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Bioengineering Jobs in Washington (NOW HIRING)

Scientist

Bethesda, MD · On-site

$74K - $124K/yr

D. in immunology, molecular biology, bioengineering, or a related field (or equivalent combination of education and experience). * Experience working within federal research environments such as NIH ...

Scientist

Bethesda, MD

$74K - $124K/yr

D. in immunology, molecular biology, bioengineering, or a related field (or equivalent combination of education and experience). * Experience working within federal research environments such as NIH ...

Showing results 41-60

Bioengineering information

See Washington salary details

$48.9K

$75K

$107.9K

How much do bioengineering jobs pay per year?

As of Aug 10, 2026, the average yearly pay for bioengineering in Washington is $74,988.00, according to ZipRecruiter salary data. Most workers in this role earn between $61,198.00 and $86,966.00 per year, depending on experience, location, and employer.

What is bioengineering?

Bioengineering is an interdisciplinary field that applies principles of biology, engineering, and medicine to develop technologies and devices that improve healthcare and advance biological research. Bioengineers may work on projects such as designing medical devices, developing artificial organs, creating tissue engineering solutions, or improving drug delivery systems. The field blends knowledge from various scientific disciplines to solve complex problems in health and medicine, agriculture, and environmental systems. Bioengineers often collaborate with doctors, researchers, and other engineers to create innovative solutions that benefit society.

What are the key skills and qualifications needed to thrive as a bioengineer, and why are they important?

To thrive as a Bioengineer, you need a solid background in biology, engineering principles, mathematics, and typically a bachelor's or advanced degree in bioengineering or biomedical engineering. Familiarity with CAD software, laboratory instrumentation, and regulatory compliance systems is often required. Strong problem-solving abilities, creativity, and effective communication skills help bioengineers excel in multidisciplinary teams. These skills and qualities are crucial for developing innovative solutions that improve healthcare technologies and biological systems.

Are bioengineers well paid?

Bioengineers typically earn competitive salaries that vary by experience, education, and location. According to industry data, the median annual wage for bioengineers is higher than the national average for all occupations, and those with advanced degrees or specialized skills tend to earn more. The field also offers opportunities for growth in research, development, and healthcare industries.

What are some common interdisciplinary collaborations that a bioengineer can expect in their daily work?

Bioengineers frequently collaborate with professionals from diverse backgrounds, including biologists, medical doctors, chemists, and engineers from other disciplines. These interdisciplinary teams work together to develop innovative medical devices, biomaterials, or diagnostic tools. Effective communication and teamwork are essential, as projects often require integrating biological knowledge with engineering principles. Regular meetings, joint problem-solving sessions, and cross-functional project planning are common, providing bioengineers with valuable exposure to various fields and perspectives.

What is the difference between Bioengineering vs Biomedical Engineering?

AspectBioengineeringBiomedical Engineering
Required CredentialsBachelor's or Master's in Bioengineering or related fieldsBachelor's or Master's in Biomedical Engineering or related fields
Work EnvironmentResearch labs, healthcare companies, biotech firmsHospitals, medical device companies, research institutions
Industry UsageDevelops biological solutions, tissue engineering, genetic researchDesigns medical devices, prosthetics, and healthcare technology

Bioengineering and Biomedical Engineering share many credentials and work environments, often overlapping in research and development roles. However, bioengineering tends to focus more on biological systems and genetic research, while biomedical engineering emphasizes medical devices and healthcare technology. Both fields are integral to advancing healthcare and often collaborate within the biotech and medical industries.

What are popular job titles related to Bioengineering jobs in Washington? For Bioengineering jobs in Washington, the most frequently searched job titles are:
Infographic showing various Bioengineering job openings in Washington as of August 2026, with employment types broken down into 1% Internship, 89% Full Time, 7% Part Time, and 3% Contract. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution, with an average salary of $74,988 per year, or $36.1 per hour.

Research Assistant Professor

George Mason University

Prince William, VA • On-site

Other

Re-posted 5 days ago


George Mason University rating

8.3

Company rating: 8.3 out of 10

Based on 19 frontline employees who took The Breakroom Quiz

125th of 617 rated colleges and universities


Job description

Research Assistant Professor
  • 10003990
  • Prince William County, VA
  • Research Faculty
  • Opening on: Apr 15 2026
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Department: College of Science

Classification: 12-month Research Faculty

Job Category: Research Faculty

Job Type: Full-Time

Work Schedule: Full-time (1.0 FTE, 40 hrs/wk)

Location: Prince William County, VA

Workplace Type: On Site Required

Sponsorship Eligibility: Not eligible for visa sponsorship

Salary: Salary commensurate with education and experience

Restricted: Yes

Criminal Background Check: Yes

Works with Minors Check: Yes

About the Department:

The Center for Applied Proteomics and Molecular Medicine (CAPMM) is in the School of Systems Biology/College of Science at George Mason University. CAPMM is a world-renown laboratory that focuses on the development and implementation of cutting-edge protein analysis and advancing the field of proteomics, the systematic analysis of protein architecture in diseases and biological processes. The focus of the Center is to create new technologies and make basic science discoveries in the field of disease pathogenesis and apply these discoveries and technologies to create and implement strategies for disease prevention, early diagnosis, and individualized therapy. A primary area of emphasis of our research is in cancer, but new technologies developed in the Center are being applied to a number of important human diseases including cardiovascular disease, diabetes, and obesity, as well as liver, ocular, neurodegenerative and infectious diseases.
George Mason University College of Science (Mason Science) is committed to advancing inclusive excellence and fostering an environment free from discrimination, harassment, and retaliation throughout our STEM community. At Mason Science, our values include cultivating an organizational culture that promotes belonging, respect, and civility. We believe that varied opinions, cultures, and perspectives are what provides vibrancy, innovation, and growth to an academic community. By prioritizing cultural responsiveness in academics, teaching, research, and global engagement, we strive to attract faculty and staff who exemplify the Mason Science mission and vision.

About the Position:

The Research Assistant Professor will primarily support and conduct research as part of a multidisciplinary team, working closely with the Principal Investigator to advance discoveries in disease biology and translate them into clinical applications. The role involves performing a wide range of molecular and cellular laboratory techniques; contributing to data analysis, including collaboration with data scientists on large proteomic datasets; and supporting laboratory operations. The position also includes facilitating research coordination with project collaborators.
A secondary purpose of the role includes teaching undergraduate and graduate courses - emphasizing creativity and innovation -providing hands on student training and mentorship, and supporting technology transfer activities, including invention disclosure education and commercialization efforts.

Responsibilities:

  • Conducts independent and collaborative research focused on mechanisms of cancer pathophysiology and progression, with emphasis on cell-cell communication mediated by vesicle trafficking in living tissues;
  • Develops and submits grant proposals, contracts, patent applications, and commercial partnership requests to secure funding and support research programs;
  • Mentors and supervises trainees, including high school, undergraduate, and graduate students, in cancer research methodologies, scientific reasoning, and laboratory practices;
  • Applies bioengineering principles to the study of cancer biology, integrating engineering-based tools and approaches into experimental design and analysis;
  • Collaborates with scientists and clinicians within the unit and across external institutions to advance multidisciplinary cancer research initiatives;
  • Publishes peerreviewed manuscripts, reviews, and related scholarly works in highimpact scientific journals;
  • Presents research findings at national and international scientific conferences, symposiums, and professional meetings;
  • Ensures compliance with all regulatory standards, including IHS, IACUC, IRB, CAP, and NIH guidelines, while overseeing human and animal research activities;
  • Directs cancer tissue profiling efforts within clinical research trials using proteomics, histopathology, lasercapture microdissection (LCM), interstitial fluid collection, and molecular biology techniques;
  • Contributes to the advancement of the research unit through active participation in strategic planning, laboratory management, and technological innovation;
  • Serves as the instructional and technical liaison between CAPMM and the university's Office of Technology Transfer;
  • Provides training to students and faculty on invention disclosure preparation, provisional patent filing, claim development, and USPTO examiner interactions;
  • Collaborates with Technology Transfer staff to guide students through drafting provisional patents, filing formal applications, conducting examiner reviews, and submitting supporting documentation;
  • Integrates intellectual property education into STEM curriculum, emphasizing practical pathways from research to commercialization;
  • Leads project planning efforts for new and existing instructional programs, identifying opportunities to improve curriculum quality, accessibility, and program reach;
  • Develops innovative projectbased learning modules that incorporate emerging technologies, creative problem solving, and interdisciplinary collaboration;
  • Ensures continuous improvement of online instructional tools, digital resources, and virtual teaching strategies;
  • Emphasizes the practical and economic value of STEM degrees by teaching pathways for translational research, entrepreneurship, and technology commercialization;
  • Engages students in discussions about the broader societal and industry impacts of innovation, intellectual property, and applied research; and
  • Supports the growth of a culture of creativity, innovation, and scientific curiosity across all assigned educational programs.

Required Qualifications:

  • Terminal degree (PhD) in related field;
  • 3-year post PhD research experience in related field at time of appointment;
  • Demonstrated hands-on laboratory experience in the area of cancer research;
  • Experience with word processing and spreadsheet software;
  • Willingness to work at BSL-2;
  • Basic knowledge of cancer biology and molecular/cellular laboratory techniques;
  • Understanding of laboratory safety, biosafety practices, and research ethics;
  • Familiarity with regulatory principles (IRB, IACUC, NIH) and responsible conduct of research;
  • Ability to perform standard laboratory procedures and follow established protocols;
  • Strong organizational and logistical coordination skills;
  • Effective written and verbal communication skills for research;
  • Competence with basic data entry, record-keeping, and common software applications;
  • Ability to learn new scientific concepts, laboratory techniques, and instructional technologies quickly;
  • Ability to communicate scientific information clearly to diverse audiences;
  • Ability to collaborate effectively within multidisciplinary academic units and external constituents; and
  • Demonstrated interest in cancer research.

Preferred Qualifications:

  • Demonstrated track record of authoring high-impact research publications as first or corresponding author;
  • Clinical research experience;
  • Demonstrated track record of successfully achieved issued patents and participating in licensing negotiations;
  • Extensive experience in cancer research: cancer immunotherapy, solid tumors, tumor microenvironment, cell-cell communication, physiological principles of mitochondrial function and disease, extracellular vesicles biology, and lymphatic/lymph node biology;
  • Animal model experience;
  • Documented experience in successful attainment of research grant funding as a PI;
  • Experience with academic technology transfer and STEM instruction; and
  • Knowledge of proteomics and cell-cell communication as applied to cancer.

Instructions to Applicants:

For full consideration, applicants must apply for the Research Assistant Professor at https://jobs.gmu.edu/. Complete and submit the online application to include three professional references with contact information, and provide a cover letter and CV for review.

Posting Open Date: April 15, 2026

For Full Consideration, Apply by: April 29, 2026

Open Until Filled: Yes


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