N Sundarraj
Overview
Explore the profile of N Sundarraj including associated specialties, affiliations and a list of published articles.
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48
Citations
567
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Recent Articles
1.
Cocuzzi E, Bardenstein D, STAVITSKY A, Sundarraj N, Medof M
Curr Eye Res
. 2002 Feb;
23(2):86-92.
PMID: 11840345
Purpose: Decay accelerating factor (DAF) and membrane cofactor protein (MCP) are membrane complement regulators that protect self cells from deposition of autologous C3b on their surfaces. CD59, a third downstream...
2.
Cheng E, Maruyama I, Sundarraj N, Sugar J, Feder R, Yue B
Curr Eye Res
. 2001 Oct;
22(5):333-40.
PMID: 11600933
Purpose: Keratoconus is a disease characterized by thinning of the central and paracentral cornea and scarring in advanced cases. This study was performed to examine the expression of type XII...
3.
Anderson S, Sundarraj N
Invest Ophthalmol Vis Sci
. 2001 Mar;
42(5):933-40.
PMID: 11274069
Purpose: It has been recognized that an increased expression of the Rho-associated kinase (ROCK-I), a downstream target of Rho (a Ras-related small guanosine triphosphatase [GTPase]), is associated with limbal-to-corneal epithelial...
4.
Dunlevy J, Berryhill B, Vergnes J, Sundarraj N, Hassell J
Genomics
. 2000 Jan;
62(3):519-24.
PMID: 10644451
The cornea contains, as a major element, a transparent stroma produced and maintained by keratocytes (fibroblasts). Through molecular biology studies using cultured human corneal fibroblasts, a cDNA that was shown...
5.
Anderson S, Sundarraj S, Fite D, Wessel H, Sundarraj N
Invest Ophthalmol Vis Sci
. 2000 Jan;
41(1):55-63.
PMID: 10634601
Purpose: To determine whether temporal and spatial changes in the distribution of the long and short alternatively spliced variants of type XII collagen are associated with any specific morphogenetic events...
6.
Sundarraj N, Fite D, Belak R, Sundarraj S, Rada J, Okamoto S, et al.
Exp Eye Res
. 1998 Nov;
67(4):433-42.
PMID: 9820791
Proteoglycan distribution during corneal stromal healing in growing corneas of young chicks were histologically and immunohistochemically analysed. Single linear incisions to produce partial-thickness wounds were made in the corneas of...
7.
Sundarraj N, Kinchington P, Wessel H, GOLDBLATT B, Hassell J, Vergnes J, et al.
Invest Ophthalmol Vis Sci
. 1998 Jun;
39(7):1266-72.
PMID: 9620089
Purpose: The authors have developed monoclonal antibodies (mAbs) to characterize the sequential biochemical changes in corneal epithelial cells after they differentiate from stem cells, located in the limbus, and migrate...
8.
Wessel H, Anderson S, Fite D, Halvas E, Hempel J, Sundarraj N
Invest Ophthalmol Vis Sci
. 1997 Oct;
38(11):2408-22.
PMID: 9344363
Purpose: To characterize diversities in the extracelhtlar matrices (ECMs) of the corneal and the surrounding limbal epithelium and stroma. Methods: Immunohistochemical analyses were employed for screening monoclonal antibodies (mAbs) developed...
9.
Melles G, Sundarraj N, Binder P, Van der Weiden M, Wijdh R, Beekhuis W, et al.
Curr Eye Res
. 1995 Sep;
14(9):809-17.
PMID: 8529420
In the unsutured partial thickness penetrating wounds of the cornea, the epithelium migrates over the wounded stromal surface prior to the onset of stromal regeneration. To determine the possible affects...
10.
Melles G, Binder P, Beekhuis W, Wijdh R, Moore M, ANDERSON J, et al.
Br J Ophthalmol
. 1995 Aug;
79(8):760-5.
PMID: 7547789
Aims: This study aimed to evaluate stromal wound healing morphology in short term unsutured compared with sutured corneal wounds, to define regional variation in healing within radial keratotomy wounds. Methods:...