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Tissue Engineering Jobs in Texas (NOW HIRING)

We are seeking a Research Scientist II with strong molecular biology, cellular neuroscience, tissue engineering, or related life sciences expertise and an AI-first mindset to support translational ...

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Tissue Engineering information

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$11

$19

$34

How much do tissue engineering jobs pay per hour?

As of Sep 5, 2026, the average hourly pay for tissue engineering in Texas is $19.57, according to ZipRecruiter salary data. Most workers in this role earn between $15.91 and $19.95 per hour, depending on experience, location, and employer.

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 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 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 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.

How do you become a tissue engineer?

To become a tissue engineer, you typically need a bachelor's degree in biomedical engineering, bioengineering, or a related field, followed by a master's or Ph.D. for advanced roles. Gaining experience with laboratory techniques, tissue culture, and biomaterials is important, and certifications in relevant skills can enhance job prospects.

What does a tissue engineer do?

A tissue engineer designs and develops biological tissues and organs by combining cells, biomaterials, and engineering principles. They often work in laboratories, using techniques like cell culture and 3D bioprinting, and may require knowledge of biology, materials science, and sterile procedures.

What skills do you need to be a tissue engineer?

Tissue engineers need strong knowledge of biology, materials science, and engineering principles. Skills in laboratory techniques, cell culture, and familiarity with biomedical devices are essential. Additionally, problem-solving abilities, attention to detail, and proficiency with software like CAD or data analysis tools are important for success in this field.

What are the most commonly searched types of Tissue Engineering jobs in Texas?

The most popular types of Tissue Engineering jobs in Texas are:

What cities in Texas are hiring for Tissue Engineering jobs?

Cities in Texas with the most Tissue Engineering job openings:

Infographic showing various Tissue Engineering job openings in Texas as of August 2026, with employment types broken down into 89% Full Time, 7% Part Time, 3% Contract, and 1% Nights. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $40,707 per year, or $19.6 per hour.

Full-time

Medical, Retirement

Re-posted 5 days ago


Key responsibilities

  • Support preclinical and translational neuroscience research programs focused on neuromodulation mechanisms, therapeutic target discovery, and biomarker identification.

  • Design, execute, and optimize molecular and cellular biology experiments.

  • Contribute to discovery and validation of molecular, physiological, and digital biomarkers associated with therapeutic response.


Abbott rating

7.8

Company rating: 7.8 out of 10

Based on 138 frontline employees who took The Breakroom Quiz

170th of 545 rated manufacturers


Job description

Abbott is a global healthcare leader that helps people live more fully at all stages of life. Our portfolio of life-changing technologies spans the spectrum of healthcare, with leading businesses and products in diagnostics, medical devices, nutritionals and branded generic medicines. Our 115,000 colleagues serve people in more than 160 countries.JOB DESCRIPTION:

Job Title

Research Scientist II, Neuroscience (Molecular Biology, AI & Adaptive Neurotechnology)

Working at Abbott

At Abbott, you can do work that matters, grow, and learn, care for yourself and your family, be your true self, and live a full life. You'll also have access to:

  • Career development with an international company where you can grow the career you dream of.
  • Employees can qualify forfree medical coverage in ourHealth Investment Plan (HIP) PPOmedical plan in the next calendar year.
  • An excellent retirement savings plan with a high employer contribution.
  • Tuition reimbursement, the Freedom 2 Save student debt program, and FreeU education benefit - an affordable and convenient path to getting a bachelor's degree.
  • A company recognized as a great place to work in dozens of countries worldwide and named one of the most admired companies in the world by Fortune.
  • A company that is recognized as one of the best big companies to work for as well as the best place to work for diversity, working mothers, female executives, and scientists.

The Opportunity

This position works out of our Plano, TX location in the Neuromodulation division. Abbott Neuromodulation is advancing next-generation therapies for chronic pain, movement disorders, and other neurological conditions through innovative bioelectronic medicine, digital health technologies, and intelligent neuromodulation systems. We are seeking a Research Scientist II with strong molecular biology, cellular neuroscience, tissue engineering, or related life sciences expertise and an AI-first mindset to support translational research at the intersection of biology, neural systems, and implantable medical devices.

This role will contribute to the discovery and development of biological, digital, and multimodal biomarkers that may inform future adaptive (closed-loop) neuromodulation therapies. The successful candidate will help generate high-quality biological datasets, investigate mechanisms of neural modulation, and support the integration of molecular, electrophysiological, imaging, and clinical data to enable more personalized, data-driven treatment approaches.

The individual will collaborate with internal R&D teams and external academic, clinical, and industry partners globally to accelerate scientific innovation and translational research initiatives.

What You'll Work On

Translational Neuroscience & Biological Research

  • Support preclinical and translational neuroscience research programs focused on neuromodulation mechanisms, therapeutic target discovery, and biomarker identification.
  • Design, execute, and optimize molecular and cellular biology experiments.
  • Conduct cellular, tissue-level, and in-vitro studies to investigate biological responses to neural stimulation.
  • Analyze gene, protein, and cellular pathway changes associated with neural activity, disease states, and therapeutic outcomes.
  • Support development of novel in-vitro screening platforms and biologically relevant research models.
  • Assist in translating biological discoveries into clinically relevant neuromodulation applications.

Biomarker Discovery & Adaptive Neurotechnology

  • Contribute to discovery and validation of molecular, physiological, and digital biomarkers associated with therapeutic response.
  • Support development of biological inputs that may inform future adaptive (closed-loop) neuromodulation systems.
  • Assist in correlating molecular findings with electrophysiological, imaging, device-generated, and clinical datasets.
  • Participate in research efforts exploring mechanisms underlying personalized neuromodulation therapies.

AI, Data Science & Multimodal Research

  • Apply an AI-first approach to experimental design, data generation, annotation, structuring, and interpretation.
  • Contribute to development of AI-ready multimodal datasets integrating biological, electrophysiological, imaging, and clinical data.
  • Partner with computational scientists, data scientists, and engineers to support machine learning and advanced analytics initiatives.
  • Maintain high-quality, well-characterized datasets suitable for downstream AI and predictive modeling applications.
  • Support generation of data standards, metadata frameworks, and research workflows that enhance reproducibility and future analytics capabilities.

Collaboration & Scientific Communication

  • Collaborate with cross-functional teams across R&D, Clinical, Regulatory, Data Science, and Engineering organizations.
  • Engage with academic institutions, clinical investigators, and external research collaborators globally.
  • Prepare technical reports, scientific presentations, publications, and supporting documentation.
  • Present findings to internal stakeholders and external scientific audiences as appropriate.
  • Stay current on advances in neuroscience, AI-enabled biology, bioelectronic medicine, precision medicine, and adaptive neurotechnology.

Required Qualifications

  • Master's degree (MSc) in Neuroscience, Molecular Biology, Biomedical Engineering, Cellular Biology, Bioengineering, or related field.
  • 1-3 years of relevant laboratory or translational research experience following degree completion.
  • Hands-on experience in several of the following areas:
    • RNA/DNA extraction, processing, and analysis
    • Gene expression analysis
    • Protein characterization and biochemical assays
    • Mammalian cell culture
    • Cellular neuroscience techniques
    • In-vitro assay development
    • Electrophysiology or neural recording methods
  • Strong experimental design, problem-solving, and analytical skills.
  • Interest in AI-enabled, data-driven scientific research approaches.
  • Ability to work effectively in multidisciplinary and matrixed environments.
  • Strong written and verbal communication skills.

Preferred Qualifications

  • PhD in Neuroscience, Molecular Biology, Biomedical Engineering, Bioengineering, Cellular Biology, or related discipline.
  • Research experience in neuroscience, neurobiology, neuroengineering, or translational medicine.
  • Familiarity with one or more of the following:
    • Transcriptomics
    • Proteomics
    • Single-cell analysis
    • Immunohistochemistry (IHC)
    • Advanced microscopy and imaging techniques
    • Preclinical CNS models
    • Microfluidics
    • Biomaterials
    • Bio-MEMS technologies
    • Tissue engineering
  • Exposure to neuromodulation, neurostimulation, bioelectronic medicine, neural interfaces, or implantable medical devices.
  • Experience working with multimodal datasets that combine biological, neural, imaging, and/or clinical information.
  • Working knowledge of Python, R, MATLAB, or equivalent scientific computing environments.
  • Familiarity with machine learning workflows, data annotation methodologies, or AI-enabled research tools.
  • Record of scientific publications, conference presentations, or collaborative research activities.
  • Experience working with external academic, clinical, or industry research partners.
  • Demonstrated adaptability, scientific curiosity, and ability to thrive in a rapidly evolving research environment.

Apply Now

Learn more about our health and wellness benefits, which provide the security to help you and your family live full lives: www.abbottbenefits.com

Follow your career aspirations to Abbott for diverse opportunities with a company that can help you build your future and live your best life. Abbott is an Equal Opportunity Employer, committed to employee diversity.

Connect with us at www.abbott.com, on Facebook at www.facebook.com/Abbott, and on Twitter @AbbottNews.

The base pay for this position is

$61,300.00 - $122,700.00

In specific locations, the pay range may vary from the range posted.

JOB FAMILY:Research and DiscoveryDIVISION:NM NeuromodulationLOCATION:United States > Texas > Plano : 6901 Preston RoadADDITIONAL LOCATIONS:WORK SHIFT:StandardTRAVEL:Not specifiedMEDICAL SURVEILLANCE:Not ApplicableSIGNIFICANT WORK ACTIVITIES:Continuous sitting for prolonged periods (more than 2 consecutive hours in an 8 hour day), Continuous standing for prolonged periods (more than 2 consecutive hours in an 8 hour day), Continuous walking for prolonged periods (more than 2 hours at a time in an 8 hour day)Abbott is an Equal Opportunity Employer of Minorities/Women/Individuals with Disabilities/Protected Veterans.EEO is the Law link - English: http://webstorage.abbott.com/common/External/EEO_English.pdfEEO is the Law link - Espanol: http://webstorage.abbott.com/common/External/EEO_Spanish.pdf

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