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Stem Cell Research Jobs (NOW HIRING)

RESEARCHER

Birmingham, AL · On-site

$65K/yr

The candidate will have the opportunity to contribute to stem cell research and apply techniques including adult stem cells and induced pluripotent stem cell (iPSC) culture and differentiation, gene ...

This position offers the opportunity to make a significant contribution to the advancement of stem cell research within a supportive environment. The Role The QA Manager will embody WiCell's culture ...

RESEARCHER

Tampa, FL · On-site

$65K/yr

The candidate will have the opportunity to contribute to stem cell research and apply techniques including adult stem cells and induced pluripotent stem cell (iPSC) culture and differentiation, gene ...

Registered Nurse, Stem Cell About City of Hope, City of Hope's mission is to make hope a reality ... City of Hope research has been the basis for numerous breakthrough cancer medicines, as well as ...

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Stem Cell Research information

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How much do stem cell research jobs pay per hour?

As of Sep 6, 2026, the average hourly pay for stem cell research in the United States is $22.22, according to ZipRecruiter salary data. Most workers in this role earn between $17.31 and $23.80 per hour, depending on experience, location, and employer.

What is stem cell research?

Stem cell research is the scientific study of stem cells, which are unique cells capable of developing into many different cell types in the body. Researchers investigate how stem cells can be used to understand diseases, develop new treatments, and potentially regenerate damaged tissues or organs. This field holds promise for treating conditions like Parkinson's disease, spinal cord injuries, and diabetes. However, it also raises important ethical questions, especially regarding the use of embryonic stem cells.

What are the key skills and qualifications needed to thrive as a stem cell researcher, and why are they important?

To thrive as a Stem Cell Researcher, you need an advanced degree in biology or a related field, along with a strong understanding of cell biology, molecular techniques, and laboratory protocols. Familiarity with advanced laboratory instruments, cell culture systems, and data analysis software is essential, and certifications in laboratory safety or Good Laboratory Practice (GLP) may be beneficial. Critical thinking, attention to detail, collaboration, and effective communication are standout soft skills for this role. These skills and qualifications are crucial to ensure rigorous, reproducible research and to drive innovation in regenerative medicine and therapeutic development.

What are some common challenges faced by professionals working in stem cell research, and how can they be addressed?

Professionals in stem cell research often encounter challenges such as maintaining the purity and viability of cell cultures, navigating ethical and regulatory requirements, and keeping up with rapid technological advancements. Collaboration with multidisciplinary teams—including clinicians, bioinformaticians, and regulatory experts—is essential to overcome these hurdles. Additionally, ongoing training and active participation in scientific conferences can help researchers stay updated on best practices and emerging trends in the field.

What is the difference between Stem Cell Research vs Laboratory Technician?

AspectStem Cell ResearchLaboratory Technician
Required CredentialsAdvanced degrees (Master's/PhD), specialized training in cell biologyAssociate's or Bachelor's degree in biology, chemistry, or related field
Work EnvironmentResearch labs, universities, biotech companiesHospitals, clinical labs, research facilities
Employer & Industry UsageAcademic, biotech, pharmaceutical sectorsHealthcare, clinical, research institutions
Common Search & Comparison IntentUnderstanding roles in stem cell studies, research careersLab work, technical roles in medical research

Stem Cell Researchers focus on studying and developing therapies involving stem cells, often requiring advanced degrees and specialized research skills. Laboratory Technicians support these efforts by performing technical tasks, preparing samples, and maintaining lab equipment. While both roles work in research environments, Stem Cell Research positions are more focused on experimental design and analysis, whereas Laboratory Technicians handle the day-to-day technical operations.

How much do stem cell researchers get paid?

Stem cell researchers' salaries vary based on experience, education, and location, but typically range from $50,000 to $100,000 annually. Senior researchers with advanced degrees and specialized skills can earn higher salaries, especially in research institutions or biotech companies.

How to become a stem cell researcher?

To become a stem cell researcher, typically a bachelor's degree in biology, biochemistry, or a related field is required, followed by a master's or Ph.D. in a specialized area of stem cell biology or regenerative medicine. Gaining laboratory experience, developing skills in cell culture and molecular techniques, and staying current with scientific literature are essential for advancing in this field.

What does a stem cell researcher do?

A stem cell researcher studies the properties and potential uses of stem cells, often working in laboratories to understand cell development, differentiation, and regenerative processes. They conduct experiments, analyze data, and may use tools like microscopes and cell culture techniques to advance medical research and develop therapies.
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What cities are hiring for Stem Cell Research jobs?

Cities with the most Stem Cell Research job openings:

What are the most commonly searched types of Stem Cell Research jobs?

The most popular types of Stem Cell Research jobs are:

What states have the most Stem Cell Research jobs?

States with the most job openings for Stem Cell Research jobs include:

Infographic showing various Stem Cell Research job openings in the United States as of August 2026, with employment types broken down into 1% Internship, 1% As Needed, 84% Full Time, 11% Part Time, 1% Temporary, and 2% Contract. Highlights an 84% Physical, 4% Hybrid, and 12% Remote job distribution, with an average salary of $46,222 per year, or $22.2 per hour.

Cellular Biologist II, Global Stem Cell Array

New York Stem Cell Foundation, Inc.

Manhattan, NY • On-site

$73 - $82/hr

Other

Posted 4 days ago


Key responsibilities

  • Perform project planning, experimental design, and method development for human/mammalian cell culture and related technologies.

  • Implement, perform, and monitor automated and manual cell culture procedures, including spatial transcriptomics and hyperplexed imaging, while maintaining inventory and coordinating resources.

  • Troubleshoot, modify, and adapt protocols and workflows; document results; and collaborate with team members to ensure laboratory operations and data quality.


Job description

EMPLOYER: The Jackson LaboratoryPOSITION: Cellular Biologist II, Global Stem Cell Array

DUTIES: The Cellular Biologist II, Global Stem Cell Array, performs project planning, experimental design, method development, execution of laboratory procedures, adaptation of protocols, data collection and analysis, documentation, and contribution to reports and other written materials for human/mammalian cell culture. Primary responsibilities include implementing and performing cell biology related tasks and procedures; planning and monitoring resources needed to conduct tasks such as the cell culture (manual or automated), spatial transcriptomics, and hyperplexed imaging technologies of the laboratory; maintaining inventory control; coordinating space, field, equipment, and/or facilities; may monitor expenditures; documentation of results; implementing protocols from the literature; identifying problems, troubleshooting, and analyzing variations observed and reported in regular testing protocols; modifying, refining, or adapting techniques and procedures; modifying and/or adjusting quality control measures; leading exchange of research information through demonstration and instruction; performing and independently monitoring automated and manual cell culture and related activities; adapting protocols and developing new workflows with periodic support as required; working collaboratively to perform all necessary protocols for workflows that include, but are not limited to, fibroblast expansion, reprogramming, iPSC expansion on the robotic platform(s), or manually as required; storing and withdrawal of specimens from liquid nitrogen and freezers and prepare media and reagents required for daily work; working closely with the laboratory operations team to ensure reagent/consumable inventory is accurately and efficiently stocked; planning and monitoring resources needed to operate the Global Stem Cell Array; maintaining inventory control; coordinating space and field questions; may be required to participate in the monitoring and tracking of resources/expenditures across projects; working closely with departmental leadership and a multidisciplinary team of scientists and technical specialists; and providing documentation and feedback including the creation and modification of SOPs, filing of file tickets to software and automation teams, and providing feedback at inter- and intra-team meetings. The role will be in regular collaboration with cross functional partners such as project managers, engineering teams, and software or technical support personnel to ensure smooth day-to-day laboratory operations in a production focused environment and will collaborate with engineers and other staff when resolving more complex issues.

RATE OF PAY: Between $73,382 and $82,311 per year.

REQUIREMENTS: Bachelor’s degree or foreign equivalent in a directly related specialty of biology, such as biotechnology, forensic science, or biology, and two years of experience in a professional laboratory scientific role performing both automated and manual cell culture operations for induced pluripotent stem cell (iPSC) lines in compliance with Laboratory Information Management Systems. Additionally all qualified applicants must have experience with the following proficiencies/ skills over a period of 24 months: (1) Automated iPSC Derivation and Cell Culture Operations including production and handling of biological materials to support automated induced pluripotent stem cell (iPSC) reprogramming, expansion, maintenance and assay execution, including robotic media exchange, passaging, thawing, and cryopreservation; (2) Processing whole blood, skin, saliva, and fibroblast samples; isolation of PBMCs using manual and automated array systems; preparation of biological inputs for downstream reprogramming and discovery workflows within Laboratory Information Management Systems platforms; (3) Executing fibroblast reprogramming protocols, initiation of stem cell discovery pipelines, and transition of primary cell types into pluripotent states under controlled manual and automated conditions; (4) Implementation, development, and continuous improvement of novel automated assays and workflows; analysis and assessment of robotic system performance; identification and resolution of automation related process issues affecting biological sample production; and (5) Maintenance of organized, accurate records; independent troubleshooting with concise error reporting to scientific teams; exclusive use of the Laboratory Information Management Systems tracking system for sample and process traceability.

ADDRESS OF EMPLOYMENT: The Jackson Laboratory, 619 W. 54th Street, New York, NY 10019

About JAX: The Jackson Laboratory is an independent, nonprofit biomedical research institution with a National Cancer Institute-designated Cancer Center and nearly 3,000 employees in locations across the United States (Maine, Connecticut, California), Japan and China. Its mission is to discover precise genomic solutions for disease and empower the global biomedical community in the shared quest to improve human health. Founded in 1929, JAX applies over nine decades of expertise in genetics to increase understanding of human disease, advancing treatments and cures for cancer, neurological and immune disorders, diabetes, aging and heart disease. It models and interprets genomic complexity, integrates basic research with clinical application, educates current and future scientists, and provides critical data, tools and services to the global biomedical community. For more information, please visit www.jax.org.

EEO Statement: The Jackson Laboratory provides equal employment opportunities to all employees and applicants for employment in all job classifications without regard to race, color, religion, age, mental disability, physical disability, medical condition, gender, sexual orientation, genetic information, ancestry, marital status, national origin, veteran status, and other classifications protected by applicable state and local non-discrimination laws.

Bar Harbor:

The Jackson Laboratory's 43-acre scenic Bar Harbor campus is nestled between the Gulf of Maine and the mountains of Acadia National Park. Some of the best hiking and biking in the world (over 50 square miles of mountains, lakes, views, and dramatic coastline) is accessible from our campus. We are one mile from downtown Bar Harbor, which offers a vibrant downtown district with a plethora of restaurants, shops, museums, and galleries.

Ellsworth:

The Charles E. Hewett Center in Ellsworth, Maine, is a state-of-the-art facility that serves researchers world wide. The facility represents the culmination of nine decades of unmatched experience and leadership in breeding and caring for laboratory mice. Ellsworth, Maine, is one of Maine’s fastest growing cities. With a growth rate of nearly 20%, Ellsworth is a bustling year-round community and acts as a hub for surrounding towns. It is located nearby Acadia National Park and hosts numerous special events, concerts and festivals each year. Residents have access to fabulous shopping, recreation, museums, galleries, and dining at a variety of independent restaurants.

Farmington:

JAX Genomic Medicine is transforming medicine by improving patient care, lowering costs, and increasing life span and health span. JAX Genomic Medicine’s research focuses on the complex genetic causes of disease and on the development of genomic solutions tailored to each person's unique genetic makeup. JAX Genomic Medicine sits on a 17-acre site on the campus of the University of Connecticut Health Center. The 183,500-square-foot facility opened in the fall of 2014. Now, it houses over 300 biomedical researchers, technicians, and support staff in state-of-the-art computing facilities and laboratories. In Connecticut, JAX resides in the scenic town of Farmington, in the state’s capitol region. The Hartford region, which offers some of the best public schools in the country, is made up of both bigger cities and smaller, charming historic New England towns. JAX Genomic Medicine is also geographically located within 2 hours of Boston and New York and is close to multiple transportation systems, including bus lines, highways, railroads and international airports.

Sacramento:

The JAX Mice, Clinical and Research Services facility is located in Sacramento, the state capital of California. Sacramento is less than a two-hour drive from San Francisco, Napa Valley, and scenic Lake Tahoe, and a short flight to both Los Angeles and Orange County. Sacramento is the birthplace of the nation’s Farm to Fork movement, and offers excellent restaurants, gastro-pubs, wineries, theaters, and museums. Outdoor activities are plentiful: Boating, white water rafting, and riding the scenic bicycle trails are popular. Housing and other costs of living are more affordable in Sacramento and its surrounding suburbs than in most other neighboring areas in the North Bay, making Sacramento one of the hottest housing markets in the country year after year.

Augusta:

JAX’s Maine Cancer Genomics Initiative (MCGI) is located in Augusta, Maine, in the Harold Alfond Center for Cancer Care (HACCC), at Maine General Hospital. It began operations in 2016 with three overarching goals: to provide cancer genomic testing for Maine cancer patients; to develop and deliver physician education about clinical genomic cancer diagnostics; and to build a network in Maine of oncology practices conducting studies in genomic medicine.

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