Project Grant R41AG084421

Award Date 9/1/23
Completion Date 8/31/24
Dollars Obligated $500K
Federal Grant Program
93.866
Assistance Type
Project Grant
Place of Performance
California, USA
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This $500,000 Project Grant was awarded by the National Institute on Aging under the Aging Research federal grant program (CFDA 93.866) to Neucyte Inc., a minority-owned small business. The funding supports the development of a nanoluciferase-based microphysiological systems (MPS) platform to enable high-throughput screening of potential Alzheimer's disease (AD) and AD-related dementia (ADRD) therapeutics. Neucyte will leverage human induced pluripotent stem cell technology to create scalable,...
The National Institute on Aging, through its Aging Research Federal Grant Program (CFDA 93.866), awarded a Project Grant totaling $1,931,965 to the Regenerative Research Foundation to develop and validate a human induced pluripotent stem cell (iPSC) model that incorporates cerebral cortical neurons, glia, vascular endothelial cells, and microglia. The goal is to create an advanced 3D cellular model with improved construct, face, and predictive validity for studying the cerebrovascular...
This federal Project Grant award of $2,683,965 from the National Institute of Neurological Disorders and Stroke (NINDS) under the Extramural Research Programs in the Neurosciences and Neurological Disorders (CFDA 93.853) supports the development and optimization of an all-human cellular "brain-chip" system to study the mechanisms underlying Alzheimer's disease (AD) and related dementias (ADRD). The grant will enable the awardee, Brigham & Women's Hospital Inc., to: Define the...
This $500,000 Project Grant awarded by the National Institute on Aging (CFDA 93.866 Aging Research) will support Sxrna Technologies, Inc. in developing an organoid toolkit for Alzheimer's disease (AD) and Alzheimer's-disease-related dementias (ADRD). The company aims to create a platform for identifying senescent cells in living tissue, which can provide insights into the aging process and enable high-throughput drug screening in complex 3D tissue models. Specifically, the grant will fund...
This Project Grant award from the National Institute on Aging (CFDA 93.866 Aging Research) provides $473,216 to MCM6 Therapeutics, Inc. to conduct a high-content screen to identify small molecule therapeutics that can reduce aberrant lipid accumulation in ApoE4-expressing oligodendrocytes, which is a key pathological feature of Alzheimer's disease. The project aims to adapt an existing screening assay to a higher-throughput 384-well format and perform targeted screening of ~2,500 lipid-modifying...
Phenovista Biosciences LLC received a $749,700 Project Grant award from the National Institutes of Health's National Institute on Aging under the Aging Research program (CFDA 93.866) for the period February 1, 2021 through August 31, 2021. The award will support Phenovista's development, validation, and commercialization of a suite of high-throughput, high-content functional assays using human induced pluripotent stem cell-derived microglia models for Alzheimer's disease drug screening. The...
The National Institute on Aging (NIA) awarded a $514,862 Project Grant (CFDA 93.866 - Aging Research) to Neuroindx, a for-profit, woman-owned small business, to develop an on-chip functional assay for identifying candidate microtubule-binding drugs to treat Alzheimer's Disease Related Disorders (ADRDs). The project aims to replicate key features of the neuronal microtubule microenvironment and use in vitro generated microtubules with a kinesin-based readout system to measure the ability of...
This Project Grant award from the National Institute on Aging (NIA) under CFDA 93.866, the Aging Research program, provides $835,417 in funding to the Icahn School of Medicine at Mount Sinai (ISMMS) to develop novel lipid nanoparticle (LNP) formulations for delivering nucleic acid therapeutics across the blood-brain barrier to treat Alzheimer's disease (AD). The key objectives are to synthesize BBB-crossing lipids, formulate LNP libraries, elucidate trafficking pathways, engineer targeted...
This Project Grant award from the National Institute on Aging (NIA), under the Aging Research program (CFDA 93.866), provides $485,192 to Constantiam Biosciences Inc. to develop MAVEvidence, a software application that leverages recent advances in multiplexed assays of variant effect (MAVEs) to improve clinical interpretation of genetic variants associated with Alzheimer's disease (AD) and related dementias. The key products and services to be delivered under this Phase I SBIR award include:...
The National Institute on Aging (NIA), under its Aging Research program (CFDA 93.866), has awarded a $2,112,826 cooperative agreement to the University of California, San Diego (UCSD) to advance a CRISPR-based therapeutic for Alzheimer's disease (AD) towards pre-IND stage. The project aims to determine the optimal gene-editing combination to edit the APP gene, which plays a central role in AD pathogenesis, and shift the APP cleavage pathway from pathologic to physiologic. UCSD will evaluate...

MINIATURIZED AD/ADRD MICROPHYSIOLOGICAL SYSTEMS PLATFORM FOR HIGH-THROUGHPUT SCREENING - ABSTRACT ALZHEIMER DISEASE (AD) IS CHARACTERIZED BY B-AMYLOID (AB) ACCUMULATION, NEUROFIBRILLARY TANGLES (NFTS), NEUROINFLAMMATION, AND WIDESPREAD NEURONAL AND SYNAPTIC LOSS. TO DATE, THERE ARE NO THERAPIES AVAILABLE, ALTHOUGH IMMUNOTHERAPIES I.E., LECANEMAB HOLD PROMISE. SPECIES DIFFERENCES UNDERLIE THE DIFFICULTIES IN TRANSLATING THERAPEUTICS UNCOVERED IN ANIMAL MODELS FOR HUMAN BRAIN-SPECIFIC DISEASES, E.G., AD AND AD-RELATED DEMENTIA (ADRD). HUMAN INDUCED PLURIPOTENT STEM CELL (HIPSC) TECHNOLOGICAL ADVANCES ENABLE BETTER HUMAN- SPECIFIC DISEASE MODELING, PARTICULARLY WHEN DISEASE-RELATED GENETIC MUTATIONS ARE ABSENT IN MURINE OR RODENT MODELS (E.G., MANY AD GWAS GENES), BUT FACE CHALLENGES DUE TO THE DIFFICULTY IN MIMICKING THE IN VIVO CONTEXT IN CURRENT IN VITRO MODELS. MICROPHYSIOLOGICAL SYSTEMS (MPS) WITH DEFINED CELLULAR COMPOSITIONS CAN PROVIDE SCALABLE, REPRODUCIBLE BRAIN MODELS THAT BETTER RECAPITULATE THE IN VIVO ENVIRONMENT, IN WHICH PRECLINICAL DRUG DISCOVERY EFFORTS CAN TRANSLATE TO A HIGHER SUCCESS RATE FOR IDENTIFIED TARGETS AND COMPOUNDS. THIS PROJECT PROPOSES THE DEVELOPMENT OF A MINI-BRAIN ASSEMBLED ORGANOIDS (ASSEMBLOIDS) MICROFLUIDICS PLATFORM USING AD PATIENT-DERIVED APOE4 AND ISOGENIC GENE-EDITED APOE3 IPSCS TO FACILITATE EFFECTIVE AND REPRODUCIBLE SCREENING FOR AD THERAPEUTICS. NEUCYTE EMPLOYS ROBUST DIFFERENTIATION PROTOCOLS TO GENERATE NEURONS, ASTROCYTES, AND MICROGLIA IN LARGE QUANTITIES FACILITATING THE GENERATION OF NEUROIMMUNE ASSEMBLOIDS (NIA) IN WHICH THE 3D MICROENVIRONMENT RECAPITULATES SALIENT EX VIVO BRAIN PHENOTYPES, E.G., NEURODEGENERATIVE AND CELL-TYPE SPECIFIC PHENOTYPES DUE TO A GENETIC MUTATION, ENABLING IMPROVED TRANSLATABLE HIGH-THROUGHPUT PRECLINICAL DRUG DISCOVERY. WHILE ISOGENIC, THIS PLATFORM IS ALSO MODULAR, I.E., THE IMPACT OF A MUTATION IN MICROGLIA CAN BE STUDIED TO MODEL EFFECTS ON NEURONS FACILITATING MECHANISTIC STUDIES MIMICKING THE CELLULAR COMPLEXITY OF THE HUMAN BRAIN. THE AD/ADRD MPS MICROFLUIDIC PLATFORM INCORPORATES ACOUSTIC TECHNOLOGY AND ENABLES ECONOMICAL EXAMINATION OF AD PATHOLOGY IN VITRO FACILITATED BY MINIATURIZATION, REDUCING COSTS ASSOCIATED WITH CELL NUMBERS, REAGENTS, AND DRUG LIBRARY QUANTITIES TO FACILITATE HIGH-THROUGHPUT DRUG SCREENING. SUCCESSFUL COMPLETION OF PHASE I WILL ESTABLISH THE FEASIBILITY FOR COMMERCIALIZATION OF AN AD/ADRD DRUG SCREENING PLATFORM.

Posted 8/14/23, 12:00 AM