Defining oxidative stress induced changes in RPE that control RPE and photoreceptor degeneration

Information

  • Research Project
  • 10222694
  • ApplicationId
    10222694
  • Core Project Number
    R00EY027013
  • Full Project Number
    5R00EY027013-04
  • Serial Number
    027013
  • FOA Number
    PA-15-083
  • Sub Project Id
  • Project Start Date
    8/1/2016 - 7 years ago
  • Project End Date
    5/31/2022 - a year ago
  • Program Officer Name
    NEUHOLD, LISA
  • Budget Start Date
    6/1/2021 - 2 years ago
  • Budget End Date
    5/31/2022 - a year ago
  • Fiscal Year
    2021
  • Support Year
    04
  • Suffix
  • Award Notice Date
    7/28/2021 - 2 years ago

Defining oxidative stress induced changes in RPE that control RPE and photoreceptor degeneration

ABSTRACT: Age-related macular degeneration (AMD) causes vision loss among many older individuals, and the retinal pigment epithelium (RPE) is thought to be a critical site of injury. Vision loss in AMD occurs due to photoreceptor degeneration and/or choroidal neovascularization. Geographic atrophy (GA), the advanced form of dry AMD, is characterized by the breakdown of RPE, choriocapillaris, and photoreceptors, especially in the macula. Lack of clear understanding of the molecular mechanisms of GA hinders the development of therapy. For lifelong maintenance of photoreceptors, RPE cells play an essential role in phagocytosis and degradation of tips shed from photoreceptor outer segments (POS). Photoreceptors and RPE cells are susceptible to injury from mitochondrial oxidative stress. The central goal of the project is to understand how photoreceptor degeneration occurs in GA. I hypothesize that oxidative stress impairs phagocytosis and lysosome function and ultimately activates inflammatory processes in RPE that stimulate geographic atrophy. I will test my hypothesis in RPE cell culture and in a new mouse model of age-dependent RPE atrophy that was recently developed in our lab. In this model we used the cre/lox system to generate an RPE-specific deletion of Sod2, the mitochondrial gene for manganese superoxide dismutase (MnSOD). These mice develop a normal RPE, but overtime the RPE has elevated oxidative stress resulting in phenotypic changes that are commonly observed in AMD, including RPE injury, loss of function and subsequent retinal degeneration. In the context of GA, I have following aims: (1) To characterize the impact of oxidative stress on phagocytosis, lysosomal function and inflammasome activation in RPE; (2) Identify molecular changes in RPE under oxidative stress. These studies will illuminate signaling pathways that drive photoreceptor and RPE loss and will provide a foundation to develop new therapeutic targets to prevent disease progression in AMD. Overall, this proposal will not only begin to unravel the novel molecular mechanisms of photoreceptor degeneration in GA but will also be instrumental in the training and career development of the candidate, Dr. Manas Biswal. The proposed training plan will allow him to branch into new areas of research including phagocytosis, lysosome biology, and ocular inflammation, and it will train him in new techniques: FACS, Immuno-EM, LC-MS, laser scanning single and multiphoton confocal microscopy, RNA-seq data analysis using bioinformatics tools, biotinylation and 2D-DIGE based quantitative proteomics. This proposal will also support courses, workshops and conferences relevant to his research and training, and will allow him to transition from a postdoctoral fellow to an independent researcher running his own lab.

IC Name
NATIONAL EYE INSTITUTE
  • Activity
    R00
  • Administering IC
    EY
  • Application Type
    5
  • Direct Cost Amount
    160860
  • Indirect Cost Amount
    79625
  • Total Cost
    240485
  • Sub Project Total Cost
  • ARRA Funded
    False
  • CFDA Code
    867
  • Ed Inst. Type
    SCHOOLS OF PHARMACY
  • Funding ICs
    NEI:240485\
  • Funding Mechanism
    Non-SBIR/STTR RPGs
  • Study Section
    NSS
  • Study Section Name
    Special Emphasis Panel
  • Organization Name
    UNIVERSITY OF SOUTH FLORIDA
  • Organization Department
    PHARMACOLOGY
  • Organization DUNS
    069687242
  • Organization City
    TAMPA
  • Organization State
    FL
  • Organization Country
    UNITED STATES
  • Organization Zip Code
    336172008
  • Organization District
    UNITED STATES