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Biomedical Tissue Engineering Jobs in Virginia (NOW HIRING)

Deep knowledge of biomechanics, biomaterials, bioinstrumentation, medical imaging, tissue ... Familiar with biomedical engineering curricula and common challenges such as integrating biology ...

Deep knowledge of biomechanics, biomaterials, bioinstrumentation, medical imaging, tissue ... Familiar with biomedical engineering curricula and common challenges such as integrating biology ...

Deep knowledge of biomechanics, biomaterials, bioinstrumentation, medical imaging, tissue ... Familiar with biomedical engineering curricula and common challenges such as integrating biology ...

Deep knowledge of biomechanics, biomaterials, bioinstrumentation, medical imaging, tissue ... Familiar with biomedical engineering curricula and common challenges such as integrating biology ...

Deep knowledge of biomechanics, biomaterials, bioinstrumentation, medical imaging, tissue ... Familiar with biomedical engineering curricula and common challenges such as integrating biology ...

... tissue analyses to generate data for correlation with patient clinical data. The position's responsibilities will include: Collaborate with interdisciplinary teams including biomedical engineering ...

Research Technician

Blacksburg, VA

$15.75 - $21.75/hr

Fralin Biomedical Res. Institute Location: Washington, DC Categories: Research / Scientific The Ye ... Utilizing genetically engineered mouse and human glioma models, our lab investigates how glioma ...

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Biomedical Tissue Engineering information

What kind of job can a biomedical engineer do?

A biomedical engineer can work in designing and developing medical devices, prosthetics, and tissue engineering products. They often work in research laboratories, healthcare facilities, or manufacturing environments, utilizing skills in biology, engineering, and materials science to improve patient care and medical technologies.

What is biomedical tissue engineering?

Biomedical tissue engineering is a field of science and engineering focused on developing biological substitutes to restore, maintain, or improve the function of damaged tissues or organs. It combines principles from biology, engineering, materials science, and medicine to create scaffolds, cells, and biologically active molecules. These engineered tissues can be used for research, drug testing, or transplantation. The goal is to provide alternatives to traditional organ transplants and help address the shortage of donor tissues.

What is the difference between Biomedical Tissue Engineering vs Biomedical Research Scientist?

AspectBiomedical Tissue EngineeringBiomedical Research Scientist
Required CredentialsDegree in biomedical engineering, tissue engineering, or related fieldsDegree in biology, biochemistry, or related sciences
Work EnvironmentLaboratories, research facilities, clinical settingsLaboratories, research institutions, hospitals
Employer & IndustryMedical device companies, biotech firms, research institutesUniversities, government agencies, biotech companies
Common Search & ComparisonFocus on developing tissue scaffolds, regenerative therapiesFocus on understanding biological processes, drug development

Biomedical Tissue Engineering primarily involves designing and developing biological tissues and regenerative solutions, often requiring engineering and biological expertise. In contrast, Biomedical Research Scientists focus on understanding biological mechanisms and developing new therapies through scientific research. While both roles work in biomedical settings, their core objectives and skill sets differ, making this comparison relevant for those exploring careers in biomedical sciences.

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

To thrive as a Biomedical Tissue Engineer, you need a strong background in biology, biomaterials, and engineering principles, often supported by a degree in biomedical engineering or a related field. Familiarity with tissue culture techniques, CAD software, 3D bioprinting, and regulatory standards is commonly required. Strong problem-solving, collaboration, and communication skills help you excel in multidisciplinary teams and research environments. These competencies are crucial for developing innovative therapies and ensuring the safety and effectiveness of tissue-engineered products.

What are some common challenges faced by professionals in biomedical tissue engineering, and how can they be addressed?

Professionals in biomedical tissue engineering often encounter challenges such as ensuring the biocompatibility of materials, achieving successful integration of engineered tissues with host tissues, and managing complex multidisciplinary projects. Addressing these challenges typically involves close collaboration with biologists, clinicians, and materials scientists, as well as staying current with advances in biomaterials and regenerative medicine. Continuous learning, effective communication, and a problem-solving mindset are key to overcoming these hurdles and contributing to successful project outcomes.

What engineers make $300,000 a year?

In biomedical tissue engineering, senior-level professionals such as lead researchers, principal engineers, or those in executive roles can earn $300,000 or more annually, especially with extensive experience, advanced degrees, and specialized skills. High compensation often involves leadership positions, private sector roles, or work in biotech and medical device companies with profit-sharing or bonuses.

What engineers make $500,000?

In biomedical tissue engineering, high salaries reaching $500,000 are typically associated with senior-level roles such as research directors, principal engineers, or executives in biotech companies. These positions often require extensive experience, advanced degrees, and leadership responsibilities, and compensation may include bonuses and stock options.

What can you do with tissue engineering?

Biomedical tissue engineering professionals develop biological substitutes to restore or improve tissue function, working on creating artificial organs, skin, cartilage, and blood vessels. They use skills in cell culture, biomaterials, and bioreactor technology to design and test these solutions in laboratory and clinical settings.
Infographic showing various Biomedical Tissue Engineering job openings in Virginia as of July 2026, with employment types broken down into 3% Internship, 1% As Needed, 82% Full Time, 13% Part Time, and 1% Contract. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution.
Research Associate in Biomedical Engineering

Research Associate in Biomedical Engineering

University of Virginia

Charlottesville, VA • On-site

$62K - $68K/yr

Full-time

Posted 4 days ago


University Of Virginia rating

7.9

Company rating: 7.9 out of 10

Based on 35 frontline employees who took The Breakroom Quiz

182nd of 555 rated colleges and universities


Job description

The Department of Biomedical Engineering at the University of Virginia seeks a Research Associate to work in the Barker laboratory (Extracellular Matrix Biology and Engineering Laboratory).
The work in the Barker Lab requires advanced experimental and computational expertise. While the postdoctoral position's responsibilities will involve combined experimental and computational work, the position emphasizes the innovation, development and application of Advanced Biomanufacturing, Tissue Engineering, and Microphysiological Systems/Lab-on-a-Chip methods and approaches toward the creation of fully human disease tissue model systems for drug screening and future hypothesis-driven mechanistic exploration. Additionally, the projects in the Barker lab focus on a new research thrust in retinal degenerative diseases including inherited retinal diseases. As such, the postdoc will be able to handle the workload and perform (and train other lab members in) their respective computational and experimental techniques to answer key questions in retinal biology, though experience in retinal biology is not a prerequisite.
The postdoc will be expected to mentor, as appropriate, undergraduate and interact with graduate students, other postdocs and senior scientists, establish new application-specific methods, combine computational methods, as appropriate, with tissue engineering/organ-on-a-chip design, and contribute to grant applications and publications. The successful candidate will have demonstrated strong verbal and written communication skills, be an independent thinker unafraid of risk and demonstrate the potential to actively/proactively contribute to the growth/expansion of lab capabilities beyond the current state.
QUALIFICATION REQUIREMENTS: A Ph.D. in Biomedical Engineering, or a related field, with strong experience across multiple areas of the following: tissue culture, microfabrication, 3D bioprinting, stem cell biology, molecular biology, retinal biology, NGS bioinformatics/transcriptomics, and computational modeling/machine learning.
APPLICATION PROCEDURE: Apply online at https://uva.wd1.myworkdayjobs.com/UVAJobs and search for R0085249. Attach a cover letter, CV/resume, and contact information for three references (name, email address, telephone number, and address).
Please note that multiple documents can be uploaded in the box.
APPLICATION DEADLINE: Review of applications will begin on July 27, 2026, but the position will remain open until filled. The University will perform background checks on all new hires prior to employment.
Estimated Salary range is $62,000 - $68,000, commensurate with experience.
This is a one-year appointment, with possible renewal at one-year increments, contingent upon available funding and satisfactory performance.
For questions about this position, contact Tom Barker, Professor, at thb4a@virginia.edu .
For questions about the application process, please contact Rich Haverstrom, Academic Recruiter, at rkh6j@virginia.edu .
For more information on the benefits available to postdoctoral associates at UVA, visit postdoc.virginia.edu and hr.virginia.edu/benefits.
The University of Virginia is an equal opportunity employer. All interested persons are encouraged to apply, including veterans and individuals with disabilities. Learn more about UVA's commitment to non-discrimination and equal opportunity employment .

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About University of Virginia

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The University of Virginia is distinctive among institutions of higher education. Founded by Thomas Jefferson in 1819, the University sustains the ideal of developing, through education, leaders who are well-prepared to shape the future of the nation.

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Year founded

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