Project Grant R01AG083512

Award Date 6/1/24
Completion Date 2/28/29
Dollars Obligated $3.7M
Federal Grant Program
93.866
Assistance Type
Project Grant
Place of Performance
New York, NY 10065, USA
Similar Awards
This $5,026,306 federal Project Grant award from the National Institute on Aging (CFDA 93.866 Aging Research) aims to develop a novel disease-modifying compound for Alzheimer's disease (AD) by targeting the underlying mechanism of synapse loss. The primary objectives are to: Conduct clinical evaluation of the small molecule treatment BMS-984923 to demonstrate a robust safety profile and complete receptor occupancy at low doses, supporting advancement to Phase 2 proof-of-concept studies. Leverage...
This federal Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) provides $500,000.00 to Alzarrok Bio LLC to develop a peptide-based multi-target drug for Alzheimer's disease (AD). The goal is to demonstrate the in vivo efficacy of the drug candidate, ALZ100, in inhibiting neuroinflammation and neurodegeneration in an AD mouse model. The project will first determine the therapeutic concentration of ALZ100 in the brain and then evaluate its effects on key...
This Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) provides $499,883 to Degrome Therapeutics, Inc. to develop small-molecule degraders of the amyloid precursor protein (APP) as novel therapeutics for Alzheimer's disease (AD). The project aims to optimize lead APP degrader compounds to improve their potency, solubility, and blood-brain barrier permeability, with the goal of identifying the most promising candidates for further development and evaluation...
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...
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...
This Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) to Jillion Therapeutics Inc. aims to identify small molecule compounds that can bind to and modify the biological behavior of tau protein, which is implicated in Alzheimer's disease and other neurodegenerative "tauopathies". The $496,373 award, spanning September 2024 to August 2025, will utilize the company's DNA-encoded library (DEL) drug discovery platform to screen a large chemical...
This Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) provides $426,250 to Wake Forest University Health Sciences to develop and evaluate a novel positron emission tomography (PET) radiotracer, [11C]TM-N1324, to measure levels of the G-protein coupled receptor GPR39 in rodent models and postmortem human brain tissues of Alzheimer's disease (AD). The project aims to establish the utility of this PET imaging approach for quantifying GPR39, which is implicated...
This Cooperative Agreement award, valued at $3,474,488.00 and issued by the National Institute on Aging (CFDA 93.866 - Aging Research), supports the development of a small-molecule EP2 receptor antagonist to treat Alzheimer's disease. The primary awardee, Emory University, is leading efforts to define the pharmacokinetic and pharmacodynamic relationships of the lead EP2 antagonist candidates on Alzheimer's pathology markers in mouse models, as well as conducting additional IND-enabling drug...
This Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) provides $1,012,534 to Eydis Bio, Inc. to develop orally bioavailable and blood-brain barrier penetrant, small molecule TAK1 inhibitors as a novel treatment for Alzheimer's disease. The Phase I STTR grant builds on the company's foundational studies demonstrating the therapeutic potential of targeting TAK1, a critical mediator of non-canonical signaling and neuronal necroptosis in Alzheimer's disease...
This $3.38 million project grant from the National Institutes of Health's National Institute on Aging will fund research to repurpose FDA-approved agonists of the HCAR2 receptor as novel therapeutics for Alzheimer's disease. The grantee, Indiana University Iupui, will conduct preclinical studies using the 5XFAD mouse model of Alzheimer's disease to evaluate the therapeutic efficacy and pharmacological targets of the FDA-approved drugs niaspan and dimethyl fumarate in modulating microglial...

DISCOVERY OF FIRST-IN-CLASS SMALL MOLECULE TREM2 LIGANDS AS THERAPEUTICS FOR ALZHEIMER'S DISEASE - PROJECT SUMMARY/ABSTRACT: MICROGLIAL-MEDIATED NEUROINFLAMMATION HAS LONG BEEN RECOGNIZED AS A PATHOLOGICAL HALLMARK OF THE PROGRESSION OF ALZHEIMER'S DISEASE (AD). ALTHOUGH MANY ANTI-INFLAMMATORY DRUG CANDIDATES HAVE UNDERGONE CLINICAL TRIALS AS POTENTIAL AD THERAPEUTICS, MOST HAVE FAILED. TRIGGERING RECEPTOR EXPRESSED ON MYELOID CELLS 2 (TREM2) IS A MICROGLIA-SPECIFIC RECEPTOR THAT MEDIATES INTRACELLULAR CASCADES TO MODULATE THE PRODUCTION OF INFLAMMATORY CYTOKINES AND THE PHAGOCYTOSIS OF AMYLOID (A) PLAQUES. THE INTERACTION OF TREM2 WITH GALECTIN-3 (GAL-3) STIMULATES PROINFLAMMATORY ACTIVATION OF MICROGLIA AND REPRESENTS A PROMISING TARGET FOR DEVELOPING AD THERAPEUTICS THAT CAN ALLEVIATE NEUROINFLAMMATION. IN ADDITION, STABILIZING TREM2/A INTERACTION HAS BEEN REPORTED TO ENHANCE TREM2-MEDIATED A PHAGOCYTOSIS IN VIVO. HOWEVER, TARGETING TREM2 IS CURRENTLY RESTRICTED TO ANTIBODIES (ABS), AND THERE ARE NO SMALL MOLECULES IN EXISTENCE THAT TARGET TREM2. TO FILL THIS GAP, WE HAVE DEVELOPED AN INNOVATIVE PLATFORM, SMALL MOLECULES FROM ANTIBODY PHARMACOPHORES (SMAPS), THAT CAN IDENTIFY SMALL MOLECULE LIGANDS FOR IMMUNE CELL RECEPTORS WITH HIGH BINDING AFFINITY AND SELECTIVITY. OUR SMAPS PLATFORM IS BASED ON UTILIZING COCRYSTAL STRUCTURES OF IMMUNE CELL RECEPTORS WITH ABS IN BUILDING PHARMACOPHORE MAPS FROM CLUSTERS OF KEY INTERACTING RESIDUES OF ABS WITH IMMUNE CELL RECEPTORS TO IDENTIFY SMALL MOLECULES THAT MODULATE THE FUNCTION OF IMMUNE CELL RECEPTORS. WE PROPOSE TO ESTABLISH A NEW MICROGLIAL MODULATING STRATEGY TO TREAT AD BASED ON THERAPEUTIC TARGETING OF TREM2 WITH SMALL MOLECULES IDENTIFIED FROM THE SMAPS PLATFORM. WE IDENTIFIED A FOCUSED CHEMICAL LIBRARY USING OUR PHARMACOPHORE-BASED VIRTUAL SCREENING APPROACH (SMAPS) BASED ON INTERACTIONS DERIVED FROM A COCRYSTAL STRUCTURE OF TREM2 AND ANTI-TREM2 AB SINGLE-CHAIN VARIABLE FRAGMENT (SCFV) (PDB ID: 6Y6C). IN COMPARISON TO ABS, SMALL MOLECULES CAN READILY CROSS THE BLOOD-BRAIN BARRIER (BBB) AND ARE AMENABLE TO PHARMACOKINETIC OPTIMIZATION, WHICH MAY ENABLE AVOIDING IMMUNE-RELATED ADVERSE EVENTS ASSOCIATED WITH ABS. BUILDING ON OUR SUCCESSFUL WORK IN ESTABLISHING SCREENING PLATFORMS FOR TREM2-TARGETED SMALL MOLECULES, WE HYPOTHESIZE THAT SMALL MOLECULES CAN BIND A NOVEL DRUGGABLE BINDING SITE IN TREM2, CONSEQUENTLY ENABLING THERAPEUTIC MODULATION OF TREM2 INTERACTION WITH BOTH GAL-3 AND A. WE WILL TEST OUR HYPOTHESIS AND ATTAIN OUR OBJECTIVE VIA THE FOLLOWING SPECIFIC AIMS: (1) SCREENING THE FOCUSED CHEMICAL USING A PANEL OF CELL-FREE AND CELL-BASED ASSAYS, FOLLOWED BY HIT-TO- LEAD OPTIMIZATION, AND (2) EVALUATION OF THE OPTIMIZED LEADS IN AN AD MOUSE MODEL FOLLOWING AN ASSESSMENT OF THEIR PHARMACOKINETIC (PK) PROFILES. THIS RESEARCH WILL LAY THE GROUNDWORK FOR THE THERAPEUTIC MODULATION OF TREM2 FUNCTION USING SMALL MOLECULES TO DEVELOP NEW AD THERAPEUTICS.

Posted 5/29/24, 12:00 AM