Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Post-Doctoral Associate
Minneapolis, MN · On-site
$61K - $63K/yr
Using in vitro B cell transformation model and 3D organoid to understand the role of EBV encoded oncogenes in cancer development. Qualifications Required qualifications: 1. A Ph.D. degree in biology ...
Post-Doctoral Associate
Minneapolis, MN · On-site
$61K - $63K/yr
Using in vitro B cell transformation model and 3D organoid to understand the role of EBV encoded oncogenes in cancer development. Qualifications Required qualifications: 1. A Ph.D. degree in biology ...
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Develop and characterize patient-derived and engineered disease models, including fibroblasts, iPSCs, isogenic controls, iPSC-derived neural cell types, and organoid or multicellular systems.
Develop and characterize patient-derived and engineered disease models, including fibroblasts, iPSCs, isogenic controls, iPSC-derived neural cell types, and organoid or multicellular systems.
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Develop and characterize patient-derived and engineered disease models, including fibroblasts, iPSCs, isogenic controls, iPSC-derived neural cell types, and organoid or multicellular systems.
Develop and characterize patient-derived and engineered disease models, including fibroblasts, iPSCs, isogenic controls, iPSC-derived neural cell types, and organoid or multicellular systems.
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Develop and characterize patient-derived and engineered disease models, including fibroblasts, iPSCs, isogenic controls, iPSC-derived neural cell types, and organoid or multicellular systems.
Develop and characterize patient-derived and engineered disease models, including fibroblasts, iPSCs, isogenic controls, iPSC-derived neural cell types, and organoid or multicellular systems.
Develop and characterize patient-derived and engineered disease models, including fibroblasts, iPSCs, isogenic controls, iPSC-derived neural cell types, and organoid or multicellular systems.
Develop and characterize patient-derived and engineered disease models, including fibroblasts, iPSCs, isogenic controls, iPSC-derived neural cell types, and organoid or multicellular systems.
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Solid understanding of reproductive biology, molecular biology, and organoid culture systems. * Experience with bioinformatics tools, databases, and genomic/proteomic data analysis. * Working ...
Post-Doctoral Associate
Minneapolis, MN · On-site
$61K - $68K/mo
Responsibilities (Must total 100%) 50% chronic GVHD, pulmonary function studies; immune assays, as needed tissue organoid culture 30% mouse bone marrow transplantation acute GVHD studies: This ...
Post-Doctoral Associate
Minneapolis, MN · On-site
$61K - $68K/mo
Responsibilities (Must total 100%) 50% chronic GVHD, pulmonary function studies; immune assays, as needed tissue organoid culture 30% mouse bone marrow transplantation acute GVHD studies: This ...
Organoid information
What are organoids?
What are some typical challenges faced by researchers working with organoids in a laboratory setting?
What are the key skills and qualifications needed to thrive as an organoid research scientist, and why are they important?
What is the difference between Organoid vs Cell Culture Technician?
| Aspect | Organoid | Cell Culture Technician |
|---|---|---|
| Required credentials | Typically requires a degree in biology, biomedical sciences, or related fields; advanced training in 3D cell culture techniques | Usually requires a degree or diploma in biology, biotechnology, or related areas; training in cell culture methods |
| Work environment | Research laboratories, biotech companies, academic institutions focusing on 3D tissue models | Laboratories, biotech firms, hospitals performing routine cell culture procedures |
| Employer and industry usage | Used in biomedical research, drug development, personalized medicine | Used in research labs, quality control, manufacturing processes involving cell cultures |
In summary, an Organoid specializes in creating 3D tissue models for advanced research, requiring specialized skills and training. A Cell Culture Technician performs routine cell cultivation tasks, often with less specialized training, supporting various laboratory functions.
What are popular job titles related to Organoid jobs in Minnesota?
For Organoid jobs in Minnesota, the most frequently searched job titles are:
What job categories do people searching Organoid jobs in Minnesota look for?
The top searched job categories for Organoid jobs in Minnesota are:

Full-time
Re-posted 27 days ago
Job description
The IVB Team Lead - Senior Scientist will lead the cattle stem cell and advanced reproduction program within the Innovation group, providing both strategic direction and hands-on scientific leadership. This role oversees a team of 4-5 scientists and drives the development of robust, reproducible protocols for cattle stem cell culture, embryology, and cloning systems. The ideal candidate brings deep expertise in stem cell biology, embryology, and experimental design, along with strong mentoring skills. This position plays a key role in translating innovative research into scalable solutions that advance the company's commercial breeding initiatives.Â
This position reports to the Chief Scientific Officer, Recombinetics (URUS Innovation Group) and will be based in Minneapolis/St. Paul metropolitan area (onsite collaboration required).Â
RESPONSIBILITIESÂ Â
Program LeadershipÂ
 Â
Lead the cattle stem cell program by defining the experimental strategy, roadmap, milestones, and key readouts. Â
Contribute to long-term research planning and innovation strategies, aligning program goals with company priorities.Â
Experimental Execution & Team GuidanceÂ
Lead execution of stem cell experiments while maintaining high standards of rigor, documentation, and operational pace. Â
Mentor and support scientists, providing guidance on troubleshooting, experimental design, and best practices.Â
Cross-Functional CollaborationÂ
Collaborate closely with genomics, data science, and reproductive biology teams to coordinate priorities, workflows, and timelines. Â
Ensure smooth integration of cross functional inputs into experimental plans and program decision making.Â
Data Analysis & ReportingÂ
Analyze and interpret complex datasets-including sequencing and multiomics-and synthesize insights for technical and nontechnical audiences. Â
Communicate progress, risks, and scientific findings clearly and proactively.Â
Documentation & Quality SystemsÂ
Develop and maintain robust documentation practices, including tracking systems, data records, and SOPs. Â
Ensure all workflows support reliability, reproducibility, and efficient technology transfer.Â
PROFESSIONAL QUALIFICATIONS AND EXPERIENCEÂ
Ph.D. in Reproductive Biology, Developmental Biology, Stem Cell Biology, Embryology, Computational Biology, or related field.Â
Deep hands-on expertise in pluripotent stem cell culture, ideally in cattle or other mammalian systems.Â
Strong proficiency in advanced reproductive technologies (e.g., cloning, IVF).Â
Solid understanding of reproductive biology, molecular biology, and organoid culture systems.Â
Experience with bioinformatics tools, databases, and genomic/proteomic data analysis.Â
Working knowledge of probability, statistical modeling, and algorithm design (preferred).Â
Experience modeling biological processes and molecular dynamics.Â
Experience with implementation of artificial intelligence for biological modeling and predictions (preferred).Â
Ability to translate biological questions into computational analyses (e.g., multiomics integration to identify genotype-phenotype links).Â
Demonstrated ability to independently design, execute, and interpret complex experiments.Â
Strong troubleshooting instincts and evidence-based decision-making.Â
Experience mentoring or leading others with a high standard of scientific rigor.Â
Excellent communication skills for effective interdisciplinary collaboration and reporting.Â
Adaptable, curious, and eager to learn new tools and methods in a fast-paced environment.Â
Strong work ethic and team-first mindset, including willingness to perform hands-on work and support team needs.Â
Trans Ova Genetics, a member of the URUS Group, provides industry-leading reproductive technologies and expertise to cattle breeders through a unique professional services team that works closely with clients to understand their breeding goals and ultimately help clients advance and extend superior genetics. Trans Ova Genetics understands the process that will help multiply a herd's genetic success. Reproductive technologies such as embryo transfer, in-vitro fertilization (IVF), sexed-semen, genetic preservation, and cloning are considered the reproductive "tools" available for breeders looking to achieve specific breeding and reproductive goals. Internationally recognized as a source of superior animal husbandry and reproductive expertise, Trans Ova Genetics offers an integrated system of regional centers, satellite stations, and on-farm application of reproductive technologies.Â
Trans Ova's headquarters are in Sioux Center, Iowa, but we have many offices and satellite centers across the country. On-going research and applied science allow Trans Ova Genetics to develop and implement new technologies to help move the science of bovine genetic improvement forward. Trans Ova is dedicated to meeting the requirements of their customers and to continual improvement.