How is CRISPR used?
Zippia reviewed thousands of resumes to understand how crispr is used in different jobs. Explore the list of common job responsibilities related to crispr below:
- Established working protocols for targeted genome editing using CRISPR technology.
- Expanded multiple clones to verify CRISPR knock out of gene targets.
- Extended course knowledge of CRISPR to experiment.
- Experience working with CRISPR technology.
- Utilized CRISPR technology to generate MED12 exon 2 deletion mutations in colon cancer cells.
- Established the CRISPR genome editing technique for C. elegans in the laboratory.
Are CRISPR skills in demand?
Yes, crispr skills are in demand today. Currently, 482 job openings list crispr skills as a requirement. The job descriptions that most frequently include crispr skills are molecular research technologist, postdoc fellow, and molecular biologist.
How hard is it to learn CRISPR?
Based on the average complexity level of the jobs that use crispr the most: molecular research technologist, postdoc fellow, and molecular biologist. The complexity level of these jobs is challenging.
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What jobs can you get with CRISPR skills?
You can get a job as a molecular research technologist, postdoc fellow, and molecular biologist with crispr skills. After analyzing resumes and job postings, we identified these as the most common job titles for candidates with crispr skills.
Molecular Research Technologist
Job description:
A molecular research technologist works in a laboratory and performs duties to analyze samples. Molecular research technologists are responsible for collecting samples for research, testing specimens using various materials and equipment, and studying how treatments and clinical drugs affect samples. They identify issues and troubleshooting, maintain data analysis records, entering data into a lab information system, and preparing lab equipment. They should perform complex procedures with understanding and a high degree of accuracy. As molecular research technologists, their skills are in demand in genotyping involving in the genetic and molecular sugarcane breeding program.
- CRISPR
- Lab Equipment
- Tissue Culture
- Chemistry
- Extraction
- Data Analysis
Molecular Biologist
Job description:
A molecular biologist is a specialist who explores and studies the complex functions of cells on a molecular level as well as the biological laws governing the operations of each cellular component. To conduct research and academic activities, molecular biologists use equipment such as microscopes, lab centrifuges, and computers with software that allows the analysis of obtained data. They are required to develop a new way to test the validity of drugs that are used to stimulate safe gene growth and fight off disease. Molecular biologists must also conduct workshops and practical demonstrations in universities and governmental agencies.
- CRISPR
- Next-Generation Sequencing
- Cell Culture
- Lab Equipment
- Molecular Biology Techniques
- Extraction
Senior Research Associate
Job description:
A Senior Research Associate works closely with research team members to implement research ideas. They diagnose, solve system/software problems, and install application software according to research needs.
- Patients
- Data Analysis
- CRISPR
- Molecular Biology
- Cell Culture
- Flow Cytometry
Postdoctoral Associate
Job description:
A postdoctoral associate is responsible for researching to support scientific claims and theories by collecting evidence and information to answer scientific questions. Postdoctoral associates must have excellent communication skills, both oral and written, to interact with people and document investigation findings. They also utilize laboratory tools and equipment for scientific researches, conduct field investigations, and interview participants. A postdoctoral associate designs comprehensive research models to discuss results with the panel and the team efficiently and accurately.
- Patients
- TIP
- Data Analysis
- Biomedical
- CRISPR
- Python
Staff Research Scientist
Job description:
A staff research scientist is responsible for conducting and evaluating research. They may work in areas such as meteorology, geosciences, medical research, or pharmacology. They develop experiments, conduct them, and analyze data.
- QC
- HPLC
- Product Development
- Cell Biology
- CRISPR
- LCMS
Senior Associate Scientist
Job description:
A Senior Associate Scientist supervises the work of associate scientists. They manage the design and implementation process of a research project, which includes analyzing information for that project.
- Data Analysis
- Chemistry
- Cell Culture
- CRISPR
- Flow Cytometry
- Oncology
Postdoctoral Research Scientist
Job description:
A Postdoctoral Research Scientist undertakes and analyzes information about investigations, experiments, and trials from a controlled laboratory. They work in almost every area of science.
- Python
- C++
- Research Projects
- CRISPR
- Data Analysis
- Cell Culture
How much can you earn with CRISPR skills?
You can earn up to $59,138 a year with crispr skills if you become a molecular research technologist, the highest-paying job that requires crispr skills. Postdoc fellows can earn the second-highest salary among jobs that use Python, $58,376 a year.
| Job title | Average salary | Hourly rate |
|---|---|---|
| Molecular Research Technologist | $59,138 | $28 |
| Postdoc Fellow | $58,376 | $28 |
| Molecular Biologist | $73,763 | $35 |
| Senior Research Associate | $72,618 | $35 |
| Postdoctoral Associate | $54,350 | $26 |
Companies using CRISPR in 2025
The top companies that look for employees with crispr skills are Editas Medicine, Dana-Farber Cancer Institute, and AAAS. In the millions of job postings we reviewed, these companies mention crispr skills most frequently.
| Rank | Company | % of all skills | Job openings |
|---|---|---|---|
| 1 | Editas Medicine | 9% | 2 |
| 2 | Dana-Farber Cancer Institute | 9% | 347 |
| 3 | AAAS | 8% | 6 |
| 4 | University of Maryland, Baltimore | 7% | 647 |
| 5 | Stanford University | 6% | 873 |
Departments using CRISPR
| Department | Average salary |
|---|---|
| Research & Development | $52,336 |
3 courses for CRISPR skills
1. CRISPR/Cas9 Crash Course for Beginners
Welcome to the CRISPR/Cas9 Crash Course for Beginners. This is the first online Course on CRISPR/Cas9, the latest emerging revolutionizing gene-editing technology in the biological world. Over the past few years, CRISPR has been making headlines. Experts predict that this ''gene editing'' technology will transform our planet, revolutionizing the societies we live in and the organisms we live alongside. Compared to other tools used for genetic engineering, CRISPR-Cas9 is precise, cheap, easy to use, and remarkably powerful. Our complete CRISPR/Cas9 course teaches you skills in performing the best CRISPR/Cas9 lab experiment. Even if you have ZERO genome editing experience. We'll teach you step-by-step through engaging lectures and labs, teach you everything you need to know to succeed in the CRISPR lab experiment. Enroll today and enjoy:2.5 hours of on-demand lecture videos. Two hands-on Labs.14 Articles.9 Downloadable resources, original research & review papers. Certificate of Completion( To add in CV or Linkedin profile). Who this course is for: If you are an absolute beginner in the genome-editing field. If you are interested to learn about CRISPR/Cas9, gene-editing technology. If you know a little about CRISPR/Cas9 and want to get the best results in your CRISPR/Cas9 lab experiment. Biohackers who need in-depth knowledge to do actual novel gene editing experiments. I assure you, after this MOOC you will be able to design your ''First CRISPR/Cas9 lab project'' What existing students have to say about the course:''Great course would recommend, I've learned so much. It's a must. Love the way he teaches. Easy to learn with him. Wish I had a teacher like this back then''.''This course provided me not only clear and detailed knowledge of CRISPR but also the foundations of Genetics, critical to understanding the big picture. Great structure and content. I am very happy with it will strongly recommend it'' Thanks again for checking out my course and I look forward to seeing you in the classroom:)...
2. CRISPR Cas System: Applications in Gene Editing and Beyond
Gene editing with the CRISPR-Cas system has been called one of the biggest technologies of the decade for its applications in medicine, agriculture, and much more. And in this course we will delve deep into the details of gene editing and why it is being seen as a promising strategy for the treatment of numerous genetic diseases like sickle cell disease, cystic fibrosis, etc to the generation of engineered crops, wiping out of malaria causing mosquitoes and others. You will get advanced learning of how CRISPR functions as a gene-editing tool, its comparison to other gene editing tools like Zinc Finger Nucleases, TALENs, etc, components of the CRISPR-Cas system, and the different ways in which CRISPR can be applied to healthcare, agriculture, and many other industries. The beauty of the CRISPR system is that its applications extend much further beyond just gene editing. For instance, the CRISPR-Cas system can be used as a powerful tool to regulate gene expression. In this course, we will learn how scientists have been modifying the CRISPR system to reversibly activate or silence genes and edit the epigenome in previously unimaginable ways. This can open the doors to new treatment options and a better understanding of human pathogenesis. This course will cover how fluorescent proteins can be attached to the components of CRISPR-Cas to detect and locate the positions of specific DNA sequences on the chromosomes. This, in turn, can be useful to visualize the 3D architecture of the genome or to know various chromosomal abnormalities, including deletions, duplications, and translocations that influence cell function in normal and diseased states. Additionally, we will also discuss, how using CRISPR, the researchers have expanded chromatin immunoprecipitation or ChIP to identify proteins associated with a particular genomic sequence. Further in this course, we will talk about how scientists have harnessed the CRISPR-Cas technology for diagnosing infectious diseases including COVID-19. The limitations and challenges of the CRISPR-Cas system have also been discussed. Additionally, this course will provide a detailed discussion on CRISPR-mediated precise gene editing techniques like prime editing and base editing, that can revolutionize the treatment of genetic diseases while limiting the negative effects of the CRISPR-Cas system. For precise gene editing and non-gene editing applications, several variants of Cas9 nuclease have been engineered. In this course, you will get a thorough understanding of these variants, their engineering, and their significance. This course is an invaluable resource for medical students, doctors, and students of disciplines like biotechnology, biology, immunology, genetics, molecular biology, cell biology, and bioinformatics. In the course, the most challenging concepts are presented in a simple and palatable format using animations and graphics...
3. COVID-19: CRISPR based diagnosis and Antibody Therapies
Welcome to the Course "CRISPR-based diagnosis & Antibody therapies for COVID-19 Disease". Since its discovery as a part of a bacterial defense mechanism, the CRISPR-Cas system has revolutionized the fields of genome editing and genetic engineering. Recently scientists all over the globe are trying to leverage the power of CRISPR to develop kits for rapid COVID-19 diagnosis. So what is the CRISPR-Cas system and how it can be used for COVID-19 diagnosis - all of this will be discussed in detail in this course. Additionally, you will get a detailed understanding of CRISPR-based rapid and point-of-care diagnostic kits like Sherlock, DETECTR, FELUDA, etc. In this course, We will also talk about isothermal nucleic acid amplification processes like RPA and LAMP that make them excellent candidates for developing low-cost, rapid, and point-of-care diagnosis. Further, we will discuss how the test results of crispr based diagnostic kits can be visualized on the lateral flow strip. The colored lines on the strip, similar to pregnancy tests, indicate whether the COVID-19 test is positive or negative. In this course, we will also be looking at some of these antibody therapies like Monoclonal Antibody Therapy, which has revolutionized the treatment for cancer and has also shown potential to become a treatment for COVID-19 disease. Additionally, this course will provide you a detailed explanation of plasma therapy, how it is being used for the treatment of COVID-19, its advantages, and its limitations. This course is an invaluable resource for medical students, doctors, and students of disciplines like biotechnology, biology, immunology, genetics, molecular biology, cell biology, and bioinformatics. In the course, the most challenging concepts are presented in a simple and palatable format using animations and graphics. With a 30-day return policy, there is nothing to lose for you here. If you feel the course is not worth your money, you can return it and get your money back. Though, we assure you that you will not be disappointed by your wise decision of buying this course.#crispr #criar criar...