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Tissue Engineering Jobs (NOW HIRING)

The Ozbolat Laboratoryin Penn State's College of Engineering has multiple openings for Postdoctoral Scholars in the field of bioprinting, tissue engineering, and regenerative medicine. The successful ...

Postdoctoral Fellow

Baltimore, MD Ā· On-site

$48K - $66K/yr

Stem cells, organoids, tissue engineering, and/or 3D bioprinting * Biomaterials for regenerative medicine and mechanobiology * CRISPR genome editing, CRISPRa/i * Animal work and rodent surgeries

Sustaining Engineer

San Antonio, TX Ā· On-site

$82K - $101K/yr

Qualifications: * 1-3 years of design engineering experience preferably in the tissue engineering field * Bachelor's or master's degree in a biomaterials or related biomedical field such as materials ...

Sustaining Engineer

San Antonio, TX

$82K - $101K/yr

Qualifications: * 1-3 years of design engineering experience preferably in the tissue engineering field * Bachelor's or master's degree in a biomaterials or related biomedical field such as materials ...

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Tissue Engineering information

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How much do tissue engineering jobs pay per hour?

As of Jun 9, 2026, the average hourly pay for tissue engineering in the United States is $21.01, according to ZipRecruiter salary data. Most workers in this role earn between $17.07 and $21.39 per hour, depending on experience, location, and employer.

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

To thrive as a Tissue Engineer, you need a solid background in biology, biomaterials, and biomedical engineering, typically supported by a relevant degree (such as biomedical engineering or a related field) and laboratory experience. Proficiency in cell culture techniques, bioreactor systems, and analytical tools like microscopy and spectroscopy is essential, and certifications in laboratory safety or Good Laboratory Practice (GLP) can be beneficial. Strong problem-solving abilities, teamwork, and attention to detail set candidates apart in this multidisciplinary field. These skills ensure the successful development of engineered tissues and effective collaboration in advancing regenerative medicine solutions.

What is the difference between Tissue Engineering vs Biomedical Engineer?

AspectTissue EngineeringBiomedical Engineer
Required CredentialsBachelor's or Master's in Bioengineering, Biomedical Engineering, or related fields; often includes specialized tissue engineering courseworkBachelor's or Master's in Biomedical Engineering, Bioengineering, or related fields; broader focus on medical device design and systems
Work EnvironmentResearch labs, tissue manufacturing facilities, biotech companiesHospitals, medical device companies, research institutions
Industry UsageDeveloping artificial tissues, regenerative medicine, organ scaffoldsDesigning medical devices, prosthetics, imaging systems, and healthcare technology

While both roles require a background in bioengineering, Tissue Engineering focuses specifically on creating biological tissues and regenerative solutions, often within research and biotech settings. Biomedical Engineers have a broader scope, working on medical devices, systems, and technology across healthcare environments. Understanding these differences helps professionals choose the right career path or specialization.

What engineering jobs pay $500,000?

In the field of tissue engineering, senior roles such as director or chief scientific officer can reach or exceed $500,000 annually, especially in large biotech or pharmaceutical companies. These positions typically require extensive experience, advanced degrees, and leadership skills, often involving oversight of research teams and strategic planning.

What are some common challenges tissue engineers face when transitioning from academic research to industry roles?

Tissue engineers moving from academia to industry often encounter challenges such as adapting to faster project timelines, working within multidisciplinary teams, and aligning research goals with commercial objectives. In industry, there is a strong emphasis on regulatory compliance, scalability, and product development—areas that may receive less focus in academic settings. Successful candidates typically benefit from strong communication skills, flexibility, and a willingness to learn about manufacturing standards and quality assurance processes.

What is tissue engineering?

Tissue engineering is a multidisciplinary field that combines principles of biology, engineering, and materials science to develop artificial organs, tissues, or biological substitutes that can restore, maintain, or improve tissue function. The goal is to create functional tissues in the lab that can be used to repair or replace damaged or diseased tissues in the body. This often involves using a combination of cells, scaffolds, and biologically active molecules to construct living tissues. Tissue engineering has applications in regenerative medicine, transplantation, and drug testing. The field is rapidly evolving, with ongoing research aimed at creating more complex and functional tissues.

What Are Jobs in Tissue Engineering?

Tissue engineering is a scientific discipline of regenerative medicine in which experts combine structural frameworks known as scaffolds with cells and biological agents to create functional replacement tissues. Jobs in this field include lab technician, research technician, and research bioengineer. As a technician or assistant, your duties involve managing the lab inventory, assisting with quality control and regulatory compliance, maintaining lab equipment, and working hands-on with laboratory test animals like rodents and pigs. As a bioengineer, you develop, lead, and oversee biomedical procedures. Additionally, your responsibilities involve collaborating with peers and writing reports, publications, and patent applications.

What cities are hiring for Tissue Engineering jobs? Cities with the most Tissue Engineering job openings:
What are the most commonly searched types of Tissue Engineering jobs? The most popular types of Tissue Engineering jobs are:
What states have the most Tissue Engineering jobs? States with the most job openings for Tissue Engineering jobs include:
Infographic showing various Tissue Engineering job openings in the United States as of May 2026, with employment types broken down into 6% Internship, 76% Full Time, 6% Part Time, and 12% Contract. Highlights an 82% In-person, and 18% Remote job distribution, with an average salary of $43,694 per year, or $21 per hour.
Principal Mechanical Engineer - Advanced Automation & Systems Integration

Principal Mechanical Engineer - Advanced Automation & Systems Integration

Vivodyne

San Francisco, CA

Other

Posted 5 days ago


Job description

Role

As a Principal Mechanical Engineer at Vivodyne, you will be part of a multi-disciplinary team pushing the boundaries of automated, large-scale "organ-on-a-chip" robotics and related manufacturing systems. Your focus will be on developing and optimizing hardware and software that orchestrates robotic arms, embedded controllers, and microfluidic systems to enable high-throughput, high-precision biological workflows.

This role requires expertise across hardware and software, but primarily hardware.Ā  From high-level motion control and machine vision to robotics programming and embedded firmware. You'll work extensively with existing Python (less so with, C#, and C++) codebases, ensuring seamless system integration and performance.

You are a mechanical design expert.Ā  Things like kinematic docking, 440 vs 316, FEA, and error budgets are very familiar to you.Ā  Your friends include McMaster-Carr, Misumi, and Grainger.Ā 

Collaboration is key-you'll engage with mechanical engineers, biologists, immunologists, AI scientists, and process engineers to design and refine automation workflows that drive breakthroughs. We're looking for a problem solver comfortable working across multiple domains, thriving in a fast-paced, high-innovation environment that values continuous learning and technical excellence.

This is a full-time, onsite role in San Francisco, where you'll be designing, building, and testing some of the most advanced automation and high-throughput biology systems in the world.

Responsibilities
  • Architect, design, and implement advanced automation systems, ranging from automated microfluidic manufacturing to high-precision mammalian cell culture platforms-all of which are mission-critical and highly visible both internally and externally.
  • Develop hardware and software systems that acquire and process data reliably, ensuring smooth handoffs to production through rigorous documentation, data acquisition, and analysis.
  • Embrace the dynamic nature of a rapidly growing startup, working across multiple projects and disciplines.
  • Collaborate cross-functionally with Product leads, tissue engineers, microfluidics specialists, and AI researchers etc. to gather requirements, set technical objectives, and integrate new features into our robotics platforms.
  • Design and implement resilience mechanisms to ensure system robustness, enabling fault detection, fault recovery, and minimal downtime, while maintaining data integrity.
  • Proactively identify optimization opportunities, selecting priorities through engineering analysis and data-driven decision-making.
  • Communicate progress and findings to internal stakeholders-including mechanical engineers, data scientists, and senior leadership-through data-laden presentations and technical reports.
Requirements and ExpectationsTechnical Expertise & Knowledge
  • Bachelor's degree (M.S. or Ph.D. preferred) in Mechanical Engineering, Chemical Engineering, or a related field with a focus on microfluidics, tissue engineering, or lab automation at least six years of directly relevant industry experience.
  • Broad experience in hardware and, preferable, software design for automation, spanning off-the-shelf solutions and custom-built systems-you have developed complex automation workflows for production-level environments.
  • Proficiency in key hardware and software tools, including SolidWorks (expert-level, CAM experience is a plus), and at some exposure to Python/Matlab/C++/C#/Javascript/etc.
  • Hands-on experience with commonly used automation hardware, such as vision/camera systems (optics and/or optomechanical expertise is a plus), motion control, liquid handling, and pick-and-place robotics.
  • Highly knowledgeable in various Manufacturing Technologies, you know how things are made and which approaches fit a particular application
  • Industry-specific expertise is highly valued:
    • Biotech/lab automation or semiconductor robotics experience is a strong advantage.
    • Knowledge of microfluidics and fluid handling systems.
    • Experience integrating robotics with high-content imaging and confocal microscopy systems, optimizing workflows for advanced imaging pipelines.
    • Biology background or familiarity with cell and tissue engineering concepts is a significant plus, especially in handling biological samples.
  • Bonus points for experience with:
    • Electronics/PCBA design or basic knowledge (reading schematic, troubleshooting interconnects), statistical analysis/data collection to inform design performance rigorously
Problem Solving & Ownership
  • You take an outcome-driven approach, translating project goals and technical challenges into systematic, resilient robotics solutions.
  • Strong ownership mentality, ensuring the timely delivery of high-reliability features and improvements.
  • Growth-oriented, continuously seeking ways to enhance automation processes, optimize robotic operations, and drive innovation.
Collaboration & Communication
  • A team player, capable of working with engineers, scientists, and external stakeholders to define requirements, refine designs, and communicate project progress effectively.
  • Clear communicator, able to explain complex robotics concepts to cross-functional teams, from software engineers to biologists.
  • Interdisciplinary mindset, integrating feedback from various fields to develop thoughtful, iterative design improvements.
Innovation & Leadership Mindset
  • Passionate about staying at the cutting edge of robotics, bringing fresh ideas from emerging technologies, best practices, and research to the team.
  • Comfortable taking initiative in uncharted territories, whether it's developing new motion-planning algorithms or integrating novel sensors and hardware.
Why Vivodyne?
  • High-Impact Mission - Play a pivotal role in transforming drug discovery and human therapeutics through advanced robotics and automation.
  • Multi-Disciplinary Exposure - Work alongside leading experts in robotics, AI, biology, and microfluidics, expanding your expertise in a truly collaborative setting.
  • Growth Opportunities - A fast-growing startup environment with significant autonomy, ownership, and influence over best practices in the intersection of biotech and robotics.
  • Innovative Culture - Join a team that prioritizes continuous learning, rigorous engineering and scientific standards, and bold problem-solving.

If you're excited about revolutionizing automation in organoid engineering and biotech-while pushing the boundaries of robotics, AI, and advanced systems-let's connect! Please submit your resume and a brief statement of interest. We look forward to exploring the opportunity together.

Vivodyne, Inc. is an equal opportunity employer. Vivodyne complies with all laws respecting equal employment opportunity and does not discriminate against applicants with regard to any protected characteristic as defined by federal, state, and local law.