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Tissue Engineering Jobs in Arizona (NOW HIRING)

We're looking for a Full Stack Tech Lead who can own the technical direction of client and internal products end to end, mentor engineers, and act as the connective tissue between our onshore ...

Laboratory Manager

Tempe, AZ · On-site

$48K/yr

... engineers * Train and assist lab members (students, technicians, and trainees) in standard lab procedures and animal handling * Support molecular biology and wet lab experiments (e.g., tissue ...

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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 14, 2026, the average hourly pay for tissue engineering in Arizona is $19.58, 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.
Infographic showing various Tissue Engineering job openings in Arizona as of September 2026, with employment types broken down into 50% Full Time, and 50% Part Time. Highlights an 50% In-person, and 50% Remote job distribution, with an average salary of $40,718 per year, or $19.6 per hour.

Faculty Position: Computational and Digital Biology / Immunology Investigators

Phoenix, AZ • On-site, Remote

Mayo Clinic
Hospitals • 10K+ employees

Full-time

Retirement

Re-posted 4 days ago


Mayo Clinic rating

7.8

Company rating: 7.8 out of 10

Based on 707 frontline employees who took The Breakroom Quiz


Job description

This position may be located in Rochester, MN, Jacksonville, FL or Phoenix/Scottsdale, AZ.

Position Description

The Mayo Clinic and Mayo Clinic Comprehensive Cancer Center invite applications for open-rank faculty positions in Computational and Digital Biology and Immunology with strong leadership potential and a commitment to translating cutting-edge cancer research into clinical impact. Mayo Clinic and Mayo Clinic Comprehensive Cancer Center (MCCCC) have built a world-class research hub -  including a very strong artificial intelligence (AI) program focused on virtual cell and organ modeling, digital twins, and AI-based discovery, and, a very strong on premises and cloud-based computational sciences program - dedicated to transforming cancer patient care through target discovery, innovative therapeutic strategies and next-generation immunotherapies. MCCCC has a very strong track record of translation of discoveries to human interventions and clinical trials.

We seek outstanding investigators who will provide scientific leadership in the development and application of computational approaches and modeling to understand the complex interaction between tumors, the immune system, tumor spatial ecotypes and microenvironments, and targeted therapeutic interventions. The successful candidates will lead efforts to integrate and interpret multimodal datasets, including single cell and spatial multi-omics, immune repertoire profiling, functional genomics screens, imaging, proteomics, clinical and longitudinal patient data. The overarching goal is to identify and generate actionable insights that accelerate the development of effective cancer diagnostics, monitoring tools and therapies, including immunotherapies. Successful applicants will house their program at one of the three Mayo Clinic Destination Medical Center Sites in Rochester, Minnesota; Jacksonville, Florida; or Phoenix and Scottsdale, AZ, but have the opportunity to work across the Mayo Clinic enterprise.
 

Strategic Role and Leadership Expectations


The Computational Immunology Scientists will:

  • Lead computational and digital biology initiatives, including immunology and single-cell analytics as well as spatial analytic initiatives across basic science, translational research, and clinical programs.
  • Develop and implement computational research workflows (including virtual/digital models) to ensure reproducibility, scalability, and best practices in analysis of cancer cell: immune cell interaction and complex multi-cellular tissue microenvironments.
  • Define scientific strategies related to  immune receptor (TCR/BCR) repertoire sequencing and analysis (bulk and single-cell), including clonotype definition, repertoire diversity, and clonal expansion/dynamics, and integration with single-cell RNA-seq, multi-omics, and machine learning to link clonality with cellular state and patient outcomes.
  • Serve as a senior scientific advisor to translational programs, biotechnology collaborations, and startup partnerships.
  • Sustain an independent, externally funded research program in computational immunology or cancer immunology.
  • Translate computational discoveries into clinically meaningful insights, biomarkers, and therapeutic strategies. Lead the design, development, and dissemination of computational tools and open-source software for immune profiling and single-cell analysis.
  • Oversee analytical pipelines for immune receptor repertoire analysis, including V(D)J annotation, clonotype assignment, repertoire diversity metrics, clonal tracking across time/tissue, and (for BCR) somatic hypermutation and lineage/phylogeny, alongside trajectory inference and multi-omic modeling.
  • Partners with Mayo Clinic and Mayo Clinic Comprehensive Cancer Center investigators and industry collaborators who translate these discoveries to human interventions and clinical trials.
  • Support interpretation of immune profiling data and other digital biology and correlative science data from clinical trials, patient cohorts, and experimental models.
  • Contribute to interdisciplinary grant applications and consortia

The successful candidates will provide scientific leadership in computational immunology, that accelerates discovery and translation into clinically meaningful insights, biomarkers, and therapeutics strategies.
 

Research Environment


Mayo Clinic and Mayo Clinic Comprehensive Cancer Center offers a highly collaborative and integrated academic medical center environment with expanding strengths in computational biology, AI-driven discovery, cell therapy, cancer immunotherapy, regenerative medicine, and translational science. Faculty benefit from:

  • Established CAR-T and immune therapy programs with active clinical translation
  • State-of-the-art genome engineering and cell manufacturing infrastructure
  • Access to institutional core facilities including genomics, single-cell sequencing, proteomics, bioinformatics, and advanced imaging
  • A very strong AI-driven discovery program with exceptional "on prem" and cloud-based computational resources
  • Mayo Clinic Platform which holds the fully digitized longitudinal patient records from 15M Mayo Clinic patients and 54M patients with collaborating healthcare institutions from across the nation and the globe.
  • A strong focus on translating first-in-human trials to bring new treatments to patients
  • Dedicated institutional support for regulatory strategy, clinical trial development, and commercialization pathways
  • A growing biotechnology corridor that attracts partner companies to accelerate translation of discoveries

The successful candidate will be a key driver in integrating advanced genome engineering technologies into existing and emerging cell therapy platforms, enabling novel approaches to immune cell engineering, stem cell modification, in vivo gene editing strategies, and precision genome correction programs.
 

Why Mayo Clinic Comprehensive Cancer Center (MCCCC)? 
With 440 members and >1500 aligned cancer physicians working in six Cancer Research Programs (Cancer Prevention, Survivorship & Control; Cancer Risk Assessment, Early Detection & Interception; Cancer Genomics, Signaling, & Metastasis; Cancer Immunology & Immunotherapeutics; Novel Therapeutics & Therapeutic Modalities; Advanced Clinical Trials and Translational Sciences) and 15 Disease Groups focused on clinical trials, MCCCC is a global leader and represents the pinnacle of cancer care, research and education and training. Every year, across its three enterprise sites (Rochester, Minnesota; Phoenix and Scottsdale, Arizona; and Jacksonville, Florida), MCCCC physicians provide expert cancer diagnosis and treatment to more than 150,000 unique patients from across the nation and the globe. 

The MCCCC Misson: To inspire hope and promote health and healing through integrated research, clinical practice, and education, centered around our primary value: the needs of the patient come first.

The MCCCC Vision: To be a global cancer authority: transforming cancer research and practice to assure that our discoveries, knowledge, and expertise are accessible to all, within and beyond our walls, at anyplace and anytime.

MCCCC Goals:

  1. To cure cancers through translation of innovative transdisciplinary science to new means of prevention, early detection, interception, intervention, and unparalleled care delivery. 
  2. To transform cancer research and practice using category of one data platforms, digital technologies, artificial intelligence (AI), and intelligent automation, creating new models for community and patient engagement, and the conduct of research, clinical trials and patient-centered care delivery in clinical, home, and community settings. 
  3. To use Mayo Clinic Platform to engage patients and communities in our catchment areas and across the nation and the world in cancer research and distributed and decentralized clinical trials.
  4. To educate, train, and mentor the next generation of cancer physicians, scientists, and leaders.

Over the past year, MCCCC has continued to achieve exceptional performance metrics, with high levels of cancer research funding (reporting $61.2M in annual peer-reviewed funding ($41.1M from NCI) and $98.7M in industry and non-peer reviewed funding). The Center currently has over 80 multi-investigator programmatic grants including 6 NCI Specialized Programs of Research Emphasis (SPORES): Myeloma, Ovarian Cancer, Breast Cancer, Liver/Hepatobiliary Cancers, Prostate Cancer, and Sarcoma. In 2025, clinical trial accrual has remained robust, reporting the Center's highest accrual to therapeutic interventional trials: 2,624 (12% of newly registered cases), with 6,588 interventional accruals (30% of newly registered patients) and 10,367 non-interventional accruals. In 2025, MCCCC members published an exceptional number (1776) of peer-reviewed academic works, 24% of which were published in high impact journals.

Why Choose Mayo Clinic?
Mayo Clinic is a premier, integrated academic medical center consistently ranked among the top hospitals in the nation. All campuses are experiencing strategic growth in cancer immunotherapy, drug discovery & development, regenerative medicine, and translational discovery science.

We offer:

  • Competitive startup and sustained institutional support
  • Investment in team science and program-building initiatives
  • Access to a $1B+ annual research enterprise
  • Infrastructure for IND-enabling studies and early-phase clinical trials
  • Exceptional benefits, including retirement and pension programs
  • A culture that values innovation, inclusion, and transdisciplinary collaboration

Qualified candidates must hold a doctoral degree (M.D., M.D./Ph.D., Ph.D., Sc.D., or equivalent) in Immunology, Cancer Biology, Computational Biology, Pathology or related field. 

Candidates should demonstrate:

  • Advanced expertise in immune receptor (TCR/BCR) repertoire sequencing and analysis (bulk and/or single-cell), with strong complementary experience in single-cell genomics and multi-omics integration.
  • Experience collaborating across basic, translational, and clinical research teams.
  • Experience applying AI tools to immunology, oncology or genetic engineering questions.  
  • Track record of peer-reviewed publications and external funding (e.g., NIH, industry, foundations) preferred
  • The ability to develop innovative computational approaches that generate biologically and clinically meaningful insights. 
     

Appointment level (Assistant, Associate, or Full Professor) will be commensurate with experience and years in rank, scholarly achievement, leadership experience, and funding.


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About Mayo Clinic

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Mayo Clinic is the largest integrated, not-for-profit medical group practice in the world. We're building the future, one where the best possible care is available to everyone — and more people can heal at home. Our relentless research turns into earlier diagnoses and new cures. That's how we inspire hope in those who need it most. At Mayo Clinic, experts work together to solve the most challenging unmet needs of patients. Our history of innovation dates back almost 150 years, when brothers Will and Charlie Mayo pioneered an integrated, team-based approach to medicine. Today, that trailblazing spirit drives innovations like Mayo Clinic Platform — which powers new technologies to change how care is delivered to all.

Industry

Hospitals

Company size

10,000+ Employees

Headquarters location

Rochester, MN, US

Year founded

1919