Assistant/Associate/Full Professor of Bioengineering: Synthetic Biology (2 positions)

    Highlights

    Experimental & Translational Synthetic Biology: Examples include, but are not limited to, mammalian synthetic biology; the design and construction of genetic circuits and biosensors; metabolic and pathway engineering for biomanufacturing of chemicals, therapeutics, and sustainable materials; protein and enzyme engineering; genome editing and synthetic genomics tools; engineered cells, consortia, and living biomaterials; host-microbe and microbiome engineering; cell-free and in vitro synthetic biology systems; magnetogenetics; and engineered cell and gene therapies and the platforms that support their manufacture. Record of research excellence appropriate to career stage in synthetic biology, biological engineering, bioengineering, systems biology, computational biology, or related fields, as evidenced by peer-reviewed publications and extramural funding.

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    LocationSan Diego, CA

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    Assistant/Associate/Full Professor of Bioengineering: Synthetic Biology (2 positions) in Eugene, OR for University of Oregon - Knight Campus Return to Search Results

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    Assistant/Associate/Full Professor of Bioengineering: Synthetic Biology (2 positions)

    University of Oregon - Knight Campus

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    Details

    Posted: 04-Sep-26

    Location: Eugene, Oregon

    Preferred Education: Doctorate

    Years of Experience: 2 - 4

    Additional Information:

    2 openings available.

    Type:

    Full Time

    Level:

    Experienced

    Internal Number: 536687

    The Department of Bioengineering is the largest academic unit within the Knight Campus. The Phil and Penny Knight Campus for Accelerating Scientific Impact is a bold initiative designed to accelerate the translation of scientific discoveries into innovations that improve lives in Oregon, the nation, and beyond. Building on the University of Oregon's tradition of interdisciplinary collaboration, the Knight Campus advances research partnerships, industry engagement, and experiential training for the next generation of scientists, engineers, and entrepreneurs.

    Faculty expertise spans regenerative medicine, human performance, biofunctional materials, medical devices and biosensors, neural engineering, and synthetic biology. With the opening of its second research facility, the Knight Campus has doubled its capacity for biomedical research and technology development, expanded space for academic programs and startup incubation, and launched a state-of-the-art BioFoundry. Together, the two facilities provide more than 360,000 square feet dedicated to research, education, innovation, and entrepreneurship.

    Position Announcement

    1. Experimental & Translational Synthetic Biology:

    Examples include, but are not limited to, mammalian synthetic biology; the design and construction of genetic circuits and biosensors; metabolic and pathway engineering for biomanufacturing of chemicals, therapeutics, and sustainable materials; protein and enzyme engineering; genome editing and synthetic genomics tools; engineered cells, consortia, and living biomaterials; host-microbe and microbiome engineering; cell-free and in vitro synthetic biology systems; magnetogenetics; and engineered cell and gene therapies and the platforms that support their manufacture.

    Applicants should demonstrate a research program centered on the engineering of biological systems and technologies and employ quantitative, predictive, and design-based approaches to create, modify, or control biological function.

    1. Computational Synthetic Biology:

    Examples include, but are not limited to, computer-aided design, lab automation, and autonomous experimentation for the design-build-test-learn cycle; fitness landscape modeling and sequence-function prediction; genome-scale metabolic and dynamical modeling to optimize biomanufacturing and bioprocess design; machine learning, biological foundation models, and generative AI approaches for protein, enzyme, genome, and regulatory sequence design; predictive modeling of engineered cells, microbial communities, biomaterials, and cell and gene therapy products; computational methods for genome engineering and synthetic genome design; design and analysis of engineered regulatory networks; and multi-omics integration and quantitative modeling to guide the design and engineering of biological systems.

    Required Application Materials

    To receive full consideration, applicants must submit a complete application including:

    • A letter of interest that briefly expresses the candidate's enthusiasm for the role and highlights their track record in growing and strengthening community through collaborative efforts and coalition-building. (including a Google Scholar link)
    • CV outlining work history and professional qualifications relevant to this position.
    • Statement of current and future research interests and plans.
    • Statement describing experience with inclusive teaching and mentoring practices that promote students' success.
    • Names and contact information for three professional references.

    Minimum Requirements

    • Doctorate in Engineering, Biology, Human Physiology, Chemistry, Physics, Computer Science, or related discipline from an accredited institution of higher education.
    • Evidence of successful mentoring of trainees at any level (e.g., undergraduate, graduate, postgraduate, postdoctoral, peers).
    • Record of research excellence appropriate to career stage in synthetic biology, biological engineering, bioengineering, systems biology, computational biology, or related fields, as evidenced by peer-reviewed publications and extramural funding.
    • Demonstrated commitment to fostering an inclusive environment, as evidenced through research, teaching, mentoring, or service.

    Preferred Qualifications

    • Demonstrated expertise in experimental or computational synthetic biology, including engineered biological systems, genome engineering, synthetic genomics, biomanufacturing, biological design automation, machine learning-enabled biological design, or related areas.
    • Demonstrated use of quantitative, predictive, and design-based approaches to engineer, modify, or control biological function and advance synthetic biology through engineering innovation.
    • A nationally recognized track record of scientific achievement as evidenced by an outstanding publication record and other appropriate external indicators relevant to the individual's seniority in the field.
    • Experience working in complex, multi-stakeholder environments with the ability to build successfully at multiple interfaces (e.g., UO colleges and departments, other Oregon universities, and industry).
    • Demonstrated experience with large government agencies, foundations, industry, and philanthropy with a thorough understanding of funding opportunities and pathways, and strategies to successfully attract funding sufficient for the individual's research program and ambitions as relevant to the individual's seniority in the field.
    • Demonstrated commitment to translating research discoveries into applications that improve human health.
    • Demonstrated commitment to diversifying the pipeline of participants in science training and careers.
    • Demonstrated success in a pedagogical environment using evidence-based pedagogical methods.
    • Demonstrated service contributions and leadership in academia, research societies, government, and/or industry relevant to the individual's seniority in the field.

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    About University of Oregon - Knight Campus

    The Department of Bioengineering is the largest academic unit within the Knight Campus. The Phil and Penny Knight Campus for Accelerating Scientific Impact is a bold initiative designed to accelerate the translation of scientific discoveries into innovations that improve lives in Oregon, the nation, and beyond. Building on the University of Oregon's tradition of interdisciplinary collaboration, the Knight Campus advances research partnerships, industry engagement, and experiential training for the next generation of scientists, engineers, and entrepreneurs. Faculty expertise spans regenerative medicine, human performance, biofunctional materials, medical devices and biosensors, neural engineering, and synthetic biology. With the opening of its second research facility, the Knight Campus has doubled its capacity for biomedical research and technology development, expanded space for academic programs and startup incubation, and launched a state-of-the-art BioFoundry. Together, the two facilities provide more than 360,000 square feet dedicated to research, education, innovation, and entrepreneurship. For more information on the Knight Campus, please visit https://knightcampus.uoregon.edu/

    Connections working at University of Oregon - Knight Campus

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