Diabetes predominantly affects the microvascular circulation of the retina resulting in a range of structural changes that are unique to this tissue. These changes include an early persistent loss of pericytes from retinal microvessels, thickening of the basement membrane, followed by hyperproliferation of endothelial cells (ECs) and abnormal vascularization of the retina, which ultimately results in blindness. Retinal vascularization is normally restricted to the superficial and deep layers of the retina. Other ocular sites such as cornea, lens, and vitreous are normally vascular free. It has been hypothesized that a negative regulator of angiogenesis is responsible for these vascular restrictions. We have recently demonstrated that thrombospondin-1 (TSP1), a potent natural inhibitor of angiogenesis, is present at ocular avascular sites and TSPt expression is dramatically down regulated with diabetes. Our hypothesis is that TSP1 is an important modulator of retinal vascular homeostasis whose alterations under pathological conditions such as diabetes and/or ischemia results in retinal neovascularization. The studies proposed here will investigate the role of TSP1 in retinal vascular development and ischemia-induced neovascularization. We will examine the expression of TSP1 in the retina and retinal capillaries during development and determine whether its expression is altered during oxygen-induced ischemic retinopathy. We will compare development of retinal vasculature and their total area in the retina of normal, TSP1 deficient, and TSP1 over-expressing transgenic mice. We will determine whether lack or over-expression of TSP1 influences retinal vascular development and neovascularization in response to hypoxia. Identification of TSP1 as a modulator of ocular vascularization and the study of its mechanisms of action in retinal vascular cells will provide insight into the defects that contribute to retinal neovascularization. This knowledge will provide the rationale for development of new therapeutic approaches for the prevention and/or treatment of ocular diseases with a neovascular component.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Small Research Grants (R03)
Project #
5R03EY013700-03
Application #
6936510
Study Section
Special Emphasis Panel (ZEY1-VSN (01))
Program Officer
Dudley, Peter A
Project Start
2003-08-01
Project End
2006-07-31
Budget Start
2005-08-01
Budget End
2006-07-31
Support Year
3
Fiscal Year
2005
Total Cost
$145,500
Indirect Cost
Name
University of Wisconsin Madison
Department
Ophthalmology
Type
Schools of Medicine
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Ghanian, Zahra; Staniszewski, Kevin; Jamali, Nasim et al. (2016) Quantitative Assessment of Retinopathy Using Multi-parameter Image Analysis. J Med Signals Sens 6:71-80
Taghavi, F; Moosavi-Movahedi, A A; Bohlooli, M et al. (2013) Potassium sorbate as an AGE activator for human serum albumin in the presence and absence of glucose. Int J Biol Macromol 62:146-54
Bohlooli, M; Moosavi-Movahedi, A A; Taghavi, F et al. (2013) Investigation of thermal reversibility and stability of glycated human serum albumin. Int J Biol Macromol 62:358-64
Sharifi, Esmaeel; Sattarahmady, Naghmeh; Habibi-Rezaei, Mehran et al. (2009) Inhibitory effects of beta-cyclodextrin and trehalose on nanofibril and AGE formation during glycation of human serum albumin. Protein Pept Lett 16:653-9
Badraghi, Jalil; Moosavi-Movahedi, Ali Akbar; Saboury, Ali Akbar et al. (2009) Dual behavior of sodium dodecyl sulfate as enhancer or suppressor of insulin aggregation and chaperone-like activity of camel alphaS(1)-casein. Int J Biol Macromol 45:511-7
DiMaio, Terri A; Sheibani, Nader (2008) PECAM-1 isoform-specific functions in PECAM-1-deficient brain microvascular endothelial cells. Microvasc Res 75:188-201
Scheef, Elizabeth A; Huang, Qiong; Wang, Shoujian et al. (2007) Isolation and characterization of corneal endothelial cells from wild type and thrombospondin-1 deficient mice. Mol Vis 13:1483-95
Sheibani, Nader; Scheef, Elizabeth A; Dimaio, Terri A et al. (2007) Bcl-2 expression modulates cell adhesion and migration promoting branching of ureteric bud cells. J Cell Physiol 210:616-25
Albert, Daniel M; Scheef, Elizabeth A; Wang, Shoujian et al. (2007) Calcitriol is a potent inhibitor of retinal neovascularization. Invest Ophthalmol Vis Sci 48:2327-34
Wu, Zhifeng; Wang, Shoujian; Sorenson, Christine M et al. (2006) Attenuation of retinal vascular development and neovascularization in transgenic mice over-expressing thrombospondin-1 in the lens. Dev Dyn 235:1908-20

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