Project Grant R01EY035646
- This Project Grant award of $248,999.00 from the National Eye Institute's Vision Research program (CFDA 93.867) supports research at the Cleveland Clinic Lerner College of Medicine of Case Western Reserve University to investigate how neuronal synaptic activity and neurotransmitters influence retinal angiogenesis and the development of the blood-retinal barrier. The research aims to elucidate the role of glutamate release on deep retinal vascular plexus formation and barrier maturation, and...
- This $460,625 Project Grant was awarded by the National Eye Institute (NEI) under the Vision Research federal grant program (CFDA 93.867) to Yale University. The grant will fund research to investigate the cellular and synaptic mechanisms underlying changes in retinal ganglion cell (RGC) activity following optic nerve injuries in mouse models of glaucoma. Specifically, the project aims to (1) determine the underlying mechanisms for altered RGC activity after increased intraocular pressure or...
- This federal Project Grant award from the National Eye Institute (CFDA 93.867 Vision Research) provides $679,159 to The Schepens Eye Research Institute, Inc. to support research on "In Vivo Epigenetic Reprogramming of Retinal Ganglion Cells in Aging Mice with Glaucoma". The goal is to investigate how aging increases retinal ganglion cell susceptibility to stress and visual function loss in glaucoma, and to explore the potential of epigenetic reprogramming to reverse this age-related...
- This $1.0M Project Grant from the National Eye Institute (NEI) under the Vision Research program (CFDA 93.867) supports research to develop endoplasmic reticulum (ER) stress chemical modulators as neuroprotectants for glaucoma treatment. Awarded to The Leland Stanford Junior University on September 1, 2025, and extending through May 31, 2028, the project delivers preclinical drug development and validation services focused on identifying therapeutic candidates to address glaucoma, the leading...
- Federal Project Grant Award Summary The National Eye Institute (NEI) under the Vision Research program (CFDA 93.867) awarded $902,000 to the University of California, San Francisco for a two-year project (September 1, 2025 – August 31, 2027) to conduct multimodal characterization of a novel inherited mouse model of glaucoma. The primary deliverables include comprehensive phenotypic characterization of GLIS1 knockout mice across two genetic backgrounds, evaluating structural and functional...
- This federal Project Grant award from the National Eye Institute (NEI), under the CFDA program "Vision Research", provides $132,597 to The Schepens Eye Research Institute, Inc. to investigate the role of neural activity in retinal ganglion cell (RGC) integration and functional connectivity to improve RGC replacement therapies for glaucoma. The research aims to 1) characterize retinal remodeling following RGC inactivation, and 2) determine if inhibiting host neural activity can...
- Federal Project Grant Award Summary The National Eye Institute (NEI) awarded The Schepens Eye Research Institute, Inc. a Project Grant of $545,948 under the Vision Research program (CFDA 93.867) to advance understanding of glaucoma pathophysiology. The award, effective April 1, 2026 through March 31, 2030, supports research investigating the role of reactive astrocytes in glaucoma progression and retinal ganglion cell (RGC) survival. The research aims to move beyond traditional neurocentric...
- Federal Grant Award Summary The National Eye Institute (NEI) awarded $255,340 through the Vision Research program (CFDA 93.867) to The Regents of the University of California, San Francisco for a five-year project (May 1, 2026 – April 30, 2031) focused on understanding and regenerating retinal ganglion cells in the vertebrate retina. This research addresses glaucoma, which affects over four million Americans and represents the second leading cause of irreversible blindness globally. The...
- Federal Project Grant Award Summary The Medical College of Wisconsin, Inc. received a $856,698 Project Grant from the National Eye Institute (NEI) under the Vision Research program (CFDA 93.867), awarded on July 1, 2025, with a project completion date of March 31, 2030. This award supports mechanistic research into retinal ganglion cell (RGC) genesis, addressing a critical gap in understanding the developmental factors necessary for generating these specialized neurons that serve as the sole...
- The National Eye Institute, under its Vision Research program (CFDA 93.867), awarded Indiana University Indianapolis a Project Grant of $435,875 (Award Date: May 1, 2026; Completion Date: April 30, 2028) to investigate the relationship between the orexinergic system and circadian rhythm disruption caused by aberrant blue light exposure. The research will produce empirical findings on how excessive exposure to artificial light—particularly blue light from smart devices—disrupts circadian...
MECHANISMS OF SEROTONIN AND SEROTONIN RECEPTOR BIOLOGY IN NORMAL AND GLAUCOMATOUS RETINAS - PROJECT SUMMARY GLAUCOMA IS A PROGRESSIVE DISEASE OF RETINAL GANGLION CELLS (RGCS) AND THEIR AXONS. SOME EVIDENCE SUGGESTS THAT ORAL SSRIS (SELECTIVE SEROTONIN REUPTAKE INHIBITORS), WHICH INCREASE SEROTONIN (5-HT) LEVELS, MAY HAVE A PROTECTIVE EFFECT AGAINST PROGRESSION OF OPEN ANGLE GLAUCOMA. TO UNDERSTAND THE MECHANISM OF THIS POTENTIAL PROTECTION, WE ASSESSED RGC EXPRESSION OF SEROTONIN RECEPTORS (HTRS) IN MOUSE AND HUMAN SCRNA-SEQ DATASETS. IN MICE, HTR1B IS EXPRESSED IN RGCS AT A HIGH LEVEL AND PREFERENTIALLY EXPRESSED IN ALPHA RGCS (ARGCS). IN HUMANS, HTR1B IS EXPRESSED IN RGCS, SUGGESTING A CONSERVED FUNCTION. IN MOUSE RETINAL TISSUE, WE DETECTED HTR1B TRANSCRIPT IN THE GANGLION CELL LAYER (GCL) AND HTR1B PROTEIN IN THE GCL AND INNER PLEXIFORM LAYER NEAR EXCITATORY POST-SYNAPTIC SITES. USING ELECTRORETINOGRAM (ERG), OPTOKINETIC RESPONSE (OKR), AND MULTIELECTRODE ARRAY (MEA) TESTING IN CONJUNCTION WITH HISTOLOGY IN HTR1B-/- AND CONTROL MICE, WE FOUND THAT HTR1B-/- RETINAS ARE ANATOMICALLY NORMAL, BUT HTR1B IS REQUIRED FOR SEVERAL ASPECTS OF NORMAL INNER RETINAL FUNCTION. WE ALSO FOUND THAT HTR1B AGONISTS AND ANTAGONISTS IMPACT ON AND OFF RGCS DIFFERENTLY. FINALLY, SSRI ADMINISTRATION IN DRINKING WATER MITIGATED SOME IOP-INDUCED PHENOTYPES WITHOUT REDUCING IOP. THESE DATA SUGGEST THAT 5-HT AND HTRS PLAY A PREVIOUSLY UNRECOGNIZED ROLE IN RGC FUNCTION AND IOP/GLAUCOMA SUSCEPTIBILITY. WE WILL TEST THE HYPOTHESIS THAT HTR1B IS REQUIRED FOR NORMAL RGC AND ARGC FUNCTION AND ACTS THROUGH DOWNSTREAM EFFECTS ON MEMBRANE EXCITABILITY. WE WILL ALSO ASK IF INCREASED 5-HT SIGNALING THROUGH HTR1B PROMOTES RGC RESISTANCE TO INJURY WHEREAS DECREASED 5-HT SIGNALING THROUGH HTR1B INCREASES RGC SUSCEPTIBILITY IN THE SETTING OF ELEVATED IOP. THERE ARE THREE AIMS: (1) DETERMINE THE CELL-TYPE SPECIFIC FUNCTION OF HTR1B IN THE INNER RETINA; (2) ELUCIDATE THE INTRACELLULAR MECHANISMS OF ACTION OF HTR1B IN FOUR ARGC SUBTYPES; AND (3) ASSESS THE IMPACT OF ALTERED 5-HT SIGNALING ON GLAUCOMA SUSCEPTIBILITY. IN AIM 1, WE WILL COMBINE A NOVEL CONDITIONAL HTR1B KNOCKOUT WITH CRE-EXPRESSING LINES SPECIFIC FOR RGCS, ARGCS, OR AMACRINE CELLS TO DISSECT HTR1B FUNCTION AT THE RETINAL CIRCUITRY LEVEL (ERG/MEA), BEHAVIORAL LEVEL (OKR), AND BRAIN CIRCUITRY LEVEL (MAPPING OF RGC AXON TRANSPORT TO THE SUPERIOR COLLICULUS). WE WILL ALSO USE A NOVEL SYSTEM OF ADULT MOUSE RGC ISOLATION AND CULTURE TO TEST CELL-AUTONOMOUS ANATOMIC RESPONSES TO 5-HT. IN AIM 2, WE WILL USE PHARMACOLOGIC TECHNIQUES ALONGSIDE WHOLE-CELL PATCH CLAMP RECORDING TO COMPARE 5-HT AND HTR1B BIOLOGY AMONG THE FOUR ARGC SUBTYPES AND TO TEST THE HYPOTHESIS THAT HTR1B ACTS VIA REGULATION OF POTASSIUM CHANNELS. WE WILL ALSO USE FIBRONECTIN INTRABODIES GENERATED WITH MRNA DISPLAY TO MAP HTR1B TO EXCITATORY AND INHIBITORY POST-SYNAPTIC SITES. IN AIM 3, WE WILL PROVIDE SSRI IN THE DRINKING WATER OF MICE WITH ELEVATED IOP AND USE BOTH PHYSIOLOGIC AND ANATOMIC STUDIES TO DETERMINE IF INCREASED 5-HT CAUSES RGC NEUROPROTECTION. WE WILL THEN DETERMINE IF CONCURRENT HTR1B LOSS OF FUNCTION OR OVEREXPRESSION PREVENTS OR ENHANCES NEUROPROTECTION, RESPECTIVELY.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $526.4k | 4/1/26 | ||
| Not listed | $519.2k | 3/28/25 | ||
| Not listed | $540.8k | 7/22/24 | ||
| Not listed | $540.8k | 7/22/24 |