Good vision requires a clear cornea, which in turn requires a functioning corneal endothelial layer. There are two broad objectives from the proposed research; 1) To characterize the morphologic and functional changes involved in disorders of the human corneal endothelium and 2) to develop a method for permanent corneal storage to improve the overall results of corneal transplantation, the treatment for endothelial failure. We will approach these objectives in three ways, all of which involve the study of human corneal endothelium. First, we will study morphologic and functional changes in the endothelium over long periods in three unique groups of human subjects available to us. A group of 500 consecutive corneal transplants performed between 1976 and 1986 will be asked to return at five year intervals to monitor the response of the endothelial cell layer to the transplanted state. The effects of topical glaucoma medications on the corneal endothelium over five years will be studied in 150 patients recruited for the Ocular Hypertension Treatment Study in which drug and placebo treatment will be randomized. We will study the morphologic and functional effects of aging on the corneal endothelium by repeating specular microscopic and fluorophotometric studies on 61 subjects of various ages first examined 10 years ago. Second, we will study the effects of morphologic changes in endothelial cell on corneal endothelial function in human subjects. Permanent changes are present in diabetics and in contact lens wearers. in addition, markedly enlarged endothelial cells are found in long-term corneal transplants. We will study all three of these conditions with a newly developed method that measures both the rate of corneal recovery from induced swelling and the endothelial permeability to fluorescein, allowing us to estimate both the barrier and pump functions of the endothelial cells. We will also induce corneal acidosis in a group of normal subjects to measure its effect on endothelial permeability and corneal edema. Finally, we will develop a new method for permanent corneal storage involving cryopreservation by vitrification. Vitrification has a number of advantages over conventional colligative methods of cryopreservations. A method for permanent corneal storage will increase the quality of corneal donor tissue by eliminating the time-dependent deterioration that occurs with conventional storage over time. Such a technique will make corneas readily available for emergency use and facilitate tissue matching if its is found to be helpful for certain corneas requiring transplantation.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Research Project (R01)
Project #
5R01EY002037-21
Application #
2838248
Study Section
Visual Sciences A Study Section (VISA)
Project Start
1978-08-01
Project End
2000-09-29
Budget Start
1998-12-01
Budget End
2000-09-29
Support Year
21
Fiscal Year
1999
Total Cost
Indirect Cost
Name
Mayo Clinic, Rochester
Department
Type
DUNS #
City
Rochester
State
MN
Country
United States
Zip Code
55905
McLaren, Jay W; Bourne, William M; Maguire, Leo J et al. (2015) Changes in Keratocyte Density and Visual Function Five Years After Laser In Situ Keratomileusis: Femtosecond Laser Versus Mechanical Microkeratome. Am J Ophthalmol 160:163-70
Klingler, Kyle N; McLaren, Jay W; Bourne, William M et al. (2012) Corneal endothelial cell changes 5 years after laser in situ keratomileusis: femtosecond laser versus mechanical microkeratome. J Cataract Refract Surg 38:2125-30
Ahuja, Yachna; Baratz, Keith H; McLaren, Jay W et al. (2012) Decreased corneal sensitivity and abnormal corneal nerves in Fuchs endothelial dystrophy. Cornea 31:1257-63
Calvo, Ramón; McLaren, Jay W; Hodge, David O et al. (2010) Corneal aberrations and visual acuity after laser in situ keratomileusis: femtosecond laser versus mechanical microkeratome. Am J Ophthalmol 149:785-93
McLaren, Jay W; Bourne, William M; Patel, Sanjay V (2010) Automated assessment of keratocyte density in stromal images from the ConfoScan 4 confocal microscope. Invest Ophthalmol Vis Sci 51:1918-26
Patel, Sanjay V; Diehl, Nancy N; Hodge, David O et al. (2010) Donor risk factors for graft failure in a 20-year study of penetrating keratoplasty. Arch Ophthalmol 128:418-25
Patel, Sanjay V; McLaren, Jay W; Kittleson, Katrina M et al. (2010) Subbasal nerve density and corneal sensitivity after laser in situ keratomileusis: femtosecond laser vs mechanical microkeratome. Arch Ophthalmol 128:1413-9
McLaren, Jay W; Bourne, William M; Patel, Sanjay V (2010) Standardization of corneal haze measurement in confocal microscopy. Invest Ophthalmol Vis Sci 51:5610-6
Patel, Sangita P; Bourne, William M (2009) Corneal endothelial cell proliferation: a function of cell density. Invest Ophthalmol Vis Sci 50:2742-6
Patel, Sanjay V; Bourne, William M (2009) Corneal endothelial cell loss 9 years after excimer laser keratorefractive surgery. Arch Ophthalmol 127:1423-7

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