{"schemaVersion":"jobsearcher.job.v1","id":"af0b4bf72e3f705172289572","url":"https://jobsearcher.com/jobs/af0b4bf72e3f705172289572","canonicalUrl":"https://jobsearcher.com/jobs/af0b4bf72e3f705172289572","title":"Lead Bioengineer","description":"Role Summary\nYou will own the living-systems layer of Devyantram's platform end to end: the neural substrate of the CEREBRION bionic brain in both its living and engineered, materials-based forms; the bioelectronic interface that couples that substrate to the rest of the system; and all biological and living-material aspects of the platform, including regenerative and self-healing systems. You define how living and engineered substrates combine into adaptive, learning, durable embodiments, working closely with the photonics, mechatronics, and controls leads on integration.\n\nKey Responsibilities\nNeural Substrate (CEREBRION)\n\nOwn the neural substrate of CEREBRION across both its living and engineered, materials-based forms.\n\nDevelop and maintain engineered neural tissue and biohybrid substrates.\n\nDesign and build materials-based, neural-emulating substrates using ionic and conducting-polymer (iontronic) device approaches.\n\nPartner with the photonics and micro/nano lead on the device-level fabrication and physics of materials-based substrates.\n\nSupport closed-loop learning across the integrated system.\n\nEstablish biosafety, ethics, and reproducibility standards for all living-systems work.\n\nBioelectronic Interface\n\nOwn the bioelectronic interface between biological substrates and the platform's electronic and optical subsystems.\n\nDevelop and characterize the interface materials and transduction approaches that make that coupling reliable.\n\nCollaborate with the photonics and controls leads on integration across the interface.\n\nLiving, Regenerative & Self-Healing Materials\n\nEngineer regenerative and bio-hybrid materials for robotic systems, including self-healing skins, scaffolds, and adaptive structural elements.\n\nDevelop repair and regeneration pathways for long-lived, damage-tolerant embodiments.\n\nDesign and engineer functional polymers, hydrogels, and soft-matter systems for interfacing, actuation, sensing, and structural use.\n\nDevelop stimuli-responsive and adaptive materials across electrical, optical, chemical, and mechanical domains.\n\nMolecular & Programmable Systems\n\nExplore molecular-scale and programmable-matter approaches to local sensing and actuation.\n\nSupport integration of these systems with the broader micro and nano platform.\n\nIP & Technical Leadership\n\nGenerate foundational IP across neural and biohybrid systems, ionic and organic-bioelectronic devices, bioelectronic interfaces, and living and regenerative materials.\n\nLead invention disclosures and experimental validation in coordination with patent counsel.\n\nBuild and mentor the wet-lab and bioengineering team over time.\n\nRequired Qualifications\n\nMS or PhD in Bioengineering, Neural Engineering, Biomedical Engineering, or a related field (Neuroscience, Synthetic Biology, or Materials Science with a bioelectronics focus are all relevant).\n\n8+ years of hands‑on research and development experience across living‑systems and bioelectronic work.\n\nA strong living‑systems foundation spanning engineered neural tissue, biohybrid systems, and organoids, with demonstrated depth in at least one of these branches.\n\nFirm requirement: hands‑on experience with bioelectronic interfaces, the coupling between neural or biological substrates and electronic or optical systems. This is the core of the role and the hardest part to outsource.\n\nExperience with ionic and conducting‑polymer devices, iontronics, or organic bioelectronics, and the ability to build materials‑based, neural‑emulating substrates.\n\nDemonstrated ability to take living or materials‑based systems from bench to integrated, reproducible use.\n\nStrong experimental design and cross-disciplinary communication.\n\nStrongly Preferred\n\nOrganic bioelectronics, iontronics, or neuromorphic materials.\n\nOrganoid, neural‑tissue, or biohybrid‑computing research.\n\nBioelectronic interfaces, neural probes, or brain‑machine interfaces.\n\nRegenerative medicine, tissue engineering, or self‑healing and stimuli‑responsive materials.\n\nMolecular machines or programmable matter.\n\nExperience bridging wet‑lab, hardware, and robotics teams.\n\nA Successful Candidate Will Be Measured By\n\nStability, function, and learning capacity of the neural substrate across its living and engineered forms.\n\nReliability of the bioelectronic interface across the integrated system.\n\nPerformance and longevity of regenerative and self‑healing materials.\n\nSuccessful integration of living‑systems work with the rest of the platform.\n\nStrength and defensibility of generated biotech and materials IP.\n\nThe pay offered for this position may vary based on several individual factors, including job‑related knowledge, skills, and experience. The total compensation package may also include additional components/benefits depending on the specific role. This information will be shared if an employment offer is extended.\n\n#J-18808-Ljbffr","company":"Devyantram","rawCompany":"devyantram","city":"Ashburn","state":"GA","isRemote":false,"isActive":false,"createdAt":"2026-08-08T03:17:56.823Z","occupations":[{"code":"17-2031.00","title":"Bioengineers and Biomedical Engineers","slug":"bioengineers-and-biomedical-engineers"},{"code":"17-2199.09","title":"Nanosystems Engineers","slug":"nanosystems-engineers"},{"code":"11-9041.00","title":"Architectural and Engineering Managers","slug":"architectural-and-engineering-managers"}],"industries":[{"code":"541715","title":"Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)","slug":"research-and-development-in-the-physical-engineering-and-life-sciences-except-nanotechnology-and-biotechnology"},{"code":"541714","title":"Research and Development in Biotechnology (except Nanobiotechnology)","slug":"research-and-development-in-biotechnology-except-nanobiotechnology"},{"code":"339113","title":"Surgical Appliance and Supplies Manufacturing","slug":"surgical-appliance-and-supplies-manufacturing"}],"jobPosting":{"@context":"https://schema.org","@type":"JobPosting","title":"Lead Bioengineer","description":"Role Summary\nYou will own the living-systems layer of Devyantram's platform end to end: the neural substrate of the CEREBRION bionic brain in both its living and engineered, materials-based forms; the bioelectronic interface that couples that substrate to the rest of the system; and all biological and living-material aspects of the platform, including regenerative and self-healing systems. You define how living and engineered substrates combine into adaptive, learning, durable embodiments, working closely with the photonics, mechatronics, and controls leads on integration.\n\nKey Responsibilities\nNeural Substrate (CEREBRION)\n\nOwn the neural substrate of CEREBRION across both its living and engineered, materials-based forms.\n\nDevelop and maintain engineered neural tissue and biohybrid substrates.\n\nDesign and build materials-based, neural-emulating substrates using ionic and conducting-polymer (iontronic) device approaches.\n\nPartner with the photonics and micro/nano lead on the device-level fabrication and physics of materials-based substrates.\n\nSupport closed-loop learning across the integrated system.\n\nEstablish biosafety, ethics, and reproducibility standards for all living-systems work.\n\nBioelectronic Interface\n\nOwn the bioelectronic interface between biological substrates and the platform's electronic and optical subsystems.\n\nDevelop and characterize the interface materials and transduction approaches that make that coupling reliable.\n\nCollaborate with the photonics and controls leads on integration across the interface.\n\nLiving, Regenerative & Self-Healing Materials\n\nEngineer regenerative and bio-hybrid materials for robotic systems, including self-healing skins, scaffolds, and adaptive structural elements.\n\nDevelop repair and regeneration pathways for long-lived, damage-tolerant embodiments.\n\nDesign and engineer functional polymers, hydrogels, and soft-matter systems for interfacing, actuation, sensing, and structural use.\n\nDevelop stimuli-responsive and adaptive materials across electrical, optical, chemical, and mechanical domains.\n\nMolecular & Programmable Systems\n\nExplore molecular-scale and programmable-matter approaches to local sensing and actuation.\n\nSupport integration of these systems with the broader micro and nano platform.\n\nIP & Technical Leadership\n\nGenerate foundational IP across neural and biohybrid systems, ionic and organic-bioelectronic devices, bioelectronic interfaces, and living and regenerative materials.\n\nLead invention disclosures and experimental validation in coordination with patent counsel.\n\nBuild and mentor the wet-lab and bioengineering team over time.\n\nRequired Qualifications\n\nMS or PhD in Bioengineering, Neural Engineering, Biomedical Engineering, or a related field (Neuroscience, Synthetic Biology, or Materials Science with a bioelectronics focus are all relevant).\n\n8+ years of hands‑on research and development experience across living‑systems and bioelectronic work.\n\nA strong living‑systems foundation spanning engineered neural tissue, biohybrid systems, and organoids, with demonstrated depth in at least one of these branches.\n\nFirm requirement: hands‑on experience with bioelectronic interfaces, the coupling between neural or biological substrates and electronic or optical systems. This is the core of the role and the hardest part to outsource.\n\nExperience with ionic and conducting‑polymer devices, iontronics, or organic bioelectronics, and the ability to build materials‑based, neural‑emulating substrates.\n\nDemonstrated ability to take living or materials‑based systems from bench to integrated, reproducible use.\n\nStrong experimental design and cross-disciplinary communication.\n\nStrongly Preferred\n\nOrganic bioelectronics, iontronics, or neuromorphic materials.\n\nOrganoid, neural‑tissue, or biohybrid‑computing research.\n\nBioelectronic interfaces, neural probes, or brain‑machine interfaces.\n\nRegenerative medicine, tissue engineering, or self‑healing and stimuli‑responsive materials.\n\nMolecular machines or programmable matter.\n\nExperience bridging wet‑lab, hardware, and robotics teams.\n\nA Successful Candidate Will Be Measured By\n\nStability, function, and learning capacity of the neural substrate across its living and engineered forms.\n\nReliability of the bioelectronic interface across the integrated system.\n\nPerformance and longevity of regenerative and self‑healing materials.\n\nSuccessful integration of living‑systems work with the rest of the platform.\n\nStrength and defensibility of generated biotech and materials IP.\n\nThe pay offered for this position may vary based on several individual factors, including job‑related knowledge, skills, and experience. The total compensation package may also include additional components/benefits depending on the specific role. This information will be shared if an employment offer is extended.\n\n#J-18808-Ljbffr","datePosted":"2026-08-08T03:17:56.823Z","dateModified":"2026-08-08T03:17:56.823Z","hiringOrganization":{"@type":"Organization","name":"Devyantram","sameAs":"https://jobsearcher.com"},"jobLocation":{"@type":"Place","address":{"@type":"PostalAddress","addressLocality":"Ashburn","addressRegion":"GA","addressCountry":"US"}},"identifier":{"@type":"PropertyValue","name":"JobSearcher","value":"af0b4bf72e3f705172289572"},"url":"https://jobsearcher.com/jobs/af0b4bf72e3f705172289572"}}