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Oculus

2.5.1 Trabecular meshwork (65)

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Display all abstracts in classification 2.5.1 Trabecular meshwork

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84800 Increased expression of periostin and tenascin-C in eyes with neovascular glaucoma secondary to PDR
Ishikawa K
Graefe's Archive for Clinical and Experimental Ophthalmology 2020; 258: 621-628
85215 Generating cell-derived matrices from human trabecular meshwork cell cultures for mechanistic studies
Yemanyi F
Methods in cell biology 2020; 156: 271-307
84461 Integrative transcriptomic and proteomic analysis reveals CD9/ITGA4/PI3K-Akt axis mediates trabecular meshwork cell apoptosis in human glaucoma
Yan J
Journal of cellular and molecular medicine 2020; 24: 814-829
84639 Oxidative stress and antioxidants in the trabecular meshwork
Wang M
PeerJ 2019; 7: e8121
84869 Stem cells from trabecular meshwork cells can secrete extracellular matrix
Wang EX
Biochemical and Biophysical Research Communications 2020; 523: 522-526
85168 Autoantigens in the trabecular meshwork and glaucoma-specific alterations in the natural autoantibody repertoire
Beutgen VM
Clinical & translational immunology 2020; 9: e01101
84783 α5β1 Integrin Promotes Anchoring and Integration of Transplanted Stem Cells to the Trabecular Meshwork in the Eye for Regeneration
Xiong S
Stem cells and development 2020; 29: 290-300
84486 Transcriptome analysis reveals autophagy as regulator of TGFβ/Smad-induced fibrogenesis in trabecular meshwork cells
Nettesheim A
Scientific reports 2019; 9: 16092
85228 Rho-Associated Protein Kinase Inhibitor Treatment Promotes Proliferation and Phagocytosis in Trabecular Meshwork Cells
Chen W
Frontiers in pharmacology 2020; 11: 302
84627 Role of Fibronectin in Primary Open Angle Glaucoma
Faralli JA
Cells 2019; 8:
84909 Nuclear factor-kappa beta signaling is required for transforming growth factor Beta-2 induced ocular hypertension
Hernandez H
Experimental Eye Research 2020; 191: 107920
85209 ZO-1 associates with α3 integrin and connexin43 in trabecular meshwork and Schlemm's canal cells
Li X
International journal of physiology, pathophysiology and pharmacology 2020; 12: 1-10
85124 An advanced in vitro model to assess glaucoma onset
Saccà SC
ALTEX 2020; 37: 265-274
84633 Elevated pressure influences relative distribution of segmental regions of the trabecular meshwork
Vranka JA
Experimental Eye Research 2020; 190: 107888
84748 Effects of Toll-Like Receptor 4 Inhibition on Transforming Growth Factor-β2 Signaling in the Human Trabecular Meshwork
Sharma TP
Journal of Ocular Pharmacology and Therapeutics 2020; 36: 170-178
85168 Autoantigens in the trabecular meshwork and glaucoma-specific alterations in the natural autoantibody repertoire
Beutgen VM
Clinical & translational immunology 2020; 9: e01101
84800 Increased expression of periostin and tenascin-C in eyes with neovascular glaucoma secondary to PDR
Kohno RI
Graefe's Archive for Clinical and Experimental Ophthalmology 2020; 258: 621-628
85124 An advanced in vitro model to assess glaucoma onset
Tirendi S
ALTEX 2020; 37: 265-274
84627 Role of Fibronectin in Primary Open Angle Glaucoma
Filla MS
Cells 2019; 8:
85209 ZO-1 associates with α3 integrin and connexin43 in trabecular meshwork and Schlemm's canal cells
Acott TS
International journal of physiology, pathophysiology and pharmacology 2020; 12: 1-10
85215 Generating cell-derived matrices from human trabecular meshwork cell cultures for mechanistic studies
Vranka J
Methods in cell biology 2020; 156: 271-307
84909 Nuclear factor-kappa beta signaling is required for transforming growth factor Beta-2 induced ocular hypertension
Roberts AL
Experimental Eye Research 2020; 191: 107920
84633 Elevated pressure influences relative distribution of segmental regions of the trabecular meshwork
Staverosky JA
Experimental Eye Research 2020; 190: 107888
84869 Stem cells from trabecular meshwork cells can secrete extracellular matrix
Jiang X
Biochemical and Biophysical Research Communications 2020; 523: 522-526
84748 Effects of Toll-Like Receptor 4 Inhibition on Transforming Growth Factor-β2 Signaling in the Human Trabecular Meshwork
Curry S
Journal of Ocular Pharmacology and Therapeutics 2020; 36: 170-178

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