging.

 

A New Player in Immune Defense and Longevity:

 

The study, led by Prof. Alon Monsonego in collaboration with Prof. Esti Yeger-Lotem and Prof. Valery Krizhanovsky, has identified a previously unrecognized subset of T helper cells that becomes more abundant with age. Remarkably, these immune cells act as regulators, orchestrating immune responses to clear senescent cells, thereby slowing the aging process and promoting longevity.

 

These results were further reinforced by studies involving supercentenarians (individuals over 100 years old), in whom this specialized subset of T helper cells was present at high levels, indicating a strong association with longevity and healthy aging.

 

Experimental Highlights: Immune Cells and Longevity in Action

 

Here’s what the researchers found:

v  Subject groups: The research involved experiments in mice, supported by observations from human participants over 100 years old, to investigate the role of immune cells—particularly T helper cells—in aging and longevity.

 v  Intervention: Researchers reduced the levels of the specialized T helper cells in mice to examine how this change influenced aging, bodily functions, and overall lifespan.

 v  Control vs. treatment: Mice with reduced numbers of T helper cells showed accelerated aging compared to mice that maintained normal levels of these immune cells.

 v  Outcomes: Lowering the levels of T helper cells led to faster aging and a reduced lifespan, highlighting their crucial role in maintaining healthy aging and promoting longevity.

 v  Human observations: Supercentenarians were found to have elevated levels of this specific T helper cell subset, further strengthening the link between these immune cells and exceptional longevity.

 

How These Immune Cells Work to Support Longevity

 

These T helper cells can be viewed as “cellular caretakers.” They move throughout the body, detecting and removing senescent cells before they trigger inflammation. In essence, they function as an internal housekeeping system, clearing molecular waste to preserve proper tissue function. By supporting immune balance, these T helper cells help maintain overall health, strength, and conditions favorable for longevity.

 

Implications for Human Health, Aging, and Longevity

 

These discoveries may transform our understanding of longevity and healthy aging. Rather than attempting to overhaul the entire immune system, the study emphasizes the value of supporting age-specific immune responses, particularly the distinct functions of T helper cells.

 

Monitoring these immune signatures from early adulthood could help estimate biological aging and assess the risk of age-related diseases. Additionally, this discovery may pave the way for new diagnostic tools and immune-based therapies aimed at slowing aging and enhancing longevity.

 

Limitations and Open Questions:

 

Although the findings are encouraging, several questions remain unanswered. How safe and effective would treatments targeting immune cells, particularly T helper cells, be in humans? Could increasing these cells during midlife lead to unintended side effects? And can these results be developed into long-term therapies that genuinely enhance longevity? Further research is required.


Looking Forward: Immune Cells as a Key to Longevity

 

By gaining deeper insight into these specialized cells, researchers are opening new avenues for promoting healthy aging. Although the study does not suggest eternal youth, it presents practical ways in which the immune system—particularly T helper cells—could play a role in extending longevity and improving quality of life.

Vedemy
38 days ago

Autonomous labs and AI to boost biotech research


Robotics and artificial intelligence (AI) are set to significantly support researchers in strengthening the US bioeconomy. The Department of Energy (DoE) has launched a new initiative by commissioning an advanced platform that enables scientists to study bacteria and fungi with potential applications in the production of chemicals, biomaterials, energy, fuels, and even the extraction of critical minerals from the earth.

 

The Anaerobic Microbial Phenotyping Platform (AMP2), developed by Ginkgo Bioworks, is described as the world’s largest science system capable of autonomous experimentation on anaerobic microbes. According to the DoE, this groundbreaking platform will revolutionize the way microbes are identified, cultivated, and optimized—reducing timelines from years to just days or weeks through the use of automation and AI.

 

AMP2 is housed at the Environmental Molecular Sciences Laboratory within the Pacific Northwest National Laboratory (PNNL) in Washington, USA, and is scheduled to become operational in January 2026. The facility will be accessible to researchers across the United States working in collaboration with the DoE to study anaerobic microbial characteristics.

 

PNNL highlights that although bacteria and fungi are extensively used in industrial applications, much of the progress to date has relied on trial-and-error approaches. Significant knowledge gaps remain regarding microbial behavior under varying environmental and growth conditions, as well as how such behavior can be directed to generate materials beneficial to society.

 

The DoE further stated that AMP2 will act as a foundational model for the larger Microbial Molecular Phenotyping Capability (M2PC). Collectively, these platforms aim to form the world’s most extensive autonomous microbial research infrastructure, positioning the United States at the forefront of biotechnology, biomanufacturing, and next-generation materials innovation. Construction of the M2PC facility is expected to begin next year, with completion and usability targeted for 2030. Both initiatives are funded by the DoE Office of Science.

 

Describing the operational framework, PNNL explained that robotic systems will continuously handle tasks such as filling, loading, and transporting sample containers. Beyond this, the platform will enable automated experimental pipelines, where the outcome of one experiment directly informs the next without the need for ongoing human involvement.

 

Advanced AI-based analytical tools will process experimental results in real time, rapidly adjusting subsequent experiments based on emerging data—far more quickly than manual approaches. The system can independently progress through experimental stages or work alongside scientists to refine experimental designs, with automation engineers overseeing system operations and maintenance.

 

This highly automated setup will allow researchers to conduct a far greater number of experiments, generating vast datasets and enabling faster, more efficient scientific conclusions compared to traditional research methods.

 

Douglas Mans, Interim Director of Earth and Biological Sciences at PNNL, noted that achieving precise control over microbial behavior requires experimental capabilities beyond what is currently available. He emphasized that the integration of modular, research-driven automation with AI in AMP2 and M2PC will empower scientists to explore microbial systems at unprecedented scales and depths.

 

The global bioeconomy, currently valued at over $4 trillion, is projected to exceed $30 trillion within the next 30 years. The DoE believes that the development of the nation’s most advanced autonomous facility for anaerobic microbial research will be instrumental in driving this growth.

 

Scott Baker, Leader of the Microbial Molecular Phenotyping Capability and a key contributor to both AMP2 and M2PC, stressed the importance of understanding microbial phenotypes. He pointed out that only a small proportion of Earth’s microbial diversity has been studied so far, and gaining predictive control over microbial functions will require large collaborative research teams supported by world-class laboratory infrastructure. Baker added that the convergence of AI and autonomous science creates an ideal environment for transformative advances in biotechnology.

 

Finally, the DoE stated that these platforms align with the US Government’s Genesis Mission, announced in November. This mission represents a coordinated national initiative to accelerate AI-driven scientific innovation aimed at addressing some of the most complex challenges of the century. Central to the mission is the creation of an integrated AI system that leverages extensive federal scientific datasets—compiled over decades—to develop foundational scientific models, deploy AI agents for hypothesis testing, automate research processes, and speed up scientific discovery.

 


Vedemy
41 days ago

Carbon capture – using coffee grounds and plastic waste


Researchers in the United Arab Emirates have patented a new technology that uses discarded coffee grounds and plastic waste to capture carbon dioxide (CO₂), offering promising applications across various industrial sectors.

 

Activated carbon is extensively researched for CO₂ capture because it can selectively attract and hold gas molecules on its surface. However, traditional methods for producing activated carbon typically demand very high temperatures, long processing times, and costly raw materials, making the process both expensive and environmentally unsustainable. Moreover, the CO₂ adsorption capacity achieved through these methods is often too low for practical industrial use.

 

In contrast, the newly developed method uses co-pyrolysis of measured proportions of spent coffee grounds and PET plastic waste at temperatures below 500°C, along with potassium hydroxide as an activating agent (Google Patents, 2025, US12391556B1). The resulting “biochar” is then further heated to under 700°C to convert it into activated carbon.

 

According to the researchers, this process produces activated carbon with a much larger surface area and greater porosity than traditional methods. The technique also adds oxygen-containing functional groups, further improving its ability to adsorb gases. The synthesized activated carbon can capture more than 8 mmol of CO₂ per gram at 0°C and under normal atmospheric conditions.

 

For context, another study comparing different biomass-based activated carbons found that coffee grounds achieved an adsorption rate of 4.9 mmol/g, while peanut shells performed best at 7.45 mmol/g.

 

Lead inventor Haif Aljomard from the University of Sharjah explains, “A simple Starbucks coffee cup and a plastic water bottle can be transformed into an effective tool against climate change by producing activated carbon. This innovation converts two common waste materials—coffee and plastic—into a highly efficient CO₂ adsorbent capable of reducing emissions from fossil fuel energy systems.”

 

The team highlights various industrial applications for this technology, including gas purification, drinking water treatment, groundwater cleanup, wastewater and sewage processing. They also note potential uses in the energy sector, such as solvent recovery, natural gas purification, flue gas treatment at waste incineration plants, exhaust air purification, process gas cleaning, and emissions control.

Vedemy
41 days ago

Biotechnology Jobs at Lupin

Production Mammalian Officer


Biotechnology Jobs at Lupin | Production Mammalian Officer Role | Apply Now

 

Lupin is looking to hire an Officer – Production (Mammalian) for its biomanufacturing site at Pune Biotech, Maharashtra. This key Biotechnology job role involves overseeing technical operations and maintaining quality documentation for both small- and large-scale mammalian protein production. Candidates with a Biotechnology degree and 1–3 years of practical experience in chromatography, TFF, and sterile operations will find this an excellent opportunity to advance their career with Lupin.

 

·        Position: Officer – Production (Mammalian)

·        Location: Pune Biotech, Maharashtra, India

 

About The Company

 

Lupin, a prominent global pharmaceutical organization known for its strong manufacturing and quality standards, offers this role at its Pune Biotech facility. The site plays a key role in advancing Lupin’s expanding range of specialized biological products, making it a valuable and growth-oriented career opportunity within the company.

 

Key Responsibilities

 

The Production Officer oversees the practical implementation of protein purification and sterile cleaning operations within a GMP-compliant setting.

 

v Upstream/Downstream Processing:

 

·        Prepare buffers for both small- and large-scale production activities.

·        Operate key equipment such as chromatography units, TFF systems, virus filtration setups, and DS filtration systems used in protein purification.

 

v Sterile Processing & Cleaning:

 

·     Perform CIP (Cleaning-In-Place) for chromatography equipment, TFF units, and process vessels.

·        Carry out SIP (Sterilization-In-Place) for TFF systems and process vessels.

·  Handle the operation and upkeep of sterile and decontamination autoclaves.

 

v Quality & Documentation:

·     IPQC operation of buffer and protein intermediate samples.

· Preparation, execution, and maintenance of SOPs, BPRs (Batch Production Records), and qualification documents.

·      Review of executed BPRs.

·      Raw material and consumables inventory planning and maintenance.

·      Coordinate with QC/QA teams on day-to-day activities.

 

Job Requirements: Qualifications and Experience

·        Education: Graduation in Biotechnology.

·        Experience: 1 to 3 Years of relevant Work Experience.

 

For technically skilled graduates with 1–3 years of experience in downstream bioprocessing methods such as chromatography, TFF, and CIP/SIP, this Biotechnology job role is an excellent fit. Interested candidates are encouraged to apply and step into a vital Production Officer position, advancing their career with Lupin at the Pune Biotech site.

Vedemy
109 days ago

Govt DRDO-DIHAR Paid Internships for Biotech & Microbiology    Candidates – Applications Invited
DRDO-DIHAR Paid Internships for Biotech & Microbiology Candidates – Applications Invited

DEFENCE INSTITUTE OF HIGH-ALTITUDE RESEARCH (DIHAR)

DEFENCE RESEARCH & DEVELOPMENT ORGANISATION (DRDO), Leh Ladakh (U.T) C/o 56 APO 901205

Advertisement No.– DIHAR/HRD/PDINTERN/2025/01

Advertisement for paid internships for B.E./B. Tech/ Pg students

The Defence Institute of High-Altitude Research (DIHAR) functions under the Armaments & Research Development Establishment (ARDE), a leading unit of the Defence Research and Development Organization (DRDO). It specializes in high-altitude trials, testing, and the development of technologies suited for cold and arid regions.

Applications are invited from eligible B.E./B. Tech students in their 7th or 8th semester, as well as postgraduate students, for DRDO-DIHAR paid internships of six months’ duration. Interested candidates may apply using the prescribed format provided.

Branch/Discipline and Number of vacancies for paid internship of students:

Branch/Discipline

Number of Vacancies

Monthly Stipend (in Rs.)

Duration of Internship / project work

Location of Internship

Mechanical Engineering, Electrical Engineering / Electronics & Telecommunication for BE/B. Tech or Biotechnology/Microbiology/Agriculture/Veterinary for M. Tech/M. Sc/M. VSc

03

5,000/- per month

06 Months

DIHAR Leh / DIHAR Base Station Chandigarh

Note:

(a) No equivalent qualification will be considered

(b) The number of positions mentioned above are indicative and may increase or decrease at the discretion of the institute

Minimum educational qualifications:

Candidates must be pursuing a full-time B. Tech/BE degree (7th or 8th semester) or an M. Tech/M.Sc./M.VSc. degree (1st or 2nd year) in the relevant discipline from a recognized Indian University/Institute. They should have a strong academic record, consistently maintaining more than 80% marks or a CGPA above 8.0 on a 10-point scale (proof to be attached), in all previous semesters or throughout the undergraduate program in the case of M. Tech/M.Sc./M.VSc. candidates, from AICTE/UGC-approved institutions.

DURATION OF DRDO-DIHAR PAID INTERNSHIPS:

The internship will have a duration of six months, and students will be awarded a Completion Certificate only after successfully completing the entire six-month period from the date of joining.

How to apply:

a. A clear scanned copy of the duly completed application, along with a reference/request letter from the college (in the prescribed format), must be submitted via email to the Centre Head, DIHAR. Hard copies of applications will not be accepted for the internship.

b. Email for forwarding the application ([[email protected]] (mailto:[email protected]))

c. The email subject line must be written as “Application for Paid Internship – [Branch/Discipline]” corresponding to the candidate’s field of study.

d. Last date for application: 06 Oct 2025, 1700 Hr.

e. Emails received beyond above mentioned date and time will not be considered.

Documents to be submitted:

(i) Filled application form as per attached format

(ii) Copy of the marksheet of last semesters/year

(iii) Copy of the Aadhar card

(iv) Reference / Request letter from college for Paid Internship as per attached format

(v) Brief Bio-data in less than 300 Words highlighting achievements

Selection procedure:

a. Candidates will be selected based on their academic performance in previous examinations and, if required, through an online interview/interaction.

b. Age Limit: Below 28 Years.

c. Only the shortlisted students will be informed about the joining formalities via the email address provided in their application form.

d. Applications that are incomplete, contain errors, or are submitted after the deadline will be rejected, and no further correspondence on such cases will be entertained.

e. The selection process will be strictly merit-based, and no correspondence will be made with candidates who are not selected.

Boarding/lodging:

No accommodation or food expenses will be provided.

Payment of stipend:

(i) Stipend for internship for a period of 06 months is applicable only when the student is    present at the Lab for a minimum of 15 working days per month

(ii) Payment will be made in two instalments, first installment will be paid after 03 months of Internship and Second installment will be paid after completion of 06 months of internship

(iii) However, Project internship for B. E/B. Tech/M.Tech/M.Sc./M. VSc can be extended further by 8–10 months without payment of stipend

(iv) Stipend will be paid directly to bank account of the student.

Award of certificate:

(i) A completion certificate will be issued to students only after they successfully finish the internship, which requires clearing the project work evaluation, submitting the project report, and fulfilling all other required formalities.

(ii) Students who fail to complete the internship or discontinue midway will not be granted a Completion Certificate, and no stipend/payment will be provided.

(i) Interns must strictly follow the laboratory guidelines throughout the internship. Any involvement in indiscipline will lead to immediate termination of the internship.

(ii) DIHAR/ DRDO shall have no obligation to offer employment to such interns nor can an intern claim a right for employment on the grounds of completion of the Internship.

(iii) The management reserves the right to change the vacancy positions or selection criteria at any point during selection process of the aforesaid internship scheme without assigning any reason whatsoever.

10. Selected students will have to submit the following documents at the time of joining:

a.    All B.E./B. Tech / M. Tech/ M.Sc./ M. VSc previous semesters/year mark sheets in original for verification

b.    Original copy of the Reference / Request letter from college for Paid Internship.

c.    Original copy of Bonafide Certificate from the College.

d.    No Objection Certificate (NOC) from college authorities (in original) on college letterhead mentioning that the student will be relieved for internship at DIHAR (DRDO) and that the student will be present for a minimum 15 working days every month for internship.

e.    Police verification certificate from Hometown / place of residence

f.     Undertaking for adherence to Indian Official Secrets Act, 1923.

g.    Undertaking that interns will follow IT Rules and Regulations applicable for Ministry of Defence and its amendments thereof.

h.   Bank account details for transfer of stipend.

i.     Original copy of Aadhar Card and college ID card for verification.

j.     3 no passport size colour photo

k.    Original documents will be returned immediately after verification.

l.     Any other documents if required will be communicated to the student at the time of selection/joining.

Important Dates:

1. Last date for receipt of application 06 Oct 2025

2. Intimation to Selected Students 3rd Week of Oct 2025

3. Date of Start for Internship 27 Oct 2025

N.B.: For any further clarification please contact – 0172-2639800 / 2638900
https://drdo.gov.in/drdo/sites/default/files/career-vacancy-documents/advtDIHAR22092025.pdf 

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