Signaling in RPE Cell Survival
Principal Investigator
Nicolas G. Bazan, MD, PhD
Louisiana State University Medical Center
New Orleans, LA, USA
About the Research Project
Program
Award Type
Standard
Award Amount
$300,000
Active Dates
August 01, 2004 - July 31, 2007
Grant ID
M2004345
Summary
Dr. Bazan will be examining human retinal pigment epithelial (RPE) cells in lab cultures while simulating conditions that occur in the eye with age-related macular degeneration. RPE cells form an important membrane separating the retina’s light-sensitive rod and cone cells from another membrane called Bruch’s membrane. In the early form of the disease, called “dry” macular degeneration, the RPE cells slowly degenerate along with the cells of the retina. When macular degeneration becomes advanced, as in the “wet” form of the disease, bleeding from abnormal blood vessels can burst through Bruch’s membrane and the RPE cell layer, damaging or destroying the fragile rods and cones. All vision loss due to this cellular damage is irreversible. The specific focus of Dr. Bazan’s study will be to identify signaling chemicals that cue the RPE cells whether to survive or die, and he hopes to identify the agents that help RPE cells survive under disease conditions. The discovery of a protective agent for RPE cells could lead to a drug therapy that could be used early in the course of age-related macular degeneration before too much damage has occurred.
Related Grants
Macular Degeneration Research
Exploring How NRF2 Protein Reduces RPE Cell Damage by Cigarette Smoke
Active Dates
July 01, 2024 - June 30, 2026
Principal Investigator
Krishna Singh, PhD
Current Organization
Johns Hopkins University School of Medicine
Exploring How NRF2 Protein Reduces RPE Cell Damage by Cigarette Smoke
Active Dates
July 01, 2024 - June 30, 2026

Principal Investigator
Krishna Singh, PhD
Current Organization
Johns Hopkins University School of Medicine
Macular Degeneration Research
The Development of a Transplant-Independent Therapy for RPE Dysfunction
Active Dates
July 01, 2024 - June 30, 2026
Principal Investigator
Shintaro Shirahama, MD, PhD
Current Organization
Schepens Eye Research Institute of Massachusetts Eye and Ear
The Development of a Transplant-Independent Therapy for RPE Dysfunction
Active Dates
July 01, 2024 - June 30, 2026

Principal Investigator
Shintaro Shirahama, MD, PhD
Current Organization
Schepens Eye Research Institute of Massachusetts Eye and Ear
Macular Degeneration Research
Regeneration of Cone Photoreceptors in the Human Retina
Active Dates
July 01, 2024 - June 30, 2026
Principal Investigator
Juliette Wohlschlegel, PhD
Current Organization
University of Washington
Regeneration of Cone Photoreceptors in the Human Retina
Active Dates
July 01, 2024 - June 30, 2026

Principal Investigator
Juliette Wohlschlegel, PhD
Current Organization
University of Washington