Active Solicitation · DEPARTMENT OF ENERGY

    TECHNOLOGY LICENSING OPPORTUNITY: CLATHRATE THERAPEUTICS PLATFORM

    DEPARTMENT OF ENERGY
    Sol. S-195396Special NoticeColumbus, OH
    Open · 183d remaining
    DAYS TO CLOSE
    183
    closes Dec 4, 2026
    POSTED
    Jun 4, 2026
    Publication date
    NAICS CODE
    325412
    Primary industry classification
    PSC CODE
    6505
    Product & service classification

    AI Summary

    The Department of Energy is offering a technology licensing opportunity for the Clathrate Therapeutics Platform, which enhances the delivery of therapeutic gases for oncology, cardiovascular care, and regenerative medicine. This platform allows for controlled, localized delivery, improving safety and effectiveness. Interested parties can explore licensing options through Los Alamos National Laboratory's program.

    Contract details

    Solicitation No.
    S-195396
    Notice Type
    Special Notice
    Posted Date
    June 4, 2026
    Response Deadline
    December 4, 2026
    NAICS Code
    325412AI guide
    PSC / Class Code
    6505
    Primary Contact
    Caleb Ledgerwood
    State
    OH
    ZIP Code
    43201
    AI Product/Service
    both

    Description

    This technology from scientists at Los Alamos National Laboratory represents a novel platform for improving the safety and effectiveness of therapeutic gas-based treatments by enabling controlled, localized delivery at the site of disease. By addressing longstanding challenges associated with systemic exposure and dosing precision, the platform enhances the clinical viability of gas therapies across high-value markets such as oncology, cardiovascular care, and regenerative medicine. In addition, the inclusion of a complementary predictive modeling capability supports treatment optimization and development efficiency, reducing technical risk and accelerating translation. Together, these capabilities position the technology as a differentiated and scalable solution that can unlock new commercial opportunities in areas where gas-based therapeutics have shown promise but faced delivery limitations.

    The Opportunity:

    Therapeutic gases have demonstrated meaningful biological effects across oncology, cardiovascular disease, neuroprotection and regenerative medicine, yet their clinical adoption has been limited by a fundamental challenge: safe, controlled and localized delivery. Existing approaches often result in rapid release, systemic exposure or narrow therapeutic windows, creating safety, regulatory and development barriers. The Clathrate Therapeutics Platform addresses this unmet need by positioning gas-based therapies as programmable, targetable and commercially viable treatment modalities. By enabling more precise control over where and how therapeutic gases are delivered, the platform has the potential to unlock new product categories, enhance combination treatment strategies and accelerate translation of gas-based therapeutics into high-value clinical markets.

    How it Works:

    The Clathrate Therapeutics Platform uses a proprietary, controlled-release system designed to localize therapeutic gases at the intended treatment site rather than allowing them to disperse systemically. This technology temporarily stabilizes the gas within a biocompatible structure that gradually releases it under physiological conditions, enabling sustained and targeted exposure. This controlled release approach is designed to support therapeutic concentrations where needed while limiting circulating levels elsewhere in the body. An integrated computational modeling capability further supports optimization of dosing profiles and treatment parameters, helping guide development decisions prior to in vivo studies.

    Key Advantages:

    • Localized delivery: Targets therapeutic gases to the intended site while minimizing systemic exposure.
    • Controlled release: Designed for sustained, tunable dosing under physiological conditions.
    • Improved safety margin: Aims to separate therapeutic effect from toxicity risk.
    • Platform versatility: Applicable across oncology, cardiovascular, neurological and regenerative indications.
    • Development optimization: Supported by predictive modeling to guide dose and design decisions.
    • Partnership-ready architecture: Suitable for integration with drug-device combinations and existing treatment modalities.

    Market Applications:

    • Oncology Therapeutics Industry
    • Cardiovascular and Vascular Medicine Industry
    • Neurology and Neurodegenerative Disease Sector
    • Regenerative Medicine and Tissue Engineering Industry
    • Medical Device and Drug-Device Combination Companies
    • Biotechnology and Specialty Pharma Companies
    • Computational Drug Development and Modeling Firms

    Development Status: TRL 2

    US patent pending

    LA-UR-26-22810

    LANL Tech Partnerships: Unlock the Innovative Potential

    Los Alamos National Laboratory offers a wide range of cutting-edge technologies and capabilities that may provide your company with a competitive edge in the market and unlock the innovative potential that can enhance, refine, and revolutionize your products.

    LANL’s licensing program focuses on moving inventions developed by our researchers to commercial innovations. Patented and patent pending inventions and copyrighted software are available to existing and start-up companies through exclusive and non-exclusive licensing agreements. For specific discussions, please contact licensing@lanl.gov.

    Note: This is not a call for external services for the development of this technology.

    https://www.lanl.gov/engage/collaboration/feynman-center/partner-with-us/licensing-technology

    m.lanl.gov/tech-search

    Key dates

    1. June 4, 2026Posted Date
    2. December 4, 2026Proposals / Responses Due

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    Frequently asked questions

    TECHNOLOGY LICENSING OPPORTUNITY: CLATHRATE THERAPEUTICS PLATFORM is a federal acquisition solicitation issued by DEPARTMENT OF ENERGY. Review the full description, attachments, and submission requirements on SamSearch before the response deadline.

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