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2.5.1 Trabecular meshwork (80)

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Display all abstracts in classification 2.5.1 Trabecular meshwork

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69309 HDAC Inhibitor-Mediated Epigenetic Regulation of Glaucoma-Associated TGFβ2 in the Trabecular Meshwork
Bermudez JY
Investigative Ophthalmology and Visual Science 2016; 57: 3698-3707
69208 Immunohistochemical Detection of CTGF in the Human Eye
Van Setten GB
Current Eye Research 2016; 0: 1-9
68940 Human trabecular meshwork cells express BMP antagonist mRNAs and proteins
Tovar-Vidales T
Experimental Eye Research 2016; 147: 156-160
69327 miRNA Profile in Three Different Normal Human Ocular Tissues by miRNA-Seq
Drewry M
Investigative Ophthalmology and Visual Science 2016; 57: 3731-3739
68965 Stem Cells in the Trabecular Meshwork for Regulating Intraocular Pressure
Yun H
Journal of Ocular Pharmacology and Therapeutics 2016; 32: 253-260
69484 Curcumin Protects Trabecular Meshwork Cells From Oxidative Stress
Lin C
Investigative Ophthalmology and Visual Science 2016; 57: 4327-4332
69372 The many faces of the trabecular meshwork cell
Stamer WD
Experimental Eye Research 2017; 158: 112-123
69055 From DNA damage to functional changes of the trabecular meshwork in aging and glaucoma
Saccà SC
Ageing research reviews 2016; 29: 26-41
69377 Trabecular meshwork stiffness in glaucoma
Wang K
Experimental Eye Research 2017; 158: 3-12
69029 Pro-fibrotic pathway activation in trabecular meshwork and lamina cribrosa is the main driving force of glaucoma
Zhavoronkov A
Cell cycle (Georgetown, Tex.) 2016; 15: 1643-1652
69195 Prostaglandin EP2 receptor signaling protects human trabecular meshwork cells from apoptosis induced by ER stress through down-regulation of p53
Kalouche G
Biochimica et Biophysica Acta 2016; 1863: 2322-2332
69271 Autophagy and mechanotransduction in outflow pathway cells
Hirt J
Experimental Eye Research 2017; 158: 146-153
69383 Age-related posterior ciliary muscle restriction - A link between trabecular meshwork and optic nerve head pathophysiology
Croft MA
Experimental Eye Research 2017; 158: 187-189
69106 Transplantation of iPSC-derived TM cells rescues glaucoma phenotypes in vivo
Zhu W
Proceedings of the National Academy of Sciences of the United States of America 2016; 113: E3492-500
69384 Smad-independent TGF-β2 signaling pathways in human trabecular meshwork cells
Pervan CL
Experimental Eye Research 2017; 158: 137-145
69458 Evaluation of Outflow Structures In Vivo after the Phacocanaloplasty
Paulaviciute-Baikstiene D
Journal of Ophthalmology 2016; 2016: 4519846
69106 Transplantation of iPSC-derived TM cells rescues glaucoma phenotypes in vivo
Gramlich OW
Proceedings of the National Academy of Sciences of the United States of America 2016; 113: E3492-500
69383 Age-related posterior ciliary muscle restriction - A link between trabecular meshwork and optic nerve head pathophysiology
Lütjen-Drecoll E
Experimental Eye Research 2017; 158: 187-189
69195 Prostaglandin EP2 receptor signaling protects human trabecular meshwork cells from apoptosis induced by ER stress through down-regulation of p53
Boucher C
Biochimica et Biophysica Acta 2016; 1863: 2322-2332
69055 From DNA damage to functional changes of the trabecular meshwork in aging and glaucoma
Gandolfi S
Ageing research reviews 2016; 29: 26-41
69029 Pro-fibrotic pathway activation in trabecular meshwork and lamina cribrosa is the main driving force of glaucoma
Kanherkar RR
Cell cycle (Georgetown, Tex.) 2016; 15: 1643-1652
69208 Immunohistochemical Detection of CTGF in the Human Eye
Trost A
Current Eye Research 2016; 0: 1-9
68965 Stem Cells in the Trabecular Meshwork for Regulating Intraocular Pressure
Zhou Y
Journal of Ocular Pharmacology and Therapeutics 2016; 32: 253-260
69458 Evaluation of Outflow Structures In Vivo after the Phacocanaloplasty
Vaiciuliene R
Journal of Ophthalmology 2016; 2016: 4519846
69372 The many faces of the trabecular meshwork cell
Clark AF
Experimental Eye Research 2017; 158: 112-123

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