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Dive into the research topics where Susan C. Anderson is active.

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Featured researches published by Susan C. Anderson.


Current Eye Research | 1988

An intermediate filament-associated developmentally regulated protein in corneal fibroblasts

Nirmala SundarRaj; Susan C. Anderson; Elsa Barbacci-Tobin

A developmentally regulated, cytoskeletal-associated protein was identified and partially characterized using a monoclonal antibody developed for this study. Based on the distinctive fibrous pattern of distribution of this antigen in the cytoskeletons of cultured corneal fibroblasts, and a characteristic reorganization of these fibers into perinuclear whorls in response to colchicine treatment, this protein was found to be associated with the intermediate filaments (vimentin filaments). Chronological distribution of this intermediate filament-associated protein (IFAP) and vimentin during fetal development of the cornea in rabbit was analysed immunohistochemically. During an early stage of corneal development (day 13 of gestation), both this IFAP and vimentin were present in the stromal cells in the presumptive corneal region. The IFAP was also present in the surface epithelium. At day 17 and 21, the corneal endothelial layer was developed and contained both the IFAP and vimentin. However, in the corneal stromal cells, the concentration of IFAP (based on the densities of the immunostaining reaction) progressively decreased during the later stages of fetal development (day 24 to day 28), while relative concentrations of vimentin were not reduced significantly. In the corneal stromal cells in the adult rabbit, the IFAP was not detectable while vimentin was still present. For further characterization of this protein, extracts of cultured corneal fibroblasts and fetal corneas were analysed by SDS-PAGE followed by an immunotransblot technique. These analyses indicated that the IFAP was a polypeptide with a Mr of 130k. Therefore, this protein was not vimentin (Mr 55-58k). The presence of this IFAP in the fetal corneas and stromal cells and its absence in the quiescent stromal cells in the adult cornea indicated that this unique IFAP is developmentally regulated in corneal stromal cells, and its association with vimentin filaments may be important during the active state of corneal stromal cells.


Archives of Ophthalmology | 1990

Healing of excimer laser ablated monkey corneas : an immunohistochemical evaluation

Nirmala SundarRaj; Michael J. Geiss; Francisco Fantes; Khalil Hanna; Susan C. Anderson; Keith P. Thompson; Richard A. Thoft; George O. Waring


Investigative Ophthalmology & Visual Science | 1997

Type XII Collagen Contributes to Diversities in Human Corneal and Limbal Extracellular Matrices

Howard Wessel; Susan C. Anderson; Dana Fite; Elias K. Halvas; John Hempel; Nirmala SundarRaj


Investigative Ophthalmology & Visual Science | 2002

Rho and Rho-kinase (ROCK) signaling in adherens and gap junction assembly in corneal epithelium.

Susan C. Anderson; Cynthia Stone; Lisa Tkach; Nirmala SundarRaj


Investigative Ophthalmology & Visual Science | 1993

Trigeminal ganglion neurons affect corneal epithelial phenotype. Influence on type VII collagen expression in vitro.

K S Baker; Susan C. Anderson; E G Romanowski; R A Thoft; Nirmala SundarRaj


Experimental Cell Research | 2004

Rho-mediated assembly of stress fibers is differentially regulated in corneal fibroblasts and myofibroblasts

Susan C. Anderson; Lisa DiCesare; Ivan Tan; Thomas Leung; Nirmala SundarRaj


Investigative Ophthalmology & Visual Science | 2000

Developmentally regulated appearance of spliced variants of type XII collagen in the cornea.

Susan C. Anderson; Sonali Sundarraj; Dana Fite; Howard Wessel; Nirmala SundarRaj


Investigative Ophthalmology & Visual Science | 1998

A Rho-associated protein kinase: differentially distributed in limbal and corneal epithelia.

Nirmala SundarRaj; Paul R. Kinchington; Howard Wessel; B Goldblatt; John R. Hassell; J P Vergnes; Susan C. Anderson


Investigative Ophthalmology & Visual Science | 2001

Regulation of a Rho-Associated Kinase Expression during the Corneal Epithelial Cell Cycle

Susan C. Anderson; Nirmala SundarRaj


Investigative Ophthalmology & Visual Science | 2004

Downstream effects of ROCK signaling in cultured human corneal stromal cells: microarray analysis of gene expression.

Stephen A. K. Harvey; Susan C. Anderson; Nirmala SundarRaj

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Howard Wessel

University of Pittsburgh

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Dana Fite

University of Pittsburgh

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B Goldblatt

University of Pittsburgh

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Cynthia Stone

University of Pittsburgh

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