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Biomedical Polymers Jobs (NOW HIRING)

Works with Secant Group scientists to develop and assess biomaterials and polymers for use as gene ... Biomedical Engineering, or equivalent. * 1-3 years related practical experience with cell culture ...

Works with Secant Group scientists to develop and assess biomaterials and polymers for use as gene ... Biomedical Engineering, or equivalent. * 1-3 years related practical experience with cell culture ...

Works with Secant Group scientists to develop and assess biomaterials and polymers for use as gene ... Biomedical Engineering, or equivalent. * 1-3 years related practical experience with cell culture ...

Works with Secant Group scientists to develop and assess biomaterials and polymers for use as gene ... Biomedical Engineering, or equivalent. * 1-3 years related practical experience with cell culture ...

Post Doctoral Fellow

Columbia, SC · On-site

$55K - $56K/yr

... polymers for antimicrobial applications. The successful candidate will be responsible for the ... biomedical science. Required Education and Experience Preferred Qualifications Ph.D. in polymer ...

Bachelor's degree or equivalent in Engineering, Chemistry, Materials Science, Biomedical, or ... absorbent polymers and nonwoven materials (i.e. spunbond, meltblown, carded), selecting and ...

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Biomedical Polymers information

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$41K

$94.8K

$140K

How much do biomedical polymers jobs pay per year?

As of Jun 8, 2026, the average yearly pay for biomedical polymers in the United States is $94,807.00, according to ZipRecruiter salary data. Most workers in this role earn between $74,500.00 and $116,000.00 per year, depending on experience, location, and employer.

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

To thrive as a Biomedical Polymers Specialist, you need a solid background in polymer science, materials engineering, and biomedical applications, often supported by an advanced degree in materials science, biomedical engineering, or a related field. Familiarity with analytical tools like FTIR, SEM, and mechanical testing, as well as experience with regulatory standards such as ISO 10993, are typically required. Strong problem-solving skills, attention to detail, and effective teamwork are important soft skills for this position. These competencies ensure the safe and innovative development of polymer-based medical devices that meet rigorous industry and healthcare standards.

What are biomedical polymers?

Biomedical polymers are specially designed synthetic or natural materials used in medical applications, such as implants, drug delivery systems, and tissue engineering. These polymers are biocompatible, meaning they can safely interact with the human body without causing adverse reactions. Common examples include polylactic acid (PLA), polyethylene glycol (PEG), and silicone. They play a crucial role in developing medical devices due to their flexibility, durability, and ability to be engineered for specific functions.

What are some common challenges faced by professionals working with biomedical polymers in product development?

Professionals in biomedical polymers often encounter challenges in balancing material biocompatibility with functional performance. Ensuring that polymers meet strict regulatory standards while maintaining desired mechanical properties can be complex, especially as each application (e.g., implants or drug delivery devices) may require unique formulations and testing. Additionally, teams must collaborate closely with engineers, clinicians, and regulatory experts to address issues such as sterilization, degradation, and patient safety throughout the development process. Staying updated with evolving industry standards and technological advancements is also essential for success.

What is the difference between Biomedical Polymers vs Biomedical Engineers?

AspectBiomedical PolymersBiomedical Engineers
Required CredentialsDegree in Materials Science, Chemistry, or Biomedical EngineeringDegree in Biomedical, Mechanical, or Electrical Engineering
Work EnvironmentResearch labs, manufacturing facilities, R&D departmentsHospitals, research institutions, medical device companies
Industry UsageDeveloping and testing biocompatible polymers for medical applicationsDesigning and improving medical devices and systems

Biomedical Polymers focus on creating and testing biocompatible polymers used in medical devices, while Biomedical Engineers design and develop medical devices and systems. Both roles often collaborate but have distinct focuses within the healthcare industry.

Infographic showing various Biomedical Polymers job openings in the United States as of May 2026, with employment types broken down into 1% As Needed, 83% Full Time, 14% Part Time, and 2% Contract. Highlights an 86% Physical, 2% Hybrid, and 12% Remote job distribution, with an average salary of $94,807 per year, or $45.6 per hour.
Associate Scientist

Associate Scientist

The Secant Group, LLC

Telford, PA

Full-time

Posted 11 days ago


Job description

What we are looking for:

This Associate Scientist role is responsible for the characterization of cell-based interactions with Secant Group poly(glycerol ester) technologies under the supervision of senior level scientists as part of Secant’s Research team in Telford, PA. The scientist should have knowledge of commonly used instrumentation, concepts, analytical methods and biologic handling procedures associated with cell biology and biomedical engineering. Will also have daily exposure to a biological lab environment and will have occasional exposure to chemical labs, manufacturing environments, and environmentally controlled rooms.

What you will do:

  • Works with Secant Group scientists to develop and assess biomaterials and polymers for use as gene delivery reagents, cell-based therapies, and as components in cell processing and viral manufacturing applications.
  • Improves scientific understanding of Secant Group materials impact on the maintenance, expansion, differentiation, activation, and transfection of various cell types and helps develop new assessment methods for characterizing cell response.
  • Generates and analyzes data relevant to the characterization of various cell types using in vitro cellular and biochemical assays such as ELISA, cytokine detection kits, immunofluorescence, flow cytometry, live cell imaging, fixed cell imaging, and luminescence-based assays.
  • Characterize changes in Secant Group materials performance as a function of storage conditions.
  • Perform experiments to better understand how Secant Group materials interact with biological surfaces.
  • Generates data used for external-facing technical presentations, communications with commercial partners, and as part of SOWs.
  • Usage and maintenance of standard biological lab equipment such as biological safety cabinets, cell counters, fluorescence microscopes, plate readers, centrifuges, and flow cytometers.
  • Clearly communicates technical information and project status to supervisor and colleagues through written and verbal manner.
  • Presents research findings at weekly group meetings, through white papers, and at conferences.
  • Accurately and thoroughly documents procedures and results using laboratory notebooks, protocols & reports, records and databases.
  • Collaborates with colleagues on laboratory techniques, sample preparation, experimental design, instrumentation, data analysis and documentation.
  • Helps manage laboratory inventory.
  • Responsible for daily and weekly upkeep of biological lab equipment and cell inventories.
  • Provides support towards the development of Secant Group Intellectual Property through supporting experimentation, identification of potential new technologies, and generation of invention disclosures in accordance with Secant Groups IP policies.
  • Develops work instructions, S.O.P.’s and other testing methods for cell-material analysis.
  • Follows all applicable Secant Group test methods, work instructions, S.O.P.’s and guidelines.

Who you are:

  • Bachelor or MS Degree in the fields of Biomaterials, Biochemistry, Cell Biology, Molecular Biology, Biomedical Engineering, or equivalent.
  • 1-3 years related practical experience with cell culture and performing cell-based assays.
  • Experience with small scale cell expansion technologies such as culture flasks, multi-well plates, and bioreactors.
  • Proficient with aseptic cell culture techniques for both adherent and suspension cells.
  • Practical experience with cell culture related tools such as fluorescence microscopy, flow cytometry, plate reader assays including ELISAs, and cell counters.
  • Has basic experience with processes related to cell cryopreservation, selection, activation, expansion, and/or transfection of cells.
  • Practical experience with nanoparticle characterization equipment such as DLS and zeta potential.
  • Prior work experience in a regulated environment (ISO 9001, 13485 and QSR Standards) a plus.
  • Must be proficient in Microsoft Word and Excel. Experience with image analysis software and flow cytometry analysis software a plus.
  • Detail oriented, organized, hands-on with drive for solving problems in a timely manner.
  • Accurately analyze data generated by various analytical and physical testing instrumentation.
  • Solve practical problems and deal with a variety of concrete variables in situations where only limited standardization exists.

What we offer:

  • Annual Bonuses
  • Generous PTO
  • Health Insurance: Medical with Rx plan / Dental / Vision
  • 401k (retirement savings) with excellent company match
  • Company Paid Short-Term and Long-Term Disability