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Maureen McCall

Professor

School of Medicine

  • Professor
    School of Medicine
  • 5028523386 (Work)
  • 5024194237 (Mobile)
  • University of Louisville, Ophthalmology & Visual Sciences, 301 E. Muhammad Ali Boulevard, Louisville, Kentucky, 40202, United States

SPONSORED PROJECTS

My research uses electrophysiological techniques to evaluate normal retinal function, dysfunction caused by blinding retinal diseases and the restoration of function using a variety of therapeutic strategies. We can use our understanding or normal retinal function and disease-related changes to construct optimal therapeutic strategies and evaluate how they ameliorate the effects of disease.

Retinitis pigmentosa (RP) is a family of blinding eye diseases caused by photoreceptor degeneration. The absence of the cells that for this primary signal leads to blindness. My interest in RP involves the evaluation of therapies to restore vision: replacing degenerated photoreceptors either with: (1) new stem or other embryonic cells, manipulated to become photoreceptors or (2) prosthetics devices that replace the photoreceptor signal with an electronic signal to light.

Glaucoma is caused by increased intraocular pressure and leads to ganglion cell death, which eliminates the link between the retinal output and central visual processing. We are parsing out of the effects of increased intraocular pressure and aging on ganglion cells.

Congenital Stationary Night Blindness (CSNB) is a family of diseases in which signaling is eliminated between rod photoreceptors and their postsynaptic targets, rod bipolar cells. This deafferents the retinal circuit that is responsible for vision under dim lighting. My interest in CSNB involves understanding the basic interplay between excitation and inhibition in the retinal circuit and its normal development. Because of the targeted nature of this disease, we are hopeful that a gene therapy approach can be developed to restore night vision.

My work utilizes rodent disease models whose mutations mimic those found in human patients. While molecular manipulation of rodents is a fairly common approach, we have recently developed a mutant NIH miniature swine model of a common form of autosomal dominant RP (Pro23His rhodopsin mutation) in collaboration with the National Swine Resource Research Center at University of Missouri. More genetically modified mini-swine models are in the pipeline to examine other retinal diseases.

SPONSORED PROJECTS

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Showing page 1, sponsored projects 1 to 25 of 48
GRANT
National Institutes of Health_NIH8 Jan 2026 - 31 Dec 2031
GRANT
University of Tuebingen, Germany4 Jan 2026 - 31 Dec 2028
GRANT
OLIX Pharmaceuticals_OLIXPHARM1 Jan 2024
GRANT
National Eye Institute1 Jan 2024 - 31 Dec 2028
People funded by this grant: MCGEE AW, MCCALL MA
GRANT
National Eye Institute1 Mar 2023 - 29 Feb 2028
People funded by this grant: MCCALL MA, GREGG RG
GRANT
Univ of Florida Research Founda Inc_UFRF9 Jan 2023 - 31 Dec 2027
GRANT
National Institutes of Health_NIH6 Jan 2022
GRANT
National Institutes of Health_NIH6 Jan 2022 - 31 Dec 2027
GRANT
National Institutes of Health_NIH6 Jan 2022 - 31 Dec 2027