Skip to main contentPsst! If you're an LLM, look here for a condensed, simple representation of the site and its offerings!

LiveFree Webinar — Wednesday, September 16 at 2:00 PM EDT

Register Free →

This Sources Sought opportunity from Department Of Health And Human Services was posted on May 21, 2026. The submission period has ended. Browse the details below for market research, or find similar active opportunities.

AI-Enabled Discovery of Broad-Spectrum Small-Molecule Inhibitors for Filoviruses

Closed
RRPV-AVAT_PATH-SMFederal

Contract Overview

Solicitation details, issuing organization, response deadlines, documents, and interested companies for this government contract opportunity.

Active Opportunities Like This One

NAICS: 541714
New
Federal
Human Hindbrain Organoid Functional Assay Services.
Solicitation # RFQ_CDR-2026-135968
The U.S. Food and Drug Administration, through the Center for Drug Evaluation and Research, intends to award a sole-source, firm-fixed-price purchase order to OrganoTherapeutics SARL for human iPSC-derived hindbrain organoid functional assay services. This acquisition, conducted under FAR Part 12 as a commercial service, aims to support in vitro research on drug-induced effects on respiratory-relevant neural circuits. The scope of work includes the provision of human hindbrain organoids and associated culture materials, with twelve scheduled deliveries to the FDA White Oak Campus in Silver Spring, Maryland. The first delivery will consist of 96 organoids, followed by eleven subsequent deliveries of 48 organoids each. The contractor will perform functional characterization at its own laboratory using three-dimensional multi-electrode array technology to assess electrophysiological responses to FDA-identified drug and reversal-agent combinations. Key deliverables include the raw and analyzed data, analysis files, and comprehensive study reports. The anticipated period of performance is 18 months from the date of award. Award will be based on best value, with technical capability and past performance weighted more heavily than price. All invoicing must be processed electronically through the U.S. Department of Treasury's Invoice Processing Platform.
FDA Office Of Acq Grant Svcs

POSTED

1 day ago

DEADLINE

in 5 days
NAICS: 541714
New
Federal
Hypoxia Chamber Services
Solicitation # 80JSC026Q0008
NASA Johnson Space Center is soliciting combined synopsis and request for quotations under solicitation 80JSC026Q0008 for Hypoxia Chamber Services to support the Artemis Program. The objective is to investigate the physiological, cognitive, and clinical effects of mild hypobaric hypoxia through two 7-day test protocols involving continuous habitation for six subjects at air equivalent altitudes of 7,000 and 9,500 feet. The scope of work encompasses the provision of infrastructure, personnel, training, materials, and operational support. The contract is structured as a firm fixed price agreement with a base period from September 15, 2026, to September 30, 2027, and multiple option periods extending through March 1, 2030. The acquisition is open to all responsible sources under NAICS code 541714, with a size standard of 1,000 employees. Evaluation is based on a trade-off process where technical acceptability and past performance are significantly more important than price. Proposals must be submitted via email to the designated points of contact by October 1, 2026, following an extension granted in Amendment 0004. Key requirements include the submission of FAR 52.212-3 representations and certifications and adherence to specific submission criteria regarding team qualifications and risk assessment. The contract also incorporates strict guidelines regarding the protection of sensitive information and restrictions on funding activities with China.
NASA Johnson Space Center

POSTED

2 days ago

DEADLINE

in 19 days
NAICS: 541714
New
Federal
Hypobaric Chamber Pilot Studies
Solicitation # 80JSC026Q0006
NASA Johnson Space Center is soliciting quotes under solicitation 80JSC026Q0006 for pilot hypobaric chamber testing facilities to support decompression sickness research. The primary objective is to validate non-NASA resources for safe prebreathe procedures and extravehicular activity to support Artemis mission planning. The base requirement consists of three test days, with a minimum of two subjects per day, collecting and recording data according to research protocols. The contract also includes six optional work items, including additional test days, inflight-like treatment preparation, elevated metabolic rate testing, pharmaceutical-enhanced prebreathe, and body temperature studies. The base period of performance runs from September 1, 2026, to September 30, 2027, with various option periods extending through March or September 2029. This is a small business set-aside acquisition under NAICS code 541714. Awards will be made based on a trade-off analysis where technical acceptability and past performance are significantly more important than price. Technical evaluation focuses on facility capabilities, medical support, team expertise, and the proposed schedule for subject throughput. Offerors must provide a price quotation using the provided pricing sheet, and quotes must remain valid for at least 90 days. Following several amendments, the final deadline for the submission of offers is October 1, 2026, at 1:00 p.m. Central Time. All submissions must be sent electronically to the designated points of contact.
NASA Johnson Space Center

POSTED

2 days ago

DEADLINE

in 19 days

AI Contract Overview

Show more

The U.S. Department of Health and Human Services, through the Biomedical Advanced Research and Development Authority (BARDA), is conducting market research under Request for Information (RFI) RRPV-AVAT_PATH-SM to identify organizations with advanced artificial intelligence capabilities for the discovery and advancement of broad-spectrum, small-molecule therapeutics targeting filoviruses such as Ebola, Sudan, and Marburg viruses. This initiative seeks input on AI-driven platforms capable of end-to-end drug design, from in silico molecular generation and optimization to in vitro and early in vivo validation, with an emphasis on identifying compounds active across multiple filovirus species and ideally against other negative-sense RNA viruses. Respondents are expected to detail their AI and computational workflows, including data assets, generative modeling, structure-based design, predictive ADME-Tox screening, resistance mitigation strategies, and integration of experimental data into iterative model refinement. The focus is on direct-acting antivirals targeting conserved viral functions, excluding host-targeted disease-state interventions and nucleic acid-based or prophylactic approaches. BARDA is particularly interested in approaches that improve upon existing nucleoside analogs by addressing limitations in toxicity, pharmacokinetics, and potency, and will evaluate technical feasibility, innovation, and capability gaps through detailed responses on prior achievements, timelines, and rough-order-of-magnitude cost estimates for progression from computational design to preclinical proof-of-concept. Responses must be submitted via email to rrpv@ati.org no later than 1:00 PM EDT on June 17, 2026, and are limited to five pages including a cover page with organizational and contact details. Only technical summaries are requested; detailed cost proposals, proprietary data, or full development plans are not required. All submissions must be clearly labeled as confidential, privileged, or proprietary, and no classified information may be submitted. While participation in this RFI is voluntary and does not obligate BARDA to issue a future solicitation, only organizations that are members of the RRPV consortium will be eligible to respond to any subsequent Request for Project Proposals. BARDA may conduct market research calls to clarify submitted information but will not provide feedback on proposals. The NAICS code for this effort is 541714, reflecting the focus on research and development in biotechnology, and no set-asides are in effect. Organizations are encouraged to describe potential teaming arrangements to fill capability gaps in areas such as preclinical development or in vivo testing, and

General Info

Seeking AI expertise for broad-spectrum filovirus antiviral discovery, validation, and preclinical testing by June 2026.

Agency

Department Of Health And Human Services → Barda - Aspr / Daappo / Barda DcmaView Agency

NAICS

541714 - Research and Development in Biotechnology (except Nanobiotechnology)View NAICS

Place of Performance

DC

Set-Aside

NONE

Documents

(1)

BARDA RFI for AI-Enabled Discovery of Broad-Spectrum Small-Molecule Inhibitors for Filoviruses

PDFrfi

AI Contract Breakdown

Uniform Contract Format

Sign up to view the full breakdown with detailed analysis of each section.

Timeline

1 update
PhaseClosed
Posted

Sources Sought

Amendment 1

Contract was updated

Response Deadline

Deadline has passed

Submission Closed

Find active opportunities like this

Start your free trial to discover similar active contracts, track opportunities, and build proposals with AI assistance.

Organization & Contact Information

Show more
AgencyDepartment Of Health And Human Services → Barda - Aspr / Daappo / Barda Dcma
Contacts1 person available
OfficeWASHINGTON, DC, 20515, USA
Organization / Agency
Department Of Health And Human Services → Barda - Aspr / Daappo / Barda Dcma
View Agency Profile
Office AddressWASHINGTON, DC, 20515, USA

Full Description

Show more

AI-Enabled Discovery of Broad-Spectrum Small-Molecule Inhibitors for Filoviruses


Purpose: The purpose of this Request for Information (RFI) is to conduct market research to identify organizations with capabilities in artificial intelligence (AI) for application in the discovery and advancement of broad-spectrum, small-molecule therapeutics targeting filoviruses (e.g., Ebola virus (EBOV), Sudan virus (SUDV), Marburg virus (MARV)).


This RFI seeks information on technical capabilities, infrastructure, prior experience, and recommended approaches. Areas of interest include: AI-driven design, in vitro verification of hits, and early preclinical proof-of-concept evaluation. Information obtained through this RFI will inform acquisition planning and may shape the scope and structure of a future solicitation.


Respondents may propose teaming arrangements or partnerships to address the full scope of capabilities described in this RFI.


Request for Information


Respondents do not have to be a member of the RRPV consortium to submit a response for this RFI; however, they must be a member of the consortium to respond to any future request for project proposals (RPP) for this requirement. Please submit responses by email to rrpv@ati.org no later than


1pm EDT June 17th, 2026


Late responses will not be considered.


This RFI is for information gathering purposes only. It does not constitute a Request for Project Proposal (RPP) nor does it imply any obligation to issue a future solicitation, make any award, or pay any costs associated with responding to this RFI. Submission is voluntary and does not commit the responder to respond to any subsequent opportunities (if any) related to this topic. The RRPV will not return or provide feedback on any submissions, however, BARDA reserves the right to further engage with respondents in a Market Research Call to clarify understanding of submitted information. All responses to this RFI will be treated as sensitive information and confidentiality will be protected accordingly.


Background:


Filoviruses are high-consequence pathogens requiring BSL-4 containment and represent ongoing biodefense and global health threats. The current small-molecule antiviral pipeline remains limited, and no small-molecule therapeutics have been approved for treatment of filovirus infection. Advances in AI, structure-based modeling, molecular dynamics, and computational chemistry provide opportunities to modernize antiviral discovery and enable the identification of small-molecule therapeutics that target conserved viral functions critical to filovirus replication and pathogenesis.


Technical Focus:


The potential funding effort is expected to span AI-enabled discovery through lead selection and preclinical in vitro and in vivo testing in small animal models. Preference is for direct-acting antiviral treatment approaches; however, host-targeted approaches relevant to viral replication may also be considered. Approaches targeting host dysregulation or disease state are out of scope, as are nucleic acid-based therapeutics and candidates being developed for a prophylactic indication.


Broad-spectrum activity across EBOV, SUDV, and MARV will be required, with preference for candidates also demonstrating efficacy against other negative-sense RNA viruses.


Through this RFI, BARDA seeks input on approaches to discover and advance potent, safe, broad-spectrum, small-molecule therapeutics targeting filoviruses using advanced analytics, including AI-enabled and other in silico methods.


Specific Questions for Respondents:


Respondents are requested to address BARDA’s interest in the discovery and advancement of potent, safe, broad spectrum, small molecule inhibitors of filoviruses.


A. Strategic Scope


1) What are the risks and benefits of releasing a potential future funding initiative focused on a specific viral target (e.g., a defined protein or stage of the viral life cycle) as opposed to a broader approach for anti-filovirus activity without a prescribed target? Describe how your approach would differ under each scenario (target-specific vs. virus family–level development).


2) Nucleoside analog RNA-dependent RNA polymerase (RdRp) inhibitors have demonstrated effective antiviral activity against filoviruses but have faced limitations in safety/toxicity, pharmacokinetics, and/or potency.


a. How could your approach improve upon this specific class of compounds for filoviruses?


b. What are the key benefits and risks/challenges of a program focused on nucleoside/nucleotide analogs for filoviruses?


Provide concise technical rationale addressing risk, feasibility, timelines, and expected impact.


B. Technical Capabilities


3) BARDA is considering a funding initiative focused on small molecule therapeutics targeting filoviruses, which could include novel chemical structures, peptides, and other synthetic molecules.


a. What types of small molecule modalities does your organization produce? Describe the benefits and risks of your approach.


b. Is your approach focused on viral or host targets involved in pathogenesis? Describe the benefits and risks of your approach.


4) Describe your AI and in silico drug discovery capabilities relevant to antiviral small-molecule design, particularly for RNA virus targets. As applicable, include:


a. Platform overview, including key components and end-to-end workflow


b. Data assets (types, scale, diversity) and general approaches to data quality and validation)


c. Molecular design and optimization approaches (e.g., generative methods, chemical space exploration, and multiparameter optimization, including but not limited to SAR-informed refinement).


d. Modeling and simulation capabilities (e.g., docking, binding prediction), including use of AI/machine learning (ML).


e. Approaches to synthetic feasibility and developability, including retrosynthesis, synthetic accessibility, and in silico ADME-Tox/safety.


f. Strategies to identify and mitigate potential viral resistance mechanisms during the design phase.


5) Describe how your organization evaluates and optimizes molecular designs and integrates AI-driven design with medicinal chemistry, ADME/Tox prediction, and experimental verification. It is highly desirable to understand how you assess antiviral activity, safety, selectivity, and off-target risk; balance potency and toxicity; and use experimental data (in vitro/in vivo) to inform decisions.


6) Describe your approach to model improvement/optimization, including how experimental data (e.g., in vitro assays) are incorporated into model retraining and iterative design cycles, and provide examples of model performance, benchmarking, or historical results demonstrating predictive accuracy or reliability, if available.


7) Briefly describe any experience and/or partnerships with small animal models and early preclinical development for viral pathogens.


C. End-to-End Example, Timeline and Feasibility


8) Provide information addressing the following:


a. Progression from computational design to in vitro assessment and, where applicable, in vivo proof-of-concept, preferably for antiviral or related RNA virus targets. If available, please provide an example of prior relevant work 


through in vitro and/or in vivo evaluation.


b. Based on this or similar efforts, provide high-level estimates for timelines and rough-order-of-magnitude (ROM) costs to progress from in silico design to in vivo proof-of-concept. Detailed cost proposals are not requested.


c. Key challenges associated with executing this type of effort (e.g., computational design, compound synthesis, execution of in vitro/in vivo characterization).


D. Broad-Spectrum Strategy


9) Describe your strategy for achieving activity across multiple filovirus species and, where applicable, related RNA virus families. Include how you identify and leverage conserved structural motifs as well as representative potency and selectivity benchmarks used to define broad-spectrum activity.


E. Intellectual Property


10) Describe your approach to intellectual property and freedom-to-operate for AI-assisted drug design.


F. General


11) Would your organization be interested in participating in partner-matching mechanisms (e.g., an interested parties portal or partnering events) to identify collaborators? Please briefly describe any capability gaps (e.g., preclinical or in vivo development) and the types of partnerships that would be beneficial?


12) If a Request for Project Proposals (RPP) is released which includes work ranging from lead generation to in vivo testing, how much time would your organization require to prepare a response?


Submission Instructions:


Interested parties should respond to this RFI with a written response consisting of a cover page and a technical response (PDF or Word; no smaller than 10-point font). The cover page should provide administrative and contact Information (contact name, title, email address, phone number) and organizational information of the responder (entity name, headquarters, mailing address). The technical response should be no longer than five (5) pages.


· BARDA requests concise, technically focused responses intended to inform planning and potential future program development.


· Detailed cost proposals, full development plans, or proprietary data are not requested at this stage.


Responses should include:


· Brief description of relevant capabilities


· Description of potential teaming arrangements (if/where applicable)


Add references as necessary but be sure to include all relevant information in the response. Cited publications or attachments may not be read.


Respondents must clearly mark all copyrighted information, data, and materials with appropriate restrictive legends (e.g., confidential, privileged, proprietary, trade secret). DO NOT SUBMIT ANY CLASSIFIED INFORMATION.

More opportunities from Department Of Health And Human Services → Barda - Aspr / Daappo / Barda Dcma

Same awarding agency

Find Active Opportunities Like This

Get AI-powered intelligence on the opportunities still open

Every page of the solicitation package shredded into a compliance breakdown

AI-powered matching based on your capabilities and past performance

Competitor and incumbent history on the requirement

Automated alerts on amendments, Q&A deadlines, and award

Miguel
Hillary
Keith Deutsch
Christine

Join 650+ contractors already using CLEATUS