Project Grant R43AG080954
- This Project Grant award from the National Institute on Aging (NIA) under the Aging Research program (CFDA 93.866) provides $156,000 to Thomas Jefferson University, doing business as Sidney Kimmel Medical College, to develop novel therapeutic strategies for suppressing the cGAS-STING pathway in Alzheimer's disease (AD). The project aims to generate intrabodies to neutralize RNA::DNA hybrids that activate the cGAS-STING pathway, leading to neuroinflammation and neuronal death in AD cell models....
- This Project Grant award from the National Institute on Aging's Aging Research program (CFDA 93.866) provides $2,181,250 in funding to the Seattle Institute For Biomedical And Clinical Research to develop small molecule inhibitors of the MSUT2 protein as a potential therapeutic approach for treating tauopathy disorders such as frontotemporal lobar degeneration, Alzheimer's disease, and related conditions. The project aims to optimize potent and brain-penetrant MSUT2 inhibitors and demonstrate...
- Federal Cooperative Agreement Award Summary Award Overview Artery Therapeutics, Inc. received a $2.64 million Cooperative Agreement from the National Institute on Aging (NIA) under the Aging Research program (CFDA 93.866), awarded February 15, 2026, with an ultimate completion date of March 15, 2028. The awardee will conduct clinical research and development services for CS6253, an ABCA1 (ATP-binding-cassette-transporter A1) agonist therapeutic candidate targeting hereditary APOE4...
- Federal Project Grant Award Summary Artery Therapeutics, Inc. received a $2.45 million Project Grant from the National Institute on Aging under the Aging Research program (CFDA 93.866) awarded September 10, 2025, with completion targeted for August 31, 2026. The primary deliverable is the manufacturing of approximately 2.3 kilograms of Good Manufacturing Practice (GMP)-compliant CS6253, an ATP-binding cassette transporter A1 (ABCA1) agonist small molecule peptide, to support chronic toxicology...
- Federal Grant Award Summary Glial Therapeutics, LLC received a $254,896 Phase I Small Business Technology Transfer (STTR) award from the National Institute on Aging (NIA) under the Aging Research program (CFDA 93.866), with an award date of September 20, 2025, and a completion date of May 31, 2027. The award supports research and development activities focused on investigating ADWA11, a humanized monoclonal antibody designed to inhibit the αvβ8 integrin (ITGB8) as a potential therapeutic...
- This federal Project Grant award from the National Institute on Aging's Aging Research program (CFDA 93.866) provides $499,441 to Acepre, LLC to develop a novel brain-targeted delivery system for the compound N-acetylcysteine (TN-NAC) as a potential treatment for Alzheimer's disease (AD). The key objectives of this Phase I STTR study are to: 1) evaluate the toxicity and pharmacokinetic properties of TN-NAC in mice, and 2) test the therapeutic efficacy of TN-NAC in a 3xTG-AD mouse model of...
- Summary This Cooperative Agreement, awarded by the National Institute on Aging (NIA) under the Aging Research program (CFDA 93.866), funds UC San Diego to conduct in vitro pharmacology, chronic toxicology, and embryo-fetal development studies to demonstrate the safety profile of GSM-779690, a small molecule G-secretase modulator (GSM) candidate therapeutic for Alzheimer's disease. The award totals $3,225,280 and runs from August 15, 2025, through July 31, 2027. The research aims to support...
- Federal Grant Award Summary Aivocode, Inc. received a $1.24 million Phase II Project Grant from the National Institute on Aging under the Aging Research program (CFDA 93.866), awarded on September 20, 2025, with a completion date of May 31, 2027. The grant funds the development and preclinical testing of single domain antibodies (SDAs) targeting Connective Tissue Growth Factor (CTGF) as a therapeutic intervention for Alzheimer's disease (AD)-related vascular dysfunction. The company will...
- Federal Grant Award Summary Alphamemory, LLC received a Phase I Small Business Technology Transfer (STTR) award of $504,248 from the National Institute on Aging under the Aging Research program (CFDA 93.866), effective September 20, 2025, through September 19, 2027. The award supports drug discovery research targeting the amyloid precursor protein transmembrane domain as a substrate of gamma-secretase to achieve selective amyloid reduction for Alzheimer's disease treatment. The project...
- Federal Project Grant Award Summary Novoron Bioscience Inc. received a $1.26M project grant from the National Institute on Aging under the Aging Research program (CFDA 93.866) awarded September 16, 2025, with completion targeted for May 31, 2027. The company will develop a human induced pluripotent stem cell (iPSC)-derived neural organoid platform to screen pharmaceutical compounds designed to inhibit tau protein propagation and aggregation in Alzheimer's disease and related tauopathies. The...
OPTIMIZING VIRTUAL HITS OF HUMAN CGAS INHIBITORS TO TREAT NEURODEGENERATION - ABSTRACT AETON THERAPEUTICS IS DEVELOPING INHIBITORS OF CGAS (CYCLIC GMP-AMP SYNTHASE)-A PATTERN RECOGNITION RECEPTOR THAT ACTIVATES STING AND RESULTS IN THE PRODUCTION OF INTERFERON (IFN)-SS-AS NOVEL THERAPIES FOR THE TREATMENT OF ALZHEIMER'S DISEASE (AD). AD IS THE MOST COMMON FORM OF LATE-ONSET DEMENTIA AND AFFECTS NEARLY 50 MILLION PEOPLE WORLDWIDE AND AN ESTIMATED 5.7 MILLION AMERICANS. IN 2020, TOTAL PAYMENTS FOR HEALTHCARE, LONG-TERM CARE, AND HOSPICE SERVICES FOR PEOPLE AGED 65 AND OLDER WITH DEMENTIA WERE ESTIMATED TO BE $305 BILLION. THE COGNITIVE DECLINE ASSOCIATED WITH AD CORRELATES WITH THE FORMATION OF AMYLOID SS (ASS) PLAQUES AND NEUROFIBRILLARY TANGLES COMPOSED OF HYPERPHOSPHORYLATED TAU IN THE BRAIN. AETON THERAPEUTICS SEEKS TO PRODUCE A NOVEL THERAPEUTIC FOR AD BY DEVELOPING CGAS INHIBITORS (CGASI'S). CGAS IS A CYTOSOLIC DNA SENSING PROTEIN THAT HAS BEEN LINKED TO A NUMBER OF NEURODEGENERATIVE AND INFLAMMATORY DISEASES. UPON SENSING DNA IN THE CYTOSOL (DUE TO THE PRESENCE OF PATHOGENS, GENOMIC/MITOCHONDRIAL DAMAGE, OR OTHER PATHOLOGICAL MECHANISMS), CGAS CATALYZES ATP/GTP COUPLING TO PRODUCE 2'3'-CGAMP, A POTENT LIGAND OF STING, RESULTING IN THE PRODUCTION OF IFN-SS. PREVIOUS STUDIES SUGGEST THAT CGAS IS ABERRANTLY ACTIVATED IN A TAUOPATHY MOUSE MODEL, RESULTING IN AN IFN RESPONSE AND NEUROTOXIC CHRONIC NEUROINFLAMMATION. IN CONTRAST, GENETIC ABLATION OF CGAS IN PS19 MICE, WHICH OVEREXPRESS P301S MUTANT TAU AND DEVELOP TAU PATHOLOGY AND COGNITIVE DEFICITS, PROTECTS AGAINST THOSE COGNITIVE DEFICITS AND THE LOSS OF HIPPOCAMPAL SYNAPSES. THESE FINDINGS STRONGLY SUPPORT THE DEVELOPMENT OF CGASI'S TO PROTECT AGAINST THE NEGATIVE EFFECTS OF CGAS-STING HYPERACTIVATION, BUT EXISTING COMPOUNDS EXHIBIT ONLY MODEST POTENCY IN INHIBITING THE CGAS-STING PATHWAY IN HUMAN THP1 MYELOID CELLS. TO DEVELOP NOVEL CGASI'S TO TREAT TAU-MEDIATED NEURODEGENERATION IN AD, IN THIS PHASE I PROJECT, AETON THERAPEUTICS PROPOSES THE FOLLOWING AIMS: AIM 1. DEVELOP POTENT H-CGASI'S VIA MEDICINAL CHEMISTRY OF VIRTUAL HITS 1 AND 2. WE HAVE IDENTIFIED PROMISING HITS VIA A VIRTUAL SCREEN. WE WILL PERFORM OPTIMIZATION AND IN VITRO ASSESSMENT OF H- ANALOGS TO IDENTIFY LEAD CANDIDATES. AIM 2. DETERMINE PK, TARGET ENGAGEMENT, AND EFFICACY OF H-CGASI'S IN HUMAN IPSC-DERIVED MICROGLIA AND ORGANOID MODEL. THE TWO BEST LEADS SHOWING HIGH BRAIN EXPOSURE WILL BE ASSESSED IN PK STUDIES IN WILD-TYPE MICE AND EVALUATED IN HUMAN IPSC-DERIVED MICROGLIA AND ORGANOIDS. LEAD H-CGASI'S MUST REDUCE KEY BIOMARKERS, SUCH AS CXCL4, IFNB, AND TBK1/PTBK1. WE EXPECT TO IDENTIFY AT LEAST ONE LEAD H-CGASI THAT REDUCES KEY BIOMARKERS IN CELLS AND ORGANOIDS, IS BRAIN PERMEABLE, SHOWS NO TOXICITY IN MICE, AND DOES NOT HAVE OFF-TARGET EFFECTS. THIS WILL LEAD TO DEVELOPMENT OF NOVEL CGASI'S THAT ARE LIKELY TO REPROGRAM TOXIC MICROGLIAL RESPONSES AND PROTECT AGAINST TAU-RELATED COGNITIVE DECLINE.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | 0$ | 8/8/25 | ||
| Not listed | $499.5k | 4/10/23 |