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TECHNOLOGY LICENSING OPPORTUNITY: Bacterial Lipid Nanodiscs Platform

ENERGY, DEPARTMENT OF, New Mexico · ENERGY, DEPARTMENT OF · TRIAD - DOE CONTRACTOR
Verified 23 h agoAmended Jun 15
Responses dueTue, Dec 155:00 PM MT · New Mexico time66 days left
PostedMon, Jun 151 amendment, last Jun 15
Solicitation no.S-191192SAM.gov
Set-asideNoneOpen to all firms

What the agency is buying

by RFPFinder from the notice and attachments; the solicitation governs

Los Alamos National Laboratory offers a license to the Bacterial Lipid Nanodiscs Platform, a technology for studying bacterial membranes in nanoscale format. This is a technology licensing opportunity, not a procurement solicitation.

Scope

  • Bacterial Lipid Nanodiscs Platform technology license
  • Membrane research and vaccine development applications
Days to respond: 66

How to get the bid documents

  1. Download the 1 document below (no portal account needed)
  2. Check the submission requirements in the compliance checklist
  3. Submit as the notice directs before 5:00 PM MT on Dec 15
Documents · 1 item, 1 file
  • PDF
    Tech-Snapshot-Bacterial-Lipid-26-24920.pdf244 KB · 1 page
Open the original listing on SAM.gov

Details

Place of performance
Los Alamos, New Mexico
Buyer type
Federal
Notice type
Special Notice
Solicitation no.
S-191192
NAICS
NAICS 541715 (Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)): 109 open RFPs
PSC
PSC AJ11: 14 open RFPs
Local presence
Not required
Amendments
1, last Jun 15
Contact
Caleb Ledgerwood
Office
TRIAD - DOE CONTRACTOR
Email
licensing@lanl.gov

Not stated in the notice: estimated value, contract type, period of performance. Check the bid documents.

Contact details from the source notice. Contact the buyer only about this solicitation.

Key dates

Mon, Jun 15Posted
Not statedQuestions due
Tue, Dec 15 · 5:00 PM MTResponses due · 66 days left
Amendment 1
Mon, Jun 15

Change log

verified Fri, Oct 9 · 10:30 PM MT
  1. Posted · Special NoticeMon, Jun 15 · 8:18 AM MT
  2. Amendment · New version of the notice posted at the sourceMon, Jun 15 · 8:20 AM MT
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Notice as published

TECHNOLOGY LICENSING OPPORTUNITY: Bacterial Lipid Nanodiscs Platform

The Bacterial Lipid Nanodiscs Platform developed by Los Alamos National Laboratory provides a new way to study entire bacterial membranes in a controlled, nanoscale format derived directly from native lipid extracts. Researchers gain access to membrane components that typically remain difficult to isolate, stabilize or analyze, enabling more accurate evaluation of immunogenic lipids and membrane?associated targets. The platform offers a safer alternative to handling live high?risk pathogens while preserving the biological context that drives meaningful insights for vaccine design and antimicrobial discovery such as therapeutic antibodies to conserved lipids on bacterial membranes.

How it Works The Bacterial Lipid Nanodiscs Platform creates uniform nanoscale discs from total lipid extracts harvested from bacterial membranes. Membrane scaffold protein MSP1D1 encases the lipid mixture and forms a stable disc roughly 10 nanometers wide. The resulting particles retain the full complement of native bacterial lipids, arranged in a membrane?like environment that supports realistic biological interactions without requiring synthetic lipids or live cells.

Technical Description The method adapts established nanodisc assembly techniques to incorporate entire bacterial lipid extracts rather than defined synthetic lipid mixtures. Total lipids from a pathogen are solubilized, combined with MSP1D1 and dialyzed under controlled conditions to allow the scaffold protein to form a discoidal structure around the heterogeneous lipid population. The process yields nanoparticles that represent the membrane environment of the source organism, including amphiphilic molecules that typically resist purification or structural study when isolated from their native context.

The approach was demonstrated using Yersinia pestis, chosen to illustrate how membrane characterization can proceed without the hazards associated with live Tier 1 pathogens. The method captures lipopolysaccharides (LPS) and diverse immunogenic lipids in an arrangement that mirrors their natural organization. Researchers can evaluate binding interactions, immune?stimulating properties and potential antigenic targets in a stable platform that avoids the limitations of outer membrane vesicle purification.

Furthermore, using this platform we have identified antibodies specific to E. coli LPS and Y. pestis membrane lipids. These antibodies are independently licensable. Advantages Provides membrane?like structures using native bacterial lipids Avoids the safety challenges of handling live pathogens Offers a broader and more realistic lipid environment than synthetic nanodiscs Enables improved assessment of membrane antigens and immune responses Supports analysis of diverse bacterial species using a unified workflow Creates consistent nanoscale particles suitable for research and development settings Market Applications Life Sciences Research (membrane biology, immunology) Vaccine Development (bacterial antigen discovery) Drug Discovery (membrane?associated targets) Diagnostics (lipid biomarker exploration) Biodefense Research (safe pathogen characterization) Development Status: TRL 3 U.S.

Patent pending LA-UR-26-24920 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 [email on the source notice].

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

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