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Find similar grantsEngineering Biological and Biomedical Systems Program is sponsored by NSF Division of Chemical, Bioengineering, Environmental and Transport Systems. Supports engineering research on platforms, devices, organisms, tissues, and processes that advance knowledge and control of biological functions.
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Engineering Biological and Biomedical Systems | NSF - U.S. National Science Foundation Engineering Biological and Biomedical Systems Important proposal submission information Proposals for this program currently must be submitted through Research. gov by selecting NSF 24-1 - NSF Proposal & Award Policies & Procedures Guide (PAPPG) as the funding opportunity.
Under NSF 24-1, select Directorate for Engineering (ENG); Division of Chemical, Bioengineering, Environmental and Transport Systems (CBET); and the program name. Proposals for this program cannot currently be submitted through Grants.
gov. Important information for proposers and award recipients All proposals must be submitted in accordance with the requirements specified in the funding opportunity and in the Proposal & Award Policies & Procedures Guide (PAPPG) and its supplements . All NSF grants and cooperative agreements are subject to the applicable set of NSF award terms and conditions . NSF has updated its research security policies for NSF funded projects.
Supports engineering research on platforms, devices, organisms, tissues and processes that advance knowledge and control of biological functions. Supports engineering research on platforms, devices, organisms, tissues and processes that advance knowledge and control of biological functions.
The Engineering Biological and Biomedical Systems (EBBS) program expands our understanding of biological and physiological systems, and it helps improve human health. For U.S. leadership in biotechnology, the engineering of biology is required at every scale. Engineering is needed for sensing biomarkers to making proteins to restoring functions of the body.
In EBBS, fundamental mechanistic insights are combined with experimental and computational techniques. This approach helps develop platforms, devices, organisms, tissues, and processes that bring new understanding and control of biological functions. EBBS supports studies of mechanisms that drive the behavior of microbial populations and cells, and of therapeutic cells and tissues.
This includes discovering the underlying engineering principles that are needed to capture the responses of biological systems and bioreactors. It also includes the creation of novel biosensing platforms and new optical imaging and modulation strategies. Research that enables the design of biological systems to sense and respond to novel stimuli is welcome.
Similarly, projects leading to insight into tissue changes or injury, and to systems that imitate or restore the functions of tissues or organs are encouraged. Projects that advance rehabilitation engineering through new theories and approaches are supported by the EBBS program. Fundamental engineering research driven by the needs of persons with disabilities is encouraged.
The EBBS program expands what is possible in biomanufacturing; research may advance biotechnology and/or health. EBBS research must enable improved biological processes, create novel biomedical technologies, or achieve new understanding of physiological or pathological processes. EBBS does not support proposals with a main goal of drug design, drug delivery, or the development of animal models of disease.
Using existing models for experimental testing and validation is acceptable. Projects that focus on testing and validating therapies are not supported. Clinical trials are not supported.
Limited studies involving human volunteers may be supported if appropriate to the project objectives. Projects focused on commercialization are more appropriate for the NSF Directorate for Technology, Innovation, and Partnerships (TIP). Partnerships: To speed discovery and innovation, NSF partners with federal agencies, industry, international groups, and others.
Current opportunities are at NSF ENG Partnerships. Awards made through this program Browse projects funded by this program Map of recent awards made through this program Directorate for Engineering (ENG) Division of Chemical, Bioengineering, Environmental and Transport Systems (ENG/CBET)
According to the current listing, eligibility includes: Universities, Nonprofits, State/local governments, For-profit organizations, Individuals. Confirm the full requirements in the official notice before applying.
Engineering Biological and Biomedical Systems Program is funded by NSF Division of Chemical, Bioengineering, Environmental and Transport Systems. Verify program details on the funder's official page before applying.
Yes — this listing is flagged as national in scope, so applicants across the U.S. may apply, subject to the sponsor's other eligibility criteria.
Applications go through the funder's official portal — the Apply Now link on this page goes there directly.
MGPV Travel Grant is sponsored by Geological Society of America (GSA), Mineralogy, Geochemistry, Petrology, Volcanology Division. MGPV Travel grants support student travel to the annual GSA meeting. Applications are restricted to active graduate or undergraduate students who are the presenting authors of an accepted abstract at the annual GSA meeting.
Research Opportunities in Space and Earth Science (ROSES) - 2025: A.4 Rapid Response and Novel Research in Earth Science is sponsored by National Aeronautics and Space Administration (NASA) Science Mission Directorate (SMD). This omnibus research funding opportunity includes various program elements, with rolling submissions for Earth Science research through August 2026. Proposers to Earth Science using the NASA Center for Climate Simulation high-end computing facility must include specific budget details.
NSF's Arctic Research Opportunities solicitation funds roughly 75 awards a year — up to $50 million — across six program areas from natural sciences to social sciences to the Arctic Observing Network. The July 15, 2026 target date is not a hard deadline, and understanding that distinction is the first strategic decision an Arctic researcher makes. Here is how the six doors differ and how to choose the right one.
Read articleTCUP lists eight funding tracks and roughly $10.3M a year, but the October 14, 2026 deadline applies to only three of them — CHAI, Pre-TI, and TCUP Partnerships — and each carries a restriction that disqualifies most applicants. Here is the track-by-track math.
Read articleNSF 26-513 makes roughly $100 million available for up to 10 State and Regional AI Infrastructure Hubs at $4M to $12M each over five years. One award per state or multi-state region. One proposal per organization. And NSF is not buying you GPUs — it funds the coordination, the workforce and the faculty training, while the compute has to come from partners you have to already have.
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