1

Cell Based Potency Assay Jobs in Minnesota (NOW HIRING)

next page

Showing results 1-20

Cell Based Potency Assay information

What are some common challenges faced when developing and validating cell based potency assays in a laboratory setting?

Developing and validating cell-based potency assays can be challenging due to the inherent biological variability of living cells, which can impact assay reproducibility and consistency. Additionally, optimizing assay conditions—such as cell passage number, incubation times, and reagent quality—requires careful attention to detail. Collaboration across multidisciplinary teams, including scientists, quality control, and regulatory affairs, is often necessary to ensure the assay meets rigorous industry and compliance standards. Successful candidates should be comfortable troubleshooting technical issues and adapting protocols to achieve reliable results.

What are the key skills and qualifications needed to thrive as a cell based potency assay scientist, and why are they important?

To excel as a Cell Based Potency Assay Scientist, you need a solid background in cellular biology, assay development, and quantitative analysis, usually supported by a degree in life sciences or a related field. Familiarity with laboratory instruments like flow cytometers, plate readers, and proficiency in data analysis software such as GraphPad Prism are typically required, along with knowledge of GMP/GLP standards. Attention to detail, strong problem-solving abilities, and effective communication skills are essential soft skills in this role. These competencies ensure accurate assay results, regulatory compliance, and clear collaboration with cross-functional teams in biopharmaceutical development.

What are cell based potency assays?

Cell based potency assays are laboratory tests that use living cells to measure the biological activity of a drug, vaccine, or biologic product. These assays help determine how effective a compound is in producing a desired cellular response, making them crucial for drug development and quality control. By closely mimicking the drug’s mechanism of action in the body, they provide more relevant information about efficacy and safety compared to non-cellular assays.

What is the difference between Cell Based Potency Assay vs Cell Culture Technician?

AspectCell Based Potency AssayCell Culture Technician
Primary ResponsibilitiesAssessing the biological activity of products using cell-based methodsMaintaining and preparing cell cultures for various experiments
Required SkillsKnowledge of assay development, data analysis, cell biology techniquesCell culture techniques, aseptic handling, media preparation
Work EnvironmentLaboratories focused on assay validation and quality controlCell culture labs, manufacturing, or research facilities
Common CertificationsBiotech or laboratory certifications, cell biology trainingCell culture training, laboratory safety certifications

While both roles involve working with cells, the Cell Based Potency Assay specialist focuses on developing and performing assays to measure product activity, whereas the Cell Culture Technician primarily prepares and maintains cell cultures. The assay role requires analytical skills and assay-specific knowledge, while the technician role emphasizes cell handling and maintenance skills.

What job categories do people searching Cell Based Potency Assay jobs in Minnesota look for? The top searched job categories for Cell Based Potency Assay jobs in Minnesota are:
What cities in Minnesota are hiring for Cell Based Potency Assay jobs? Cities in Minnesota with the most Cell Based Potency Assay job openings:

Research Fellow - Neurology - Cousin lab

Mayo Clinic

Rochester, MN • On-site

Other

Medical, Dental, Vision, Retirement

Posted 17 days ago


Mayo Clinic rating

7.8

Company rating: 7.8 out of 10

Based on 694 frontline employees who took The Breakroom Quiz

109th of 887 rated healthcare providers


Job description

Why Mayo Clinic

Mayo Clinic is top-ranked in more specialties than any other care provider according to U.S. News & World Report. As we work together to put the needs of the patient first, we are also dedicated to our employees, investing in competitive compensation and comprehensive benefit plans - to take care of you and your family, now and in the future. And with continuing education and advancement opportunities at every turn, you can build a long, successful career with Mayo Clinic.

Benefits Highlights
  • Medical: Multiple plan options.
  • Dental: Delta Dental or reimbursement account for flexible coverage.
  • Vision: Affordable plan with national network.
  • Pre-Tax Savings: HSA and FSAs for eligible expenses.
  • Retirement: Competitive retirement package to secure your future.

Responsibilities

The Cousin Lab at Mayo Clinic is seeking a postdoctoral fellow will contribute to a growing rare disease therapeutics program with an initial emphasis on POLR2A-related disorders. This work will also support broader efforts in the lab, including genetic forms of ALS and other monogenic neurologic conditions. Projects may include iPSC-derived neural models, variant-mechanism studies, RNA-targeted therapies, genome editing, sequencing-based biomarkers, and collaboration with Mayo Clinic precision medicine and N-of-1 therapeutic programs, core facilities, and external academic partners.

The Cousin Lab at Mayo Clinic develops mechanism-guided, gene-targeted therapeutic strategies for rare neurogenetic diseases. Our work integrates clinical genetics, patient-derived biospecimens, functional genomics, iPSC-based disease modeling, preclinical therapeutic testing, and clinical translation.

Position Overview

The fellow will lead experimental and analytical components of translational rare disease projects. The role includes developing and characterizing patient-derived and engineered cell models; defining variant effects and disease mechanisms; designing and evaluating RNA-targeted and gene-editing therapeutic strategies; and integrating functional, genomic, and clinical data to prioritize treatment approaches. The position involves substantial wet-lab research, quantitative data analysis, manuscript and grant preparation, and cross-disciplinary collaboration.

The fellow will join a collaborative Mayo Clinic environment with access to clinical expertise, core facilities, genomic and sequencing resources, translational infrastructure, and multi-institutional rare disease networks. This position offers the opportunity to develop an independent research niche at the interface of rare disease biology, human neural modeling, and targeted therapeutic development; publish first-author manuscripts; present at national and international meetings; and pursue external fellowship or career-development funding.

Key Responsibilities 

  • Disease Modeling & Assay Development: Develop and characterize patient-derived and engineered disease models, including fibroblasts, iPSCs, isogenic controls, iPSC-derived neural cell types, and organoid or multicellular systems.

  • Mechanistic & Functional Studies: Design and execute molecular, cellular, imaging, electrophysiologic, and functional genomics assays to define variant effects, disease mechanisms, cellular phenotypes, biomarkers, and therapeutic response.

  • Therapeutic Development: Develop and evaluate RNA-targeted and gene-editing strategies, including ASO/siRNA, allele-selective or splice-modifying approaches, CRISPR/base-editing platforms, delivery systems, and target-engagement or rescue assays.

  • Genomic Data Integration: Integrate variant interpretation, sequencing data, and functional readouts to prioritize therapeutic strategies and evaluate loss-of-function, dominant-negative, allele-specific, and related mechanisms.

  • Collaboration & Translation: Coordinate with the PI, clinicians, partners, core facilities, biobanks, and external collaborators to align patient samples, disease models, assays, and preclinical workflows.

  • Scientific Communication & Mentorship: Manage projects with rigor and reproducibility; prepare figures, reports, manuscripts, presentations, and grant/fellowship applications; and contribute to mentoring junior team members.


Qualifications
  • Education: Ph.D., M.D./Ph.D., or equivalent doctoral degree in neuroscience, genetics/genomics, molecular or cell biology, stem cell biology, biomedical engineering, pharmacology, RNA biology, bioengineering, or a related field.

  • Research Expertise: Demonstrated productivity in cell-based disease modeling, molecular biology, functional genomics, therapeutic development, neurogenetics, or rare disease biology.

  • Technical Skills: Strong wet-lab skills in aseptic cell culture, molecular biology, assay development, sequencing workflows, microscopy/imaging, and experimental documentation.

  • Quantitative & Analytical Skills: Ability to analyze, interpret, and communicate complex data; familiarity with Prism, R, Python, or related statistical and visualization tools is helpful.

  • Professional Skills: Excellent organization, independence, attention to detail, and communication skills, with the ability to thrive in a collaborative translational research environment.

Experience in one or more of the following areas is preferred:

  • iPSC & Neural Models: Experience with human iPSC culture, genome-edited/isogenic lines, neural differentiation, neurons, glia, organoids, or related iPSC-derived neural models.

  • Therapeutic Platforms: Experience with RNA-targeted therapeutic development, genome engineering, or delivery platforms, including ASOs, siRNA, CRISPR/Cas, base or prime editing, AAV, or LNPs.

  • Rare Disease Translation: Experience with rare genetic, neurodevelopmental, or neuromuscular disease models; patient-derived biospecimens; variant interpretation; genotype-phenotype analysis; or individualized/N-of-1 therapeutic approaches.

  • Genomics & Biomarkers: Experience with RNA-seq, long-read sequencing, phasing/haplotype analysis, single-cell or multi-omic workflows, biomarker discovery, bioinformatics, or high-content/high-throughput screening.

  • Scientific Leadership: Experience in translational or preclinical research, collaborative project management, manuscript preparation, grant writing, and mentoring.

Candidates should submit a CV, a brief cover letter describing research interests and relevant experience and contact information for 2-3 references.


Exemption Status
Exempt
Compensation Detail
$67,282 - $78,711 / year; Education, experience and tenure may be considered along with internal equity when job offers are extended.
Benefits Eligible
Yes
Schedule
Full Time
Hours/Pay Period
80
Schedule Details
Varies
International Assignment
No
Site Description
Just as our reputation has spread beyond our Minnesota roots, so have our locations. Today, our employees are located at our three major campuses in Phoenix/Scottsdale, Arizona, Jacksonville, Florida, Rochester, Minnesota, and at Mayo Clinic Health System campuses throughout Midwestern communities, and at our international locations. Each Mayo Clinic location is a special place where our employees thrive in both their work and personal lives. Learn more about what each unique Mayo Clinic campus has to offer, and where your best fit is. 

Equal Opportunity

All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, gender identity, sexual orientation, national origin, protected veteran status or disability status. Learn more about the 'EOE is the Law'.  Mayo Clinic participates in E-Verify and may provide the Social Security Administration and, if necessary, the Department of Homeland Security with information from each new employee's Form I-9 to confirm work authorization.

Recruiter
Amy HoffmanQualifications:
  • Education: Ph.D., M.D./Ph.D., or equivalent doctoral degree in neuroscience, genetics/genomics, molecular or cell biology, stem cell biology, biomedical engineering, pharmacology, RNA biology, bioengineering, or a related field.

  • Research Expertise: Demonstrated productivity in cell-based disease modeling, molecular biology, functional genomics, therapeutic development, neurogenetics, or rare disease biology.

  • Technical Skills: Strong wet-lab skills in aseptic cell culture, molecular biology, assay development, sequencing workflows, microscopy/imaging, and experimental documentation.

  • Quantitative & Analytical Skills: Ability to analyze, interpret, and communicate complex data; familiarity with Prism, R, Python, or related statistical and visualization tools is helpful.

  • Professional Skills: Excellent organization, independence, attention to detail, and communication skills, with the ability to thrive in a collaborative translational research environment.

Experience in one or more of the following areas is preferred:

  • iPSC & Neural Models: Experience with human iPSC culture, genome-edited/isogenic lines, neural differentiation, neurons, glia, organoids, or related iPSC-derived neural models.

  • Therapeutic Platforms: Experience with RNA-targeted therapeutic development, genome engineering, or delivery platforms, including ASOs, siRNA, CRISPR/Cas, base or prime editing, AAV, or LNPs.

  • Rare Disease Translation: Experience with rare genetic, neurodevelopmental, or neuromuscular disease models; patient-derived biospecimens; variant interpretation; genotype-phenotype analysis; or individualized/N-of-1 therapeutic approaches.

  • Genomics & Biomarkers: Experience with RNA-seq, long-read sequencing, phasing/haplotype analysis, single-cell or multi-omic workflows, biomarker discovery, bioinformatics, or high-content/high-throughput screening.

  • Scientific Leadership: Experience in translational or preclinical research, collaborative project management, manuscript preparation, grant writing, and mentoring.

Candidates should submit a CV, a brief cover letter describing research interests and relevant experience and contact information for 2-3 references.


What Mayo Clinic employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom


Mayo Clinic logo

About Mayo Clinic

Sourced by ZipRecruiter

Mayo Clinic is the largest integrated, not-for-profit medical group practice in the world. We're building the future, one where the best possible care is available to everyone — and more people can heal at home. Our relentless research turns into earlier diagnoses and new cures. That's how we inspire hope in those who need it most. At Mayo Clinic, experts work together to solve the most challenging unmet needs of patients. Our history of innovation dates back almost 150 years, when brothers Will and Charlie Mayo pioneered an integrated, team-based approach to medicine. Today, that trailblazing spirit drives innovations like Mayo Clinic Platform — which powers new technologies to change how care is delivered to all.

Industry

Hospitals

Company size

10,000+ Employees

Headquarters location

Rochester, MN, US

Year founded

1919