Project Grant R01AG086058
- This Project Grant award from the National Institute on Aging (NIA), under the Aging Research program (CFDA 93.866), provides $688,634.00 in funding to The Hospital For Special Surgery Fund, Inc. (dba HSS Foundation) from December 1, 2024 to November 30, 2029. The award supports research to investigate the mechanisms by which the constitutive type-I interferon (IFN-I) response suppresses osteoblastogenesis and bone formation, especially in the context of inflammatory conditions like rheumatoid...
- The National Institutes of Health (NIH) National Institute on Aging (CFDA 93.866 - Aging Research) awarded a $134,325 Project Grant to Weill Medical College of Cornell University to investigate the role of a newly identified skeletal stem cell (SSC) population in the calvarium (skull) in influencing central nervous system immunopathology and the progression of Alzheimer's disease (AD). The research project aims to determine how these calvarial SSCs orchestrate the creation of a unique bone...
- This $146,070 Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) will support research to investigate how the accumulation of senescent cells and their secretory phenotypes impact osteocyte mechanobiology in a 3D bone-mimicking microenvironment. The goals are to: (1) acquire experimental skills and career training to expand the researcher's program into cellular aging/senescence and molecular biology; (2) investigate how local vs. systemic senescent cells and...
- The National Institute on Aging (NIA), under the Aging Research program (CFDA 93.866), awarded a $299,428 Project Grant to WNT Scientific LLC to develop an innovative medical device to treat nonunion fractures in older adults. The device is a biodegradable, controlled-release material designed to promote fracture healing by stimulating angiogenesis (blood vessel formation), which is impaired in elderly patients due to chronic inflammation. The awarded project aims to commercialize this...
- This Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) provides $3,126,515 to Trustees of Indiana University in Indianapolis, IN to conduct research aimed at understanding how the L-BAIBA/FGF23 axis, an interaction between muscle and bone, can be targeted to enhance musculoskeletal health and resilience in aging populations. The research seeks to elucidate the mechanisms by which this muscle-bone signaling pathway becomes dysregulated with age, leading to...
- This $1,610,219 Project Grant award from the National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS), under the Arthritis, Musculoskeletal and Skin Diseases Research federal grant program (CFDA 93.846), will fund a 5-year longitudinal study examining the relationship between muscle quantity, quality, function, and biomarkers with changes in bone density, microarchitecture, and strength in older adults. The University of Pittsburgh will conduct this research, which aims to...
- This Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) provides $437,366 to the University of Louisville to conduct research on the effects of lipid metabolism on stem cell niche homeostasis. The objective is to understand how age-related changes in lipid accumulation and signaling pathways impact the maintenance and function of stem cell niches, with a focus on the Drosophila testis model. The research will test if suppressing the activation of key lipid...
- This $665,970 Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) will support research to investigate how mechanical loading protocols, such as exercise and nutrition, can regulate knee joint health and potentially ameliorate age-related knee osteoarthritis. The award will fund a 5-year research project conducted by an interdisciplinary team at The Spaulding Rehabilitation Hospital Corporation in Massachusetts. The project aims to use innovative approaches,...
- This Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) provides $699,344 to Albert Einstein College of Medicine to investigate the impact of surgical stress on age-related changes and resilience, with a focus on sex differences. The project aims to quantify the spatial, temporal, and sex-dependent effects of surgical stress on aging hallmarks and determine how resilience may modulate these relationships. The 2-year award period runs from September 1, 2025 to...
- The National Institute on Aging (NIA), part of the U.S. Department of Health and Human Services, awarded a $393,750 project grant under the Aging Research Federal Grant Program (CFDA 93.866) to The Ohio State University on August 15, 2025. The grant supports research to determine if geriatric fracture patients have altered macrophage polarization and an imbalanced inflammatory response compared to young patients, which may contribute to impaired fracture healing in the elderly. The project...
DISSECTING THE AGING SKELETAL STEM CELL NICHE - PROJECT SUMMARY MAINTENANCE, REMODELING, AND REPAIR OF THE ADULT BODY IS MEDIATED BY MULTIPOTENT STEM CELLS THAT GIVE RISE TO A VARIETY OF CELL TYPES THAT COMPRISE THE TISSUE IN WHICH THEY RESIDE. DURING AGING, THERE IS A DECLINE IN HOMEOSTATIC AND REGENERATIVE CAPACITY LEADING TO PROGRESSIVE DEGENERATION OF THE STRUCTURE AND FUNCTION OF VITAL ORGANS. IN PARTICULAR, MUSCULOSKELETAL DEGENERATION IS COMMON IN THE ELDERLY AND LEADS TO INCREASED FRACTURE RISK AND REDUCED EFFICIENCY OF FRACTURE REPAIR THAT DRASTICALLY DECREASES QUALITY OF LIFE. OUR PREVIOUS STUDIES SHOWED THAT AN AGE-ASSOCIATED INCREASE IN CHRONIC, LOW-GRADE INFLAMMATION IS THE MAIN CAUSE OF SKELETAL STEM AND PROGENITOR CELL (SSPCS) DYSFUNCTION. THUS, WE HYPOTHESIZE THAT REDUCING PRO-INFLAMMATORY SIGNALS AND ENHANCING ANTI- INFLAMMATORY ACTIVITY WILL RESCUE SSPC NUMBER AND OSTEOGENIC FUNCTION IN AGED INDIVIDUALS. TO INVESTIGATE THIS, WE WILL FIRST PRECISELY DEFINE THE MOLECULAR MECHANISMS REGULATING THE INFLAMMATORY RESPONSE IN SSPCS, AND THE ROLE OF ANTI-INFLAMMATORY FACTORS IN THE RESOLUTION OF INFLAMMATION. WE WILL DETERMINE HOW THESE MECHANISMS AND THE INTERACTION BETWEEN OPPOSING PRO- AND ANTI- INFLAMMATORY SIGNALS IS AFFECTED BY AGING. THESE EXPERIMENTS WILL GENERATE INSIGHTS INTO THE ELEMENTS DRIVING BONE DEGENERATION AND IDENTIFY THERAPEUTIC TARGETS TO IMPROVE BONE HEALTH AND FRACTURE REPAIR IN ELDERLY PATIENTS. OUR STRONG PRELIMINARY EXPERIMENTS ALSO IDENTIFIED TWO PRIME SUSPECTS INVOLVED IN SSPC DETERIORATION DURING AGING. WE WILL PERFORM GAIN AND LOSS OF FUNCTION EXPERIMENTS IN SSPCS TO ELUCIDATE THEIR SPECIFIC ROLE IN THE CONTROL OF STEM CELL SELF-RENEWAL AND DIFFERENTIATION. AS MANIPULATION OF THESE FACTORS CAN AFFECT THE EXTRACELLULAR INFLAMMATORY MILIEU, WE WILL USE SINGLE-CELL RNA-SEQUENCING TO DETERMINE THEIR CELL-INTRINSIC FUNCTION IN SSPCS AND ALSO THEIR INFLUENCE ON DEFINED POPULATIONS WITHIN THE LOCAL NICHE. FINALLY, WE WILL MANIPULATE CANDIDATE EXPRESSION FOLLOWING INJURY IN AGED ANIMALS TO ASSESS THEIR ABILITY TO RESCUE STEM CELL REGENERATIVE CAPACITY AND IMPROVE BONE HEALING.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $52.6k | 6/20/25 | ||
| Not listed | $591.4k | 4/18/25 | ||
| Not listed | $591.4k | 4/18/25 | ||
| Not listed | $657.1k | 7/18/24 | ||
| Not listed | $657.1k | 7/18/24 |