Grants for Native American tribal organizations - Federal
Explore 3,820 grant opportunities
Application Deadline
Sep 7, 2025
Date Added
Mar 30, 2023
This funding opportunity supports research on the long-term lung health effects of tuberculosis treatment, particularly for individuals co-infected with HIV, aiming to improve understanding and management of post-TB lung disease.
Application Deadline
May 24, 2024
Date Added
Mar 26, 2024
The Regional Alliances and Multistakeholder Partnerships to Stimulate (RAMPS) Cybersecurity Education and Workforce Development (RAMPS) Program seeks to build multistakeholder workforce partnerships of employers, schools and institutions of higher education, and other community organizations. Effective multistakeholder workforce partnerships will organize multiple employers with skill shortages in specific occupations to focus on developing the skilled workforce to meet industry needs within the local or regional economy.
Application Deadline
Jun 6, 2025
Date Added
Dec 6, 2024
This funding opportunity supports research projects that investigate the health effects and regulatory implications of tobacco products, particularly focusing on diverse populations affected by tobacco use.
Application Deadline
Mar 17, 2025
Date Added
Jun 5, 2023
This grant provides funding for researchers to explore innovative ways to use genomics to improve health equity in U.S. populations, particularly encouraging projects from new and diverse investigators.
Application Deadline
Nov 19, 2024
Date Added
Aug 20, 2024
This grant provides funding for research projects that investigate how environmental factors, such as toxins and pathogens, impact the mechanisms and outcomes of Alzheimer's Disease-Related Dementia through interactions at biological interfaces in the human body.
Application Deadline
Aug 1, 2025
Date Added
Jun 19, 2025
This grant provides funding to community-based organizations that offer culturally specific services to support survivors of domestic violence, dating violence, sexual assault, and stalking.
Application Deadline
May 1, 2025
Date Added
Aug 24, 2022
This funding opportunity provides financial support for early-stage researchers in the U.S. to explore innovative studies on HIV-related health issues, such as comorbidities and coinfections, with the potential to transform understanding and treatment in this field.
Application Deadline
May 6, 2024
Date Added
Mar 12, 2024
With this solicitation, BJA seeks to support state, local, and tribal governments, as well as community-based nonprofit organizations, to establish, expand, or improve treatment and recovery support services for people with substance use disorders (SUDs) during their incarceration and upon reentry into the community. This program seeks to reduce crime and recidivism, expand access to evidence-based treatment, and promote long-term recovery for people leaving incarceration, and, in the process, improve public safety and public health.
Application Deadline
Jul 26, 2024
Date Added
Sep 1, 2023
The purpose of this initiative is to advance research that reduces firearm injury and disparities through the development and evaluation of firearm injury primary prevention interventions leveraging community healthcare settings. This funding opportunity solicits applications that focus on primary prevention of firearm injury leveraging community healthcare settings. Applications may propose intervention studies with a rigorous design including, but not limited to, policy implementation studies, natural experiments and other studies with a quasi-experimental design, as well as those meeting the NIH definition of a clinical trial. Aims may focus on efficacy, effectiveness, or hybrid effectiveness/implementation research. Health or behavioral outcomes for this funding opportunity should be appropriate to the aims and should include, but are not limited to, changes in behavior related to firearm injury prevention and firearm safety procedures, and implementation outcomes. Change in knowledge of firearm injury prevention measures may be a secondary outcome (e.g., as a mechanism of action) but should not be the focus of the project. Multi-level, multi-disciplinary interventions and outcomes are encouraged, including individual, interpersonal, organizational, and community levels. Individual level outcomes should be one of the outcome levels included. Rigorous methods that address potential sources of bias that are appropriate to the study design are expected. Intervention studies are expected to include a theory-informed examination of the mechanisms of intervention effects. Projects that are responsive to this funding opportunity include R01 studies of all size, from small, single-site, three-year projects such as to adapt an intervention to the community or to test efficacy of an intervention, to large multi-site trials to test effectiveness and implementation strategies. Applications that meet any of the non-responsiveness criteria will be considered non-responsive and will not be reviewed. Implementation studies should include an evaluation of the effectiveness of the intervention in the site or sites. Years requested and project budgets should reflect the scope of the project. A description of plans for community engagement, including clear justification of the planned approach, is required. Projects that focus on populations that experience health disparities are highly encouraged.
Application Deadline
Jun 18, 2025
Date Added
Apr 4, 2025
This grant provides funding for innovative research to develop noninvasive techniques that improve sleep quality and cognitive performance for military personnel facing extreme sleep deprivation.
Application Deadline
Jul 15, 2025
Date Added
May 19, 2025
This funding opportunity supports state and local governments, port authorities, and private operators in developing marine transportation projects that provide efficient alternatives to congested land-based systems.
Application Deadline
Oct 17, 2024
Date Added
Jul 6, 2022
The "CCRP Initiative: Countermeasures Against Chemical Threats (CounterACT) Therapeutics Discovery and Early-Stage Development" grant aims to fund the early-stage development of treatments to reduce the harmful health effects caused by exposure to toxic chemicals, which could be used in terrorist attacks or accidentally released from industrial sites, with the end goal of producing at least one well-characterized therapeutic candidate.
Application Deadline
Nov 7, 2025
Date Added
May 28, 2025
This funding opportunity is designed to support research centers in developing innovative vaccines against hepatitis C virus, targeting a wide range of applicants including universities, nonprofits, and government entities.
Application Deadline
Jul 5, 2024
Date Added
Sep 3, 2021
Through this Funding Opportunity Announcement (FOA), the National Cancer Institute (NCI) invites applications for support of investigator-initiated studies addressing mechanisms by which bariatric surgery impacts cancer risk, and seeks to draw in talented scientists who study bariatric surgery to investigate its effects on cancer, rather than shorter-term outcomes such as weight loss and diabetes.Through this Funding Opportunity Announcement (FOA), the National Cancer Institute (NCI) invites applications for support of investigator-initiated studies addressing mechanisms by which bariatric surgery impacts cancer risk, and seeks to draw in talented scientists who study bariatric surgery to investigate its effects on cancer, rather than shorter-term outcomes such as weight loss and diabetes. Background Obesity: Obesity will soon surpass smoking tobacco as the number one cause of preventable death both in the United States and worldwide. Bariatric (metabolic) surgery is the most effective strategy to achieve significant initial and sustained weight loss among individuals who are morbidly obese. Bariatric surgery provides dramatic improvement in metabolic function, associated with a reduction in type 2 diabetes mellitus (T2DM) and cardiovascular (CV) risk. Bariatric surgery also appears to reduce the risk of certain obesity-related cancers, although which cancers are favorably impacted vary by study, and the mechanism(s) driving this risk reduction is mostly speculative. Bariatric surgery is performed in over 250,000 people in the U.S. annually, and the frequency is rising. Studies evaluating which bariatric surgery procedure(s) are most effective in cancer risk reduction could help bring to light new pathways to target for cancer prevention. Bariatric Surgery: Importantly, it is not yet clear from clinical and preclinical studies if the benefit from bariatric surgery arises from weight loss alone or if there is also a surgery-specific benefit. One mechanism for a possible surgery-specific effect is elevated bile acids (BA), both intestinal and circulating, after gastric bypass surgery such as Roux-en-Y gastric bypass (RYGB) that are proposed to be central to weight loss and other metabolic benefits. The interaction between BA and intestinal microbes is also an area of intense interest. Studies have identified important changes after bariatric surgery in the composition and function of the gut microbiome, which may mediate bariatric surgery effects. Fecal microbiota transplantation (FMT) from humans or mice that had undergone bariatric surgery to germ-free recipient mice showed decreased weight gain and decreased adiposity are both transmissible traits. In addition, FMT induced important host metabolic changes including decreased energy harvest from the diet, increased resting energy expenditure, and increased lipid utilization. The data suggest a causal link between gut microbiota and the metabolic and weight loss effects of bariatric surgery. If validated, the findings will provide insight into the mechanisms driving the benefit of bariatric surgery on cancer risk and would be useful to further scientific understanding and patient care. Animal Models: Several diets or genetically induced animal models of obesity have consistently demonstrated the benefits of weight loss on cancer risk, and these obesity-induced tumor models may be adaptable to bariatric surgery studies, such as the Kras model of pancreatic cancer. Animal models have been developed to study the effects of bariatric surgery. Rodent animal models are most often used due to feasibility (low cost, ease of housing) and have been used extensively to study the mechanism(s) of bariatric surgery responsible for the reduction or elimination of T2DM and CV risk. However, very little has been reported on bariatric surgery and cancer risk despite the fact that both rat and murine models of mammary and other cancers develop in 6 months or less, making it feasible to assess mechanistic changes that influence cancer risk. Bariatric Surgery and Cancer Risk: Obese patients undergo bariatric surgery for a variety of reasons, including weight loss and improvement in metabolic dysfunction. Physician advice regarding the potential benefit of bariatric surgery and cancer risk reduction can currently only be given in generalities based on large-scale studies and not targeted to the individual. Many but not all bariatric surgery investigations document an overall cancer risk reduction among women but not men. Some but not all bariatric surgery studies have found that both women and men undergoing bariatric surgery have an increased risk of colorectal cancer (CRC). Older studies which assessed bariatric surgery and cancer risk may not be useful to guide targeted advice to patients, as one of the most common procedures performed in the past, gastric banding, is only performed in 1% of bariatric surgery procedures today. The two most common bariatric surgery procedures currently performed are sleeve gastrectomy and RYGB. As such, planned animal and/or human studies should focus on the mechanistic effects of the two procedures that are currently in common use. Human biospecimens and/or data may be available from cohorts to enhance the studies proposed including the Longitudinal Assessment of Bariatric Surgery (LABS), Adolescent Bariatrics: Assessing Health Benefits & Risks (Teen-LABS), and NCI Cohort Consortium Members. Applications that include collaborators from fields outside of cancer research will be given special programmatic consideration. Responsive applications may investigate animal models, human studies, or a combination of both. General Area of Research and Scope of Work for this FOA General Area of Research Examples of relevant areas of research include but are not limited to: Do alterations in cancer risk biomarkers occur before weight loss? If so, in what organ, tissue, or cell type do they originate? Is maximum weight loss or long-term weight loss more important for cancer risk reduction? If so, how do the two differ at a cellular and/or biochemical level? What mechanism(s) explain the evidence that bariatric surgery is more beneficial in cancer risk reduction in women than men? Does bariatric surgery increase or decrease the risk of CRC, and if so, what are the mechanism(s)? Which cancers are decreased in incidence by bariatric surgery, and what are the mechanism(s) that explain the effect? Are any cancers increased in incidence by bariatric surgery? If so, through what mechanism(s)? Does the specific bariatric surgery procedure have an impact on cancer risk? If so, what are the mechanism(s) driving the difference in impact? Does racial or ethnic background influence the impact of bariatric surgery on cancer risk, and if so, what are the mechanism(s) involved? How does bariatric surgery affect the penetrance of high-risk genetic predisposition to cancer? Scope of Work and Additional Guidance It is anticipated that studies will evaluate bariatric surgery animal models where a significant proportion of the animals develop cancer. Similarly, human studies involving individuals who will or have undergone bariatric surgery are also encouraged, so long as within the cohort to be studied the number of enrolled subjects who develop cancer is adequate to for a statistically powered endpoint linking cancer (and not a biomarker of cancer) to a molecular mechanism as the driver of cancer. When appropriate and feasible, the investigators may want to evaluate mechanisms influenced by bariatric surgery in animal models of cancer and evaluate potential changes that might correlate with humans due to bariatric surgery. We define mechanism as a biologic endpoint based on analyzed samples from bariatric surgery animal models or from subjects who have or are planned to undergo bariatric surgery. This FOA does not support studies where an epidemiologic endpoint is the primary aim of the project. The mechanism(s) to be studied should evaluate samples collected from animals or humans who have undergone bariatric surgery who did or did not develop cancer. If both animals and humans are studied, the mechanisms chosen should be based on a cancer endpoint. Applications Not Responsive to This FOA The following types of activities remain outside the scope of this FOA, and applications proposing them are non-responsive to this FOA and will not be reviewed. This FOA is not intended for epidemiologic studies, where the primary endpoint is the assessment of cancer in a cohort of animals or humans, which has undergone bariatric surgery and mechanistic studies evaluating bodily fluid or tissue samples are nonexistent or of secondary endpoints. Application that focuses entirely on in vitro investigations. Epidemiologic investigations as the primary focus of the application. Animal or human studies that do not evaluate tissue and/or bodily fluid samples collected from participants who have undergone bariatric surgery, some of which developed cancer after surgery. Application, which includes a clinical trial that does not have a bariatric surgeon as a key investigator on the team. NOTE: Applicants to this FOA are strongly encouraged to contact NCI staff as soon as possible in the development of the application (preferably no later than 12 weeks prior to the application due date) to discuss the details of their proposed clinical trial, so that NCI staff can help the applicant understand whether the proposed clinical trial is within the goals and mission of the NCI and is appropriate for this FOA.
Application Deadline
Feb 16, 2025
Date Added
May 10, 2022
This funding opportunity provides financial support for research projects that aim to improve the adoption and sustainability of effective health interventions, particularly in underrepresented communities, by addressing barriers and promoting equitable health outcomes.
Application Deadline
Mar 7, 2025
Date Added
Dec 27, 2024
This funding opportunity supports clinical trials for innovative treatments and interventions targeting Alzheimer's disease, related dementias, and age-related cognitive decline, inviting applications from a wide range of eligible organizations, including universities, nonprofits, and small businesses.
Application Deadline
Oct 16, 2025
Date Added
May 12, 2025
This funding opportunity supports a wide range of organizations in developing and sharing innovative neuroscience technologies to enhance research and understanding of brain function.
Application Deadline
Nov 1, 2024
Date Added
Mar 22, 2024
This funding opportunity provides financial support to state and local governments, tribal entities, and planning organizations for bridge replacement, rehabilitation, and planning projects to improve transportation infrastructure across the nation.
Application Deadline
May 15, 2024
Date Added
Feb 10, 2024
The Distributed Array of Small Instruments (DASI) solicitation is designed to address the increasing need for high spatial and temporal resolution measurements to determine the local, regional, and global scale processes that are essential for addressing the fundamental questions insolar and space physics. This solicitation will be formally divided into two tracks: 1) development of instrumentation for future deployment in arrays and 2) deployment and operation of existing instruments in distributed arrays.This DASI solicitation emphasizes both strong scientific merit and a well-developed plan for student training and involvement of a diverse workforce.
Application Deadline
Apr 1, 2025
Date Added
Mar 14, 2025
This funding opportunity provides financial support for educational and non-profit institutions to conduct innovative energy-related research that benefits Air and Space Force operations, with a focus on emerging technologies in areas like bio-agile energy, metamaterials, electrochemistry, and space architectures.
