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Featured researches published by C. Zhi.


Human Molecular Genetics | 2010

Transcriptome analysis and molecular signature of human retinal pigment epithelium

N.V. Strunnikova; Arvydas Maminishkis; J.J. Barb; F. Wang; C. Zhi; Yuri V. Sergeev; Wei-Min Chen; Albert O. Edwards; Dwight Stambolian; Gonçalo R. Abecasis; Anand Swaroop; Peter J. Munson; S.S. Miller

Retinal pigment epithelium (RPE) is a polarized cell layer critical for photoreceptor function and survival. The unique physiology and relationship to the photoreceptors make the RPE a critical determinant of human vision. Therefore, we performed a global expression profiling of native and cultured human fetal and adult RPE and determined a set of highly expressed ‘signature’ genes by comparing the observed RPE gene profiles to the Novartis expression database (SymAtlas: http://wombat.gnf.org/index.html) of 78 tissues. Using stringent selection criteria of at least 10-fold higher expression in three distinct preparations, we identified 154 RPE signature genes, which were validated by qRT-PCR analysis in RPE and in an independent set of 11 tissues. Several of the highly expressed signature genes encode proteins involved in visual cycle, melanogenesis and cell adhesion and Gene ontology analysis enabled the assignment of RPE signature genes to epithelial channels and transporters (ClCN4, BEST1, SLCA20) or matrix remodeling (TIMP3, COL8A2). Fifteen RPE signature genes were associated with known ophthalmic diseases, and 25 others were mapped to regions of disease loci. An evaluation of the RPE signature genes in a recently completed AMD genomewide association (GWA) data set revealed that TIMP3, GRAMD3, PITPNA and CHRNA3 signature genes may have potential roles in AMD pathogenesis and deserve further examination. We propose that RPE signature genes are excellent candidates for retinal diseases and for physiological investigations (e.g. dopachrome tautomerase in melanogenesis). The RPE signature gene set should allow the validation of RPE-like cells derived from human embryonic or induced pluripotent stem cells for cell-based therapies of degenerative retinal diseases.


Investigative Ophthalmology & Visual Science | 2009

Apomorphine Regulates TGF-β1 and TGF-β2 Expression in Human Fetal Retinal Pigment Epithelial Cells

Yuhua Zhang; Arvydas Maminishkis; C. Zhi; Rong Li; Rajeev K. Agarwal; Sheldon S. Miller; Christine F. Wildsoet


Investigative Ophthalmology & Visual Science | 2008

Retinoid Processing in Müller Cells

N. Gordiyenko; Robert N. Fariss; J.-Y. Tsai; C. Zhi; N. Strunnikova; Ian M. MacDonald


Investigative Ophthalmology & Visual Science | 2007

Membrane-Bound Carbonic Anhydrases in Human Fetal Retinal Pigment Epithelial Cells (hfRPE)

C. Zhi; F. Wang; T. Banzon; S. Jalickee; Robert N. Fariss; Arvydas Maminishkis; Sheldon S. Miller


Investigative Ophthalmology & Visual Science | 2006

Localization, Expression and Function of Carbonic Anhydrases in Human Fetal Retinal Pigment Epithelial (hfRPE) Cell Cultures and Native Bovine RPE (nbRPE)

C. Zhi; F. Wang; F. Boudreault; T. Banzon; S. Jalickee; Robert N. Fariss; Arvydas Maminishkis; Sheldon S. Miller


Investigative Ophthalmology & Visual Science | 2006

Expression Profiles of Primary Human Fetal Retinal Pigment Epithelial (hfRPE) Cells Cultured on Flask and Transwell

F. Wang; C. Zhi; Jeffrey A. Hammer; Arvydas Maminishkis; Sheldon S. Miller


Investigative Ophthalmology & Visual Science | 2010

MicroRNA-204/211 Regulates Human Retinal Pigment Epithelial Physiology

C. Zhang; F. Wang; Arvydas Maminishkis; Lijing Dong; C. Zhi; Jing Zhao; V. Majerciak; S. Chen; Sheldon S. Miller


Investigative Ophthalmology & Visual Science | 2009

Simvastatin Affects Viability, Morphology and Phagocytosis of Human Cells in Culture

Ruifang Sui; N. Gordiyenko; N. Strunnikova; C. Zhi; Ian M. MacDonald


Investigative Ophthalmology & Visual Science | 2009

Human Fetal and Adult RPE Gene Expression Signature: Function and Disease Association

N. Strunnikova; Jennifer Barb; C. Zhi; Arvydas Maminishkis; Peter J. Munson; Sheldon S. Miller


Investigative Ophthalmology & Visual Science | 2008

Does Carbonic Anhydrase IX and Sodium Bicarbonate Cotransporters 1 or 3 Interact in Cultured Human Fetal Retinal Pigment Epithelial (hfRPE) cells

C. Zhi; Jeffrey Adijanto; T. Banzon; S. Jalickee; Arvydas Maminishkis; Claudiu T. Supuran; Sheldon S. Miller

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Arvydas Maminishkis

National Institutes of Health

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Sheldon S. Miller

National Institutes of Health

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F. Wang

National Institutes of Health

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N. Strunnikova

National Institutes of Health

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Robert N. Fariss

National Institutes of Health

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S. Jalickee

National Institutes of Health

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T. Banzon

National Institutes of Health

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Peter J. Munson

Center for Information Technology

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Jeffrey A. Hammer

National Institutes of Health

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N. Gordiyenko

National Institutes of Health

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