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Dive into the research topics where Cheri Stowell is active.

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Featured researches published by Cheri Stowell.


Progress in Retinal and Eye Research | 2017

The connective tissue phenotype of glaucomatous cupping in the monkey eye - Clinical and research implications

Hongli Yang; Juan Reynaud; Howard Lockwood; Galen Williams; Christy Hardin; Luke Reyes; Cheri Stowell; Stuart K. Gardiner; Claude F. Burgoyne

&NA; In a series of previous publications we have proposed a framework for conceptualizing the optic nerve head (ONH) as a biomechanical structure. That framework proposes important roles for intraocular pressure (IOP), IOP‐related stress and strain, cerebrospinal fluid pressure (CSFp), systemic and ocular determinants of blood flow, inflammation, auto‐immunity, genetics, and other non‐IOP related risk factors in the physiology of ONH aging and the pathophysiology of glaucomatous damage to the ONH. The present report summarizes 20 years of technique development and study results pertinent to the characterization of ONH connective tissue deformation and remodeling in the unilateral monkey experimental glaucoma (EG) model. In it we propose that the defining pathophysiology of a glaucomatous optic neuropathy involves deformation, remodeling, and mechanical failure of the ONH connective tissues. We view this as an active process, driven by astrocyte, microglial, fibroblast and oligodendrocyte mechanobiology. These cells, and the connective tissue phenomena they propagate, have primary and secondary effects on retinal ganglion cell (RGC) axon, laminar beam and retrolaminar capillary homeostasis that may initially be “protective” but eventually lead to RGC axonal injury, repair and/or cell death. The primary goal of this report is to summarize our 3D histomorphometric and optical coherence tomography (OCT)‐based evidence for the early onset and progression of ONH connective tissue deformation and remodeling in monkey EG. A second goal is to explain the importance of including ONH connective tissue processes in characterizing the phenotype of a glaucomatous optic neuropathy in all species. A third goal is to summarize our current efforts to move from ONH morphology to the cell biology of connective tissue remodeling and axonal insult early in the disease. A final goal is to facilitate the translation of our findings and ideas into neuroprotective interventions that target these ONH phenomena for therapeutic effect. HighlightsONH connective tissue deformation and remodeling define the optic neuropathy of glaucoma.The lamina cribrosa thickens, migrates into the pia, then thins in monkey experimental glaucoma.Lamina cribrosa deformation can be detected early in monkey experimental glaucoma by OCT.There are no experimental models of normal tension glaucoma in the monkey eye.Retinal ganglion cell axon loss, alone, does not create “glaucomatous” cupping.


International journal of physiology, pathophysiology and pharmacology | 2010

Retinal proteomic changes under different ischemic conditions - implication of an epigenetic regulatory mechanism

Cheri Stowell; Lin Wang; Brian Arbogast; Jing-Quan Lan; George A. Cioffi; Claude F. Burgoyne; An Zhou


Experimental Eye Research | 2011

Retinal proteomic changes following unilateral optic nerve transection and early experimental glaucoma in non-human primate eyes.

Cheri Stowell; Brian Arbogast; George A. Cioffi; C. F. Burgoyne; A. Zhou


Experimental Eye Research | 2017

Biological aspects of axonal damage in glaucoma: A brief review.

Cheri Stowell; C. F. Burgoyne; Ernst R. Tamm; C. Ross Ethier; John E. Dowling; Crawford Downs; Mark H. Ellisman; Steven K. Fisher; Brad Fortune; Marcus Fruttiger; Tatjana C. Jakobs; Geoffrey P. Lewis; Richard H. Masland; Claire H. Mitchell; John C. Morrison; S.C. Sharma; Ian A. Sigal; Michael V. Sofroniew; Lin Wang; Janey L. Wiggs; Samuel Wu


Investigative Ophthalmology & Visual Science | 2014

NON-HUMAN PRIMATE (NHP) OPTIC NERVE HEAD (ONH) PROTEOMIC CHANGE IN EARLY EXPERIMENTAL GLAUCOMA (EEG)

Claude F. Burgoyne; Cheri Stowell; Geeng-Fu Jang; Lei Zhang; Belinda Willard; Jack S Crabb; John W. Crabb


Investigative Ophthalmology & Visual Science | 2014

MYELIN-RELATED PROTEINS ARE DECREASED IN THE IMMEDIATE RETROLAMINAR OPTIC NERVE (ON) IN NON-HUMAN PRIMATES (NHP) IN EARLY EXPERIMENTAL GLAUCOMA (EEG)

Cheri Stowell; Geeng-Fu Jang; Juan Reynaud; Stuart K. Gardiner; Lei Zhang; Jack S Crabb; Belinda Willard; John W. Crabb; Claude F. Burgoyne


Investigative Ophthalmology & Visual Science | 2014

Quantitative Proteomic Analysis Of Non-Human Primate (NHP) Optic Nerve (ON) In Early Experimental Glaucoma (EEG)

Lei Zhang; Cheri Stowell; Geeng-Fu Jang; Jack S Crabb; Belinda Willard; Claude F. Burgoyne; John W. Crabb


Investigative Ophthalmology & Visual Science | 2014

Quantitative Proteomic Analysis Of Non-Human Primate (NHP) Retina In Early Experimental Glaucoma (EEG)

Geeng-Fu Jang; Cheri Stowell; Lei Zhang; Jack S Crabb; Belinda Willard; Claude F. Burgoyne; John W. Crabb


Investigative Ophthalmology & Visual Science | 2014

Quantitative Proteomic Analysis of Non-Human Primate (NHP) Peripapillary (PP) Sclera in Early Experimental Glaucoma (EEG)

Jack S Crabb; Cheri Stowell; Geeng-Fu Jang; Lei Zhang; Belinda Willard; Claude F. Burgoyne; John W. Crabb


Investigative Ophthalmology & Visual Science | 2009

Retinal Proteomic Change Following Unilateral Optic Nerve Transection and Early Experimental Glaucoma in Non-Human Primate (NHP) Eyes

Cheri Stowell; B. Arbogast; G. Williams; George A. Cioffi; C. F. Burgoyne; An Zhou

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George A. Cioffi

Columbia University Medical Center

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An Zhou

Morehouse School of Medicine

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