Project Grant R01EY035995
- This $403,750 Project Grant from the National Eye Institute of the Department of Health and Human Services will fund research into the regulation of retinal microvascular stiffness by the matricellular protein CCN1 and its implications for ischemic retinopathy. The awardee, the Research Foundation for the State University of New York on behalf of SUNY Downstate Health Sciences University, will investigate the effects of CCN1 on the mechanical properties of retinal microvascular endothelial cells...
- Federal Project Grant Award Summary Baylor College of Medicine received a $1,093,095 Project Grant from the National Eye Institute under the Vision Research program (CFDA 93.867), effective July 1, 2025 through March 31, 2030, to investigate the role of vascular ligands and neurovascular dysfunction in glaucoma pathogenesis and therapeutic development. The research will employ an innovative ligandomics technology platform to globally map cell-binding ligands with quantified binding activity...
- Federal Project Grant Award Summary The National Eye Institute (NEI) awarded Doheny Eye Institute a $3.05M Vision Research (CFDA 93.867) Project Grant effective September 1, 2025, through August 31, 2028, to investigate the mechanobiology of retinal vascular inflammation and degeneration in diabetic retinopathy (DR). The research will generate scientific findings addressing early-stage DR pathogenesis, which currently represents the leading cause of vision loss in the working-age population. The...
- Federal Project Grant Award Summary The National Eye Institute (NEI) awarded $3.57 million to The Leland Stanford Junior University under the Vision Research program (CFDA 93.867) on September 15, 2025, for a project period extending through August 31, 2028. This Project Grant funds the development and application of TEMPO (Tracing Expression of Multiple Protein Origins), an innovative proteomic platform that integrates aptamer-based microvolume liquid biopsy proteomics, single-cell...
- Federal Project Grant Award Summary The National Eye Institute (NEI), under its Vision Research program (CFDA 93.867), awarded $902,000 to The Regents of the University of California, San Francisco for a two-year project (September 1, 2025–August 31, 2027) focused on multimodal characterization of a novel inherited mouse model of glaucoma. The research addresses the critical clinical need for neuroprotective therapeutic strategies for primary open-angle glaucoma (POAG), which affects over 80...
- Summary The National Eye Institute awarded a $1.01M Vision Research grant (CFDA 93.867) to Washington University in St. Louis beginning July 1, 2025, through March 31, 2030. The project, titled "Visual Feature Competition Between Central and Peripheral Retinal Pathways," will deliver fundamental neuroscience research investigating how the retina processes competing visual signals that control eye fixation and the optokinetic reflex (OKR). The primary products include empirical findings...
- Federal Grant Award Summary Baylor College of Medicine received a $1.6M Project Grant from the National Eye Institute under the Vision Research program (CFDA 93.867) awarded on September 30, 2025, with completion targeted for September 29, 2028. The grant funds research investigating the Hippo and Wnt signaling pathway regulation of mammalian Muller glial cell (MG) reprogramming and proliferation. The primary deliverable is scientific research aimed at identifying cellular and molecular...
- Federal Grant Award Summary The University of Alabama at Birmingham received a $668,581 Project Grant from the National Eye Institute (NEI) under the Vision Research program (CFDA 93.867), effective April 1, 2026 through March 31, 2030. This research initiative investigates the role of bacterial-derived metabolites in diabetic retinopathy (DR), with the objective of identifying and developing therapeutic interventions based on microbiota-generated compounds. The research leverages liquid...
- Federal Grant Award Summary The National Eye Institute (NEI), under the Vision Research program (CFDA 93.867), awarded The Schepens Eye Research Institute Inc. a $1.79M Project Grant (awarded September 1, 2025; completion date August 31, 2027) to investigate non-invasive transpalpebral electrical stimulation (TPES) as a therapeutic intervention for diabetic keratopathy (DK). This research addresses a significant clinical need, as current treatment options are costly, uncomfortable, and difficult...
- Federal Project Grant Award Summary The National Eye Institute (NEI) awarded The Washington University a Project Grant totaling $855,250 under the Vision Research program (CFDA 93.867), effective September 1, 2025 through August 31, 2027. This R21 exploratory research award funds an investigation into enhancing efferocytosis—the cellular process of clearing dying cells and debris—as a therapeutic strategy to improve retinal tissue healing in oxygen-induced retinopathy (OIR), a leading cause of...
TARGETING INTERLEUKIN-6 CIS-TRANS BALANCE IN MULLER CELL DYSFUNCTION - PROJECT SUMMARY DIABETIC RETINOPATHY (DR) IS A SIGHT-THREATENING NEUROVASCULOPATHY AND THE LEADING CAUSE OF BLINDNESS IN ADULTS. THE NUMBER OF DR PATIENTS IS GROWING, BUT THERAPEUTIC APPROACHES ARE LIMITED, AND MANY PATIENTS DEVELOP DR DESPITE TREATMENT WITH ANTI-VEGF THERAPIES. INCREASING EVIDENCE SUGGESTS THAT INTERLEUKIN-6 (IL-6) PLAYS A PROMINENT ROLE IN DR PATHOGENESIS. IL-6, A PLEIOTROPIC CYTOKINE, FUNCTIONS THROUGH MULTIPLE SIGNALING MODALITIES, INCLUDING "CIS-SIGNALING" THROUGH A MEMBRANE-BOUND IL-6 RECEPTOR AND "TRANS-SIGNALING" THROUGH A SOLUBLE IL-6 RECEPTOR. STUDIES SUGGEST THAT THE PRO-INFLAMMATORY ACTIONS OF IL-6 ARE MEDIATED BY TRANS-SIGNALING, WHEREAS MANY REGENERATIVE ACTIVITIES OF IL-6 ARE MEDIATED BY CIS-SIGNALING. WE HAVE OBSERVED THAT SELECTIVE INHIBITION OF IL-6 TRANS-SIGNALING WITH THE DRUG SGP130FC RESTORED NORMAL EXPRESSION OF VEGFA AND VEGFB WITHIN THE INNER NUCLEAR LAYER (INL) OF THE RETINA. MULLER GLIAL CELLS (MGCS), A SPECIALIZED GLIAL CELL TYPE CRITICAL FOR RETINAL HOMEOSTASIS, ARE THE MAJOR SOURCE OF VEGF PRODUCTION IN THE MATURE RETINA, AND, WHILE VEGFA IS IMPLICATED IN BOTH BLOOD-RETINAL BARRIER (BRB) BREAKDOWN AND INCREASED OXIDATIVE STRESS, VEGFB IS THOUGHT TO BE PROTECTIVE. OUR PRELIMINARY STUDIES SUPPORT THE IDEA THAT IL-6 CIS- AND TRANS-SIGNALING DIFFERENTIALLY MODULATE VEGFA AND VEGFB EXPRESSION IN MGCS, AND THAT SOME OF THE EFFECTS OF IL-6 ON OXIDATIVE STRESS AND ENDOTHELIAL (EC) BARRIER FUNCTION MAY BE MEDIATED BY VEGF SIGNALING. THESE OBSERVATIONS LED US TO HYPOTHESIZE THAT: (I) IL-6 CIS- AND TRANS-SIGNALING DIFFERENTIALLY MODULATE MGC-DERIVED VEGF EXPRESSION; AND (II) DISRUPTION OF THE "IL-6 CIS-TRANS BALANCE" CONTRIBUTES TO THE RETINAL PATHOLOGY SEEN IN DIABETIC RETINOPATHY. WE WILL TEST THIS HYPOTHESIS WITH THE FOLLOWING SPECIFIC AIMS: AIM 1 WILL TEST THE HYPOTHESIS THAT DISRUPTION OF THE IL-6 CIS-TRANS BALANCE IN MGCS ALTERS VEGFA AND VEGFB EXPRESSION, LEADING TO MGC OXIDATIVE STRESS AND INNER BRB BREAKDOWN. IN THIS AIM, WE WILL: (I) IDENTIFY THE INTRACELLULAR SIGNALING MECHANISMS THAT LEAD TO THE DIFFERENTIAL EFFECTS OF IL-6 CIS- AND TRANS-SIGNALING IN MGCS AND DETERMINE HOW THESE INTERSECT WITH VEGF SIGNALING. (II) DETERMINE THE ROLE OF VEGFA AND VEGFB IN OXIDATIVE STRESS INDUCED BY IL-6 TRANS-SIGNALING, AND HOW IL-6 MODULATES THE VEGF-OXIDATIVE STRESS POSITIVE FEEDBACK LOOP IN MGCS. (III) DETERMINE WHETHER IL-6 CIS- AND TRANS-SIGNALING AFFECT THE MGC-EC INTERACTIONS THAT MAINTAIN THE INNER BLOOD-RETINAL BARRIER AND IF ANY OF THESE EFFECTS MODULATED BY VEGF SIGNALING. AIM 2 WILL TEST THE HYPOTHESIS THAT DISRUPTION OF THE IL-6 CIS-TRANS BALANCE IN DIABETIC MICE CONTRIBUTES TO VEGF DYSREGULATION AND MGC DYSFUNCTION. EXPERIMENTS IN THIS AIM WILL ANSWER: (I) DO IL-6 CIS- AND TRANS-SIGNALING AFFECT MGC-DRIVEN VEGF SIGNALING, OXIDATIVE DAMAGE, AND BREAKDOWN OF THE INNER BLOOD-RETINAL BARRIER IN THE DIABETIC MOUSE RETINA? (II) DOES TREATMENT WITH SGP130FC RESTORE THE IL-6 CIS-TRANS BALANCE IN VIVO, AND DOES THIS TREATMENT AFFECT THE EFFICACY OF ANTI-VEGF THERAPY TO PREVENT STRUCTURAL AND FUNCTIONAL CHANGES IN THE DIABETIC RETINA? RESULTS FROM THESE STUDIES HAVE THE POTENTIAL TO PROVIDE A NEW THERAPEUTIC APPROACH TO MITIGATE THE RETINAL NEUROVASCULAR PATHOLOGY ASSOCIATED WITH DIABETES BY RESTORING THE IL-6 CIS-TRANS BALANCE IN THE RETINA.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $385.0k | 4/4/25 | ||
| Not listed | $385.0k | 6/13/24 | ||
| Not listed | $385.0k | 6/13/24 |