1

Microfluidic Postdoctoral Jobs (NOW HIRING)

Microfluidic device experience * Flow Cytometry/FACS proficiency * Supervisory or mentoring experience Compensation The Chicago, IL base pay for a new hire in this role is $84,150. This position may ...

next page

Showing results 1-20

Microfluidic Postdoctoral information

See salary details

$25K

$59K

$83.5K

How much do microfluidic postdoctoral jobs pay per year?

As of Jun 11, 2026, the average yearly pay for microfluidic postdoctoral in the United States is $59,022.00, according to ZipRecruiter salary data. Most workers in this role earn between $49,000.00 and $66,500.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive in the Microfluidic Postdoctoral position, and why are they important?

To thrive as a Microfluidic Postdoctoral, you need a solid background in microfluidics, experimental design, and data analysis, typically supported by a PhD in bioengineering, chemical engineering, or a related field. Familiarity with laboratory instrumentation such as microfabrication tools, flow control equipment, and analytical software like MATLAB or LabVIEW is often required. Strong problem-solving abilities, effective communication, and teamwork skills are highly valued in this position. These competencies are critical for driving innovative research, efficiently executing experiments, and collaborating within interdisciplinary research teams.

What is a Microfluidic Postdoctoral job?

A Microfluidic Postdoctoral job is a research-focused position for Ph.D. graduates specializing in microfluidics, typically in academic or industrial laboratories. Researchers in this role design, fabricate, and analyze microfluidic systems for applications in biology, chemistry, and engineering. Responsibilities may include developing lab-on-a-chip devices, optimizing fluid flow at the microscale, and integrating sensors or biological materials. These positions often require expertise in soft lithography, numerical simulation, and data analysis. The goal is to advance microfluidic technology for biomedical diagnostics, drug delivery, or material science innovations.

What are the typical daily tasks and collaborative responsibilities of a Microfluidic Postdoctoral researcher?

As a Microfluidic Postdoctoral researcher, your daily tasks often include designing and conducting experiments using microfluidic devices, analyzing data, documenting results, and troubleshooting technical challenges. You will regularly collaborate with faculty investigators, graduate students, and other lab members to integrate your work into larger research projects. Participation in group meetings, presenting findings, and contributing to manuscript writing is also common. This collaborative environment fosters knowledge sharing, accelerates innovation, and helps build a strong scientific network for future career advancement.

More about Microfluidic Postdoctoral jobs
What cities are hiring for Microfluidic Postdoctoral jobs? Cities with the most Microfluidic Postdoctoral job openings:
Infographic showing various Microfluidic Postdoctoral job openings in the United States as of June 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $59,022 per year, or $28.4 per hour.
Post Doctoral.Post Doctoral.Associate

Post Doctoral.Post Doctoral.Associate

University of Pittsburgh

Pittsburgh, PA

$47K - $64K/yr

Other

Posted 13 days ago


Job description

We are seeking a highly motivated postdoctoral fellow with strong training in molecular and cellular biology to lead mechanistic studies focused on host responses to biomaterials used in female pelvic reconstructive surgery.

Our laboratory develops and evaluates advanced graft materials - including polypropylene meshes, 3D elastomeric membranes, and regenerative extracellular matrix scaffold - across translational models ranging from rodents to nonhuman primates. Experimental platforms include engineered 3D biochambers and microfluidic systems that recapitulate physiologic tissue environments. The lab also has access to well-annotated human tissue samples and biorepositories, enabling direct comparison between preclinical models and human biology.

The successful Candidate will design and execute hypothesis-driven studies to define how matrix properties regulate cellular behavior, immune activation, and tissue remodeling following implantation. Areas of focus include signaling pathways, transcriptional regulation, and mechanotransduction in stromal and immune cell populations.

Approaches include:

  • Primary cell culture and co-culture systems (fibroblasts, smooth muscle cells, immune populations)
  • Immunohistochemistry and high-resolution imaging with spatial analysis
  • Flow cytometry and cell sorting for immune and stromal phenotyping
  • Functional assays (proliferation, apoptosis, migration, matrix production)
  • Multi-omic profiling (scRNA-seq, ATAC-seq, spatial transcriptomics) with integrative analysis

The fellow will be expected to contribute to both experimental design and quantitative analysis of high-dimensional datasets (experience in R or Python preferred). Ongoing collaborations with engineering and computational groups provide opportunities to incorporate microfabrication, modeling, and AI-based approaches for data integration and predictive analysis.

This position offers a rigorous research environment with strong emphasis on mechanistic biology, access to large-animal models, and direct linkage to human tissue studies. The Candidate will be supported in developing an independent research program, including first-author publications and preparation of career development funding applications. Early PhD is required.