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Full Time Synthetic Biology Jobs (NOW HIRING)

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Full Time Synthetic Biology information

What is a full time synthetic biology job?

A Full Time Synthetic Biology job involves working in the field of synthetic biology, which combines biology, engineering, and computer science to design and build new biological parts, devices, and systems. Professionals in this role often work in research and development, biotech companies, or academic institutions, focusing on projects like creating synthetic organisms, improving biofuels, or developing novel medical therapies. These positions are typically full-time, requiring a standard workweek commitment, and may involve laboratory work, data analysis, and collaboration with multidisciplinary teams. The goal is to solve real-world problems using engineered biological systems.

What are the key skills and qualifications needed to thrive as a full-time synthetic biologist?

To thrive as a Full-Time Synthetic Biologist, you need a solid background in molecular biology, genetic engineering, and biochemistry, typically supported by a degree in biology, bioengineering, or a related field. Familiarity with laboratory automation tools, DNA synthesis platforms, CRISPR technologies, and bioinformatics software is important. Strong problem-solving skills, collaboration, and adaptability enable effective teamwork and the ability to tackle complex challenges. These skills ensure innovative research, precise experimentation, and the successful development of novel biological systems or products.

What are some typical challenges faced by professionals working in full-time synthetic biology roles?

Professionals in full-time synthetic biology roles often face challenges such as troubleshooting complex biological systems that may behave unpredictably, meeting tight project deadlines, and staying current with rapid advancements in the field. Collaboration with interdisciplinary teams—including biologists, engineers, and data scientists—is common, requiring strong communication and teamwork skills. Additionally, navigating regulatory requirements and ensuring reproducibility of results can add to the complexity of daily responsibilities.

What is the difference between Full Time Synthetic Biology vs Full Time Bioinformatics Specialist?

AspectFull Time Synthetic BiologyFull Time Bioinformatics Specialist
Required CredentialsDegree in Synthetic Biology, Biotechnology, or related fieldsDegree in Bioinformatics, Computer Science, or related fields
Work EnvironmentLaboratories, biotech companies, research institutionsResearch labs, biotech firms, healthcare organizations
Industry UsageBiotech, pharmaceuticals, agricultural biotechHealthcare, genomics, personalized medicine
Common Search/ComparisonYesYes

Full Time Synthetic Biology focuses on designing and constructing new biological parts and systems, often in lab settings, while Full Time Bioinformatics Specialists analyze biological data using computational tools. Both roles require strong scientific backgrounds but differ in their core skills and industry applications.

More about Full Time Synthetic Biology jobs

What cities are hiring for Full Time Synthetic Biology jobs?

Cities with the most Full Time Synthetic Biology job openings:

What are the most commonly searched types of Synthetic Biology jobs?

The most popular types of Synthetic Biology jobs are:

What states have the most Full Time Synthetic Biology jobs?

States with the most job openings for Full Time Synthetic Biology jobs include:

Infographic showing various Full Time Synthetic Biology job openings in the United States as of August 2026, with employment types broken down into 63% Full Time, 33% Part Time, 1% Temporary, and 3% Contract. Highlights an 77% Physical, 2% Hybrid, and 21% Remote job distribution.

Postdoctoral Associate, Mammalian Synthetic Biology

Massachusetts Institute of Technology

Cambridge, MA • On-site

$90K/yr

Full-time

This job post has expired today. Applications are no longer accepted.


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8.8

Company rating: 8.8 out of 10

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Job description

Postdoctoral Associate, Mammalian Synthetic Biology

  • Job Number: 25641
  • Functional Area: Research - Scientific
  • Department: Department of Biological Engineering
  • School Area: Engineering
  • Pay Range Minimum: $73,308
  • Pay Range Maximum: $90,000
  • Employment Type: Full-Time
  • Employment Category: Exempt
  • Visa Sponsorship Available: Yes
  • Schedule:
  • Pay Grade: No Grade

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Posting Description

POSTDOCTORAL ASSOCIATE, MAMMALIAN SYNTHETIC BIOLOGY , Biological Engineering - Weiss Lab (http://weiss-lab.mit.edu/) , t o join an interdisciplinary academic research lab focused on creating integrated biological systems capable of autonomously performing useful tasks and elucidating design principles for engineering complex cellular and tissue phenotypes; d esign, build, and test mammalian synthetic gene circuits, including sensing modules (e.g., RNA/miRNA/metabolite-responsive elements), logic/control elements, and output programs that drive measurable cellular behaviors; engineer and maintain mammalian cell lines; p erform genome engineering and targeted integration workflows; v alidate engineered lines using standard molecular and cellular assays; and p lan and execute experiments to characterize circuit performance using flow cytometry, microscopy, RT-qPCR, sequencing-based readouts, ELISA, and related methods.

Job Requirements

REQUIRED:

Ph.D. in biological sciences, computer science, engineering, physics, math, or a related field; experience in a minimum of the following—mammalian cell culture and differentiation, iPSC engineering, large-scale DNA assembly and characterization, genetic recombination and site-specific genome integration (e.g., CRISPR/Cas9, RMCE), next-generation sequencing, computational methods/tools for analysis, and statistics; background in molecular biology, synthetic biology, protein engineering, immunology, and/or cell biology; demonstrated ability to design and execute rigorous experiments and detailed protocols; strong organizational, analytical, problem-solving, and documentation skills; ability to manage multiple priorities and work both independently and collaboratively in a dynamic, multidisciplinary environment; and excellent written and verbal communication skills, including presenting research through talks and publications.

PREFERRED:

Experience designing and validating mammalian genetic circuits that sense cell state (e.g., mRNA/miRNA) and/or use recombinase- or CRISPR-based control strategies; proficiency in common characterization methods (e.g., flow cytometry, RT-qPCR, NGS-based readouts); and experience working in milestone-driven, team-based research programs and contributing to manuscripts, reports, and sponsor-facing presentations.4/14/2026


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