... gene editing. This research aims to deepen our understanding of dystrophic cardiomyopathy and develop novel therapeutic strategies. Collaboration is a fundamental aspect of this position. You will ...
... gene editing. This research aims to deepen our understanding of dystrophic cardiomyopathy and develop novel therapeutic strategies. Collaboration is a fundamental aspect of this position. You will ...
Our laboratory is dedicated to applying the CRISPR-mediated genome-editing techniques for Gene Therapy and Cancer Research. Our long-term goal is to harness the capabilities of CRISPR to develop ...
Our laboratory is dedicated to applying the CRISPR-mediated genome-editing techniques for Gene Therapy and Cancer Research. Our long-term goal is to harness the capabilities of CRISPR to develop ...
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 ...
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 ...
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 ...
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 ...
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 ...
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 ...
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 ...
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 ...
Our goals for the Mayo Clinic PG-IT program include in vivo human gene editing for rare and inherited genetic disorders and complex human diseases, the acceleration of drug repurposing for ...
Our goals for the Mayo Clinic PG-IT program include in vivo human gene editing for rare and inherited genetic disorders and complex human diseases, the acceleration of drug repurposing for ...
Our goals for the Mayo Clinic PG-IT program include in vivo human gene editing for rare and inherited genetic disorders and complex human diseases, the acceleration of drug repurposing for ...
Our goals for the Mayo Clinic PG-IT program include in vivo human gene editing for rare and inherited genetic disorders and complex human diseases, the acceleration of drug repurposing for ...
Our goals for the Mayo Clinic PG-IT program include in vivo human gene editing for rare and inherited genetic disorders and complex human diseases, the acceleration of drug repurposing for ...
Our goals for the Mayo Clinic PG-IT program include in vivo human gene editing for rare and inherited genetic disorders and complex human diseases, the acceleration of drug repurposing for ...
Our goals for the Mayo Clinic PG-IT program include in vivo human gene editing for rare and inherited genetic disorders and complex human diseases, the acceleration of drug repurposing for ...
Our goals for the Mayo Clinic PG-IT program include in vivo human gene editing for rare and inherited genetic disorders and complex human diseases, the acceleration of drug repurposing for ...
Our first commercial product harnesses the power of naturally-occurring microbes, modern gene editing and application technologies to provide nitrogen to crops. We are dedicated to providing new ...
Our first commercial product harnesses the power of naturally-occurring microbes, modern gene editing and application technologies to provide nitrogen to crops. We are dedicated to providing new ...
Our first commercial product harnesses the power of naturally-occurring microbes, modern gene editing and application technologies to provide nitrogen to crops. We are dedicated to providing new ...
Our first commercial product harnesses the power of naturally-occurring microbes, modern gene editing and application technologies to provide nitrogen to crops. We are dedicated to providing new ...
Dharmacons services and reagents, which leverage gene-editing and modulation technologies, are now complemented by Revvitys imaging, detection, automation and LabChip platforms to better enable ...
Dharmacons services and reagents, which leverage gene-editing and modulation technologies, are now complemented by Revvitys imaging, detection, automation and LabChip platforms to better enable ...
Post-Doctoral Associate
$63K - $77K/mo
Experience with Gene-Editing, CRISPR/Cas9 tools. Preferred Qualifications: * Experience in Stem Cell Culture, Cardiomyocytes culture, and Cardiac Cell Differentiation. * Experience with generating ...
Post-Doctoral Associate
$63K - $77K/mo
Experience with Gene-Editing, CRISPR/Cas9 tools. Preferred Qualifications: * Experience in Stem Cell Culture, Cardiomyocytes culture, and Cardiac Cell Differentiation. * Experience with generating ...
These projects involve a broad array of well-established techniques such as mouse genetics, CRISPR gene editing, cell culture, differentiation of iPSCs and organoids, microdissection of tissues, and ...
These projects involve a broad array of well-established techniques such as mouse genetics, CRISPR gene editing, cell culture, differentiation of iPSCs and organoids, microdissection of tissues, and ...
Research Fellow-Genomics
Rochester, MN · On-site
These projects involve a broad array of well-established techniques such as mouse genetics, CRISPR gene editing, cell culture, differentiation of iPSCs and organoids, microdissection of tissues, and ...
Research Fellow-Genomics
Rochester, MN · On-site
These projects involve a broad array of well-established techniques such as mouse genetics, CRISPR gene editing, cell culture, differentiation of iPSCs and organoids, microdissection of tissues, and ...
Research Fellow-Genomics
Rochester, MN · On-site
These projects involve a broad array of well-established techniques such as mouse genetics, CRISPR gene editing, cell culture, differentiation of iPSCs and organoids, microdissection of tissues, and ...
Research Fellow-Genomics
Rochester, MN · On-site
These projects involve a broad array of well-established techniques such as mouse genetics, CRISPR gene editing, cell culture, differentiation of iPSCs and organoids, microdissection of tissues, and ...
Staff Engineer, Machine Learning Life Sciences
North Oaks, MN · On-site
$148.53 - $204.25/hr
About the role Inari is seeking a Staff Machine Learning Engineer to join our AI Team in support of our mission of transforming agriculture through predictive design and advanced gene editing. This ...
Staff Engineer, Machine Learning Life Sciences
North Oaks, MN · On-site
$148.53 - $204.25/hr
About the role Inari is seeking a Staff Machine Learning Engineer to join our AI Team in support of our mission of transforming agriculture through predictive design and advanced gene editing. This ...
Research Fellow - Hematology
Rochester, MN · On-site
$49K - $67K/yr
Candidates should be well versed in standard cellular and molecular biology techniques (cell culture, DNA, RNA, and protein studies, gene editing, and flow cytometry). Interest and prior experience ...
Research Fellow - Hematology
Rochester, MN · On-site
$49K - $67K/yr
Candidates should be well versed in standard cellular and molecular biology techniques (cell culture, DNA, RNA, and protein studies, gene editing, and flow cytometry). Interest and prior experience ...
Research Fellow - Hematology
Rochester, MN · On-site
$44K - $61K/yr
Candidates should be well versed in standard cellular and molecular biology techniques (cell culture, DNA, RNA, and protein studies, gene editing, and flow cytometry). Interest and prior experience ...
Research Fellow - Hematology
Rochester, MN · On-site
$44K - $61K/yr
Candidates should be well versed in standard cellular and molecular biology techniques (cell culture, DNA, RNA, and protein studies, gene editing, and flow cytometry). Interest and prior experience ...
Gene Editing information
See Minnesota salary details
$34.3K - $41.2K
14% of jobs
$41.2K - $48.2K
4% of jobs
$52.5K is the 25th percentile. Wages below this are outliers.
$48.2K - $55.1K
11% of jobs
$55.1K - $62.1K
19% of jobs
The median wage is $63.1K / yr.
$62.1K - $69K
11% of jobs
$69K - $75.9K
5% of jobs
$80.8K is the 75th percentile. Wages above this are outliers.
$75.9K - $82.9K
15% of jobs
$82.9K - $89.8K
8% of jobs
$89.8K - $96.8K
2% of jobs
$96.8K - $103.7K
5% of jobs
$103.7K - $110.7K
5% of jobs
$34.3K
$70.3K
$110.7K
How much do gene editing jobs pay per year?
What is gene editing?
A Gene Editing job involves researching, developing, and applying techniques to modify DNA in organisms to achieve desired traits or correct genetic defects. Professionals in this field work with technologies like CRISPR, TALENs, and zinc finger nucleases to edit genes for medical, agricultural, or scientific purposes. Roles may include laboratory research, therapeutic development, or regulatory compliance. Scientists in this field typically have backgrounds in genetics, molecular biology, or biotechnology.
What does gene editing do?
Professionals in Gene Editing roles often spend their days designing and executing experiments, analyzing genetic sequences, and developing new methods for modifying DNA in various organisms. You may also be responsible for maintaining detailed lab documentation, troubleshooting experimental challenges, and collaborating with interdisciplinary teams of biologists, chemists, and data analysts. Common tasks include preparing genetic constructs, operating advanced laboratory equipment, and interpreting research results to inform ongoing projects. These responsibilities are integral to driving scientific discovery and bringing new gene-editing applications to practical use.
What are the key skills and qualifications needed to thrive in gene editing?
To thrive in Gene Editing, you need a strong background in molecular biology, genetics, and biotechnology, typically supported by an advanced degree such as a PhD or MS in related fields. Familiarity with gene editing tools like CRISPR-Cas9, PCR, DNA sequencing platforms, and relevant software is essential, along with potential certifications in laboratory safety or bioinformatics. Attention to detail, strong problem-solving abilities, and collaborative communication skills are valuable for navigating complex experiments and coordinating with research teams. These competencies are vital to ensure experimental accuracy, maintain compliance with regulations, and drive innovation in this rapidly evolving scientific area.
Does gene editing have a future?
What jobs work with gene editing?
What are popular job titles related to Gene Editing jobs in Minnesota?
For Gene Editing jobs in Minnesota, the most frequently searched job titles are:
What job categories do people searching Gene Editing jobs in Minnesota look for?
The top searched job categories for Gene Editing jobs in Minnesota are:

$61K - $74K/mo
Full-time
Medical, Dental, Life
Re-posted 5 days ago
Job description
About the Job:
We are seeking a motivated and productive post doctoral associate with experience in human induced pluripotent stem cells (iPS) to join our team. In this role, you will have the opportunity to contribute to funded research projects focused on dystrophic cardiomyopathy using human induced pluripotent stem cells derived cardiac organoids for disease modeling and gene editing. This research aims to deepen our understanding of dystrophic cardiomyopathy and develop novel therapeutic strategies.
Collaboration is a fundamental aspect of this position. You will work closely with a multidisciplinary team of researchers to design, execute, and analyze experiments.
As a Postdoctoral Associate, you will be responsible for conducting experiments and collecting data. You will contribute to the preparation of research manuscripts for submission and you will have the opportunity to present your findings at relevant scientific meetings. In addition to your research responsibilities you will play an important role in supervising junior trainees.
70% Experimental Research
Development, design, and implementation of experiments to study muscular dystrophy and genetic cardiomyopathies
Analysis of data for presentations and publications
Review relevant manuscripts
15% Scientific Writing and Presentations
Develop and write journal articles including primary research and review articles for peer-reviewed journals
Participation in laboratory meetings
Presentation at local and national meetings
10% Lab supervision
Provide day-to-day supervision of trainees
Be a resource for laboratory personnel and trainees for troubleshooting
5%: Other duties as assigned
Required Qualifications:
Ph.D. in biomedical fields or related area including stem cell biology, molecular biology, genomics, biomedical engineering, biochemistry
Experience of successfully contributing to writing papers and grants
Prior experience with CRISPR/Cas9 gene editing in human stem cells
Preferred Qualifications:
Special consideration will be given to individuals with experience in human induced pluripotent stem cell techniques including line derivation, cardiac differentiation, and gene editing.
Excellent communication skills written and verbal
Successful candidates will work collaboratively with junior trainees
Prior experience with CRISPR/Cas9 gene editing
Pay Range: $61,008 - $74,088 depending on education/qualifications/experience and appropriate NIH stipend level
Please visit the Benefits for Postdoctoral Candidates website for more information regarding benefit eligibility.
- Competitive wages, paid holidays, and generous time off
- Continuous learning opportunities through professional training
- Medical, dental, and pharmacy plans
- Healthcare and dependent care flexible spending accounts
- University HSA contributions
- Disability and life insurance
- Employee wellbeing program
- Financial counseling services
- Employee Assistance Program with eight sessions of counseling at no cost
Applications must be submitted online. To be considered for this position, please click the Apply button and follow the instructions. You will have the opportunity to complete an online application for the position and attach a cover letter and resume.
Additional documents may be attached after application by accessing your "My Job Applications" page and uploading documents in the "My Cover Letters and Attachments" section.
This position will remain open until filled.
To request an accommodation during the application process, please e-mail employ@umn.edu or call (612) 624-8647.
The University recognizes and values the importance of diversity and inclusion in enriching the employment experience of its employees and in supporting the academic mission. The University is committed to attracting and retaining employees with varying identities and backgrounds.
The University of Minnesota provides equal access to and opportunity in its programs, facilities, and employment without regard to race, color, creed, religion, national origin, gender, age, marital status, disability, public assistance status, veteran status, sexual orientation, gender identity, or gender expression. To learn more about diversity at the U: http://diversity.umn.edu
Any offer of employment is contingent upon the successful completion of a background check. Our presumption is that prospective employees are eligible to work here. Criminal convictions do not automatically disqualify finalists from employment.
The University of Minnesota, Twin Cities (UMTC)
The University of Minnesota, Twin Cities (UMTC), is among the largest public research universities in the country, offering undergraduate, graduate, and professional students a multitude of opportunities for study and research. Located at the heart of one of the nation's most vibrant, diverse metropolitan communities, students on the campuses in Minneapolis and St. Paul benefit from extensive partnerships with world-renowned health centers, international corporations, government agencies, and arts, nonprofit, and public service organizations.
At the University of Minnesota, we are proud to be recognized by the Star Tribune as a Top Workplace for 2021, as well as by Forbes as Best Employers for Women and one of Americas Best Employers (2015, 2018, 2019, 2023), Best Employer for Diversity (2019, 2020), Best Employer for New Grads (2018, 2019), and Best Employer by State (2019, 2022).
About the U of M Medical School:
Committed to innovation and diversity, the Medical School educates physicians, scientists, and health professionals; generates knowledge and treatments; and cares for patients and communities with compassion and respect. We value excellence, inclusiveness, collaboration, and discovery.
The mission of the regional campus located in Duluth is to be a national leader in improving healthcare access and outcomes in rural Minnesota and American Indian/Alaska Native (AI/AN) communities. In partnership with CentraCare, the regional campus in St. Cloud offers a wide range of patient experiences throughout students education in Greater Minnesota and prepares them to become exceptional clinicians and leaders for rural and immigrant populations.
Founded in 1888, the University of Minnesota Medical School has three campuses. A four-year MD program and the MD/PhD program are located on the Twin Cities campus in addition to MD programs at regional campuses in Duluth and St. Cloud.
About University of Minnesota
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Industry
Education
Company size
10,000+ Employees
Headquarters location
Minneapolis, MN, US
Year founded
1851