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Microphysiological Jobs in Abingdon, MD (NOW HIRING)

Postdoctoral Fellow

Baltimore, MD · On-site

$48K - $66K/yr

... Microphysiological Systems (MPS). Application Instructions * How to apply (Interfolio): Submit (i) latest CV, (ii) cover letter with a description of research background and interests, and (iii) ...

In-Vitro Toxicologist

Aberdeen, MD · On-site

$76K - $86K/yr

Experience with several advanced laboratory cellular biology and tissue culture techniques, to include but not limited to, receptor-based screens, microphysiological systems, stem cell ...

Microphysiological information

What is a microphysiological system?

Microphysiological systems, also known as organ-on-a-chip technologies, are advanced laboratory models that replicate the functions of human organs on a miniature scale. These systems use living cells arranged on micro-engineered platforms to mimic the structure and function of tissues and organs. They are used in biomedical research to study disease mechanisms, drug responses, and toxicity in a controlled environment, potentially reducing the need for animal testing. Microphysiological systems provide more accurate and human-relevant data compared to traditional cell cultures or animal models.

What are common challenges faced by microphysiological system researchers, and how can new team members prepare for them?

Microphysiological system researchers often encounter challenges such as integrating complex biological and engineering concepts, troubleshooting device malfunctions, and ensuring reproducibility of experimental results. New team members can prepare by staying updated on the latest advances in organ-on-chip technologies, refining their problem-solving skills, and actively communicating with multidisciplinary colleagues. Participating in regular team meetings and collaborating closely with engineers, biologists, and data analysts will help address issues as they arise and foster a supportive research environment.

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

To thrive as a Microphysiological Systems Scientist, you need a strong background in cell biology, tissue engineering, and biomaterials, typically supported by an advanced degree in biological sciences or bioengineering. Familiarity with microfluidic device fabrication, imaging systems, and analytical software like MATLAB or ImageJ is often required. Creative problem-solving, attention to detail, and strong collaboration skills are crucial in this interdisciplinary field. These skills enable the design and analysis of complex biological models that advance drug discovery and biomedical research.

What is the difference between Microphysiological vs Cell Culture Technician?

AspectMicrophysiologicalCell Culture Technician
Required CredentialsTypically requires a degree in biology, biomedical engineering, or related fieldsOften requires a degree or certification in biology or laboratory techniques
Work EnvironmentResearch labs, biotech companies, pharmaceutical testing facilitiesLaboratories, research institutions, biotech companies
Industry UsageUsed in drug testing, disease modeling, tissue engineeringUsed in cell growth, maintenance, and preparation for experiments

Microphysiological roles focus on creating complex tissue models that mimic human organs, often requiring advanced technical skills. Cell Culture Technicians primarily handle cell growth and maintenance. While both roles involve laboratory work and biological expertise, Microphysiological positions typically demand more specialized knowledge in tissue engineering and organ-on-chip systems.

What job categories do people searching Microphysiological jobs in Abingdon, MD look for?

The top searched job categories for Microphysiological jobs in Abingdon, MD are:

What cities near Abingdon, MD are hiring for Microphysiological jobs?

Cities near Abingdon, MD with the most Microphysiological job openings:

Postdoctoral Fellowship

Baltimore, MD • On-site


Johns Hopkins University
Colleges, Universities, and Professional Schools • 10K+ employees

8.0

Company rating: 8.0 out of 10

Based on 71 frontline employees who took The Breakroom Quiz

189th of 627 rated colleges and universities

People enjoy working here

Good employer

Recommended by students


$48K - $66K/yr

Full-time

Re-posted yesterday


Job description

Description
The Gracias Lab / JHU is seeking a creative and highly motivated Post-Doctoral Fellow. You will drive impactful research at the intersection of micro and nanotechnology related to biomedical engineering. This role focuses on developing cutting-edge platforms and integrated devices for biosensing, microphysiological systems, microrobotics and biomedical engineering.
Key Responsibilities
  • Design and fabricate innovative micro- and nano-scale biomedical devices.
  • Lead independent research projects from concept to experimental validation.
  • Publish findings in high-impact, peer-reviewed scientific journals.
  • Collaborate with multidisciplinary teams of engineers, biologists, and clinicians.
  • Mentor graduate and undergraduate students in the laboratory.

Qualifications
Required Qualifications
  • Ph.D. in Applied Sciences or Engineering related to biomedical engineering
  • Strong background in micro/nanofabrication, cell culture and biomedical engineering.
  • Hands-on cleanroom experience is preferred (e.g., photolithography, soft lithography, deposition).
  • Excellent record of productivity based on prior first-author and co-authored publications in good journals
  • Creative problem-solving skills and ability to work independently.

Application Instructions
What We Offer
  • Access to world-class research environment across the Johns Hopkins campus (Engineering, Arts, and Sciences and Medicine)
  • Competitive salary and comprehensive benefits package.
  • Dedicated mentorship to support your transition to an independent career.
  • A vibrant, collaborative, and inclusive research environment.

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About Johns Hopkins University

Sourced by ZipRecruiter

Gilman believed that teaching and research go hand in hand—that success in one depends on success in the other—and that a modern university must do both well. He also believed that sharing our knowledge and discoveries would help make the world a better place. In 145 years, we haven’t strayed from that vision. This is still a destination for excellent, ambitious scholars and a world leader in teaching and research. Distinguished professors mentor students in the arts and music, humanities, social and natural sciences, engineering, international studies, education, business, and the health professions. Those same faculty members, along with their colleagues at the university’s Applied Physics Laboratory, have made us the nation’s leader in federal research and development funding every year since 1979. That’s a fitting distinction for America’s first research university, a place that has revolutionized higher education in the U.S. and continues to bring knowledge and discoveries to the world.

Industry

Colleges, universities, and professional schools

Company size

10,000+ Employees

Headquarters location

Baltimore, MD, US

Year founded

1876


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