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Mitsuyoshi Azuma

Showing results (1-10 of 56) with videos related to

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Current Eye Research|September 17, 2004
Involvement of cyclooxygenase-2 in rat models of conjunctivitisTakayuki Oka, Thomas Shearer, Mitsuyoshi Azuma
BMC Ophthalmology|October 26, 2021
Tear miRNA expression analysis reveals miR-203 as a potential regulator of corneal epithelial cellsAyumi Nakagawa, Takeshi Nakajima, Mitsuyoshi Azuma
Investigative Ophthalmology & Visual Science|July 24, 2014
Loss of calpastatin leads to activation of calpain in human lens epithelial cellsTakeshi Nakajima, Thomas R Shearer, Mitsuyoshi Azuma
Experimental Eye Research|June 15, 2015
Galectin-3 enhances extracellular matrix associations and wound healing in monkey corneal epitheliumAtsuko Fujii, Thomas R Shearer, Mitsuyoshi Azuma
Current Eye Research|September 29, 2011
Involvement of calpain 2 in ionomycin-induced cell death in cultured mouse lens epithelial cellsTakeshi Nakajima, Thomas R Shearer, Mitsuyoshi Azuma
Investigative Ophthalmology & Visual Science|September 23, 2015
Hypoxia Activates Calpains in the Nerve Fiber Layer of Monkey Retinal ExplantsMasayuki Hirata, Thomas R Shearer, Mitsuyoshi Azuma
Journal of Ocular Pharmacology and Therapeutics : the Official Journal of the Association for Ocular Pharmacology and Therapeutics|October 28, 2009
Calpain inhibitor SNJ-1945 attenuates events prior to angiogenesis in cultured human retinal endothelial cellsHong Ma, Ayumi Tochigi, Thomas R Shearer, et al.
Molecular Vision|June 25, 2014
Mechanism for laser-induced neovascularization in rat choroid: accumulation of integrin α chain-positive cells and their ligandsTakeshi Nakajima, Masayuki Hirata, Thomas R Shearer, et al.
Experimental Eye Research|July 12, 2025
Hypoxia-induced activation of calpain and oxidative stress in mitochondria leads to RGC death in human iPSC-derived retinal organoidsMasayuki Hirata, Yayoi Kishimoto, Thomas R Shearer, et al.
Experimental Eye Research|September 16, 2024
FK962 protects retinal ganglion cell under hypoxia/reoxygenation: Possible involvement of glial cell line-derived neurotrophic factor signaling pathwayMomoko Kobayashi-Otsugu, Yayoi Kishimoto, Mitsuyoshi Azuma, et al.
Pageof 6

Showing results (1-10 of 56) with videos related to

Sort By:
Pageof 6
Current Eye Research|September 17, 2004
Involvement of cyclooxygenase-2 in rat models of conjunctivitisTakayuki Oka, Thomas Shearer, Mitsuyoshi Azuma
BMC Ophthalmology|October 26, 2021
Tear miRNA expression analysis reveals miR-203 as a potential regulator of corneal epithelial cellsAyumi Nakagawa, Takeshi Nakajima, Mitsuyoshi Azuma
Investigative Ophthalmology & Visual Science|July 24, 2014
Loss of calpastatin leads to activation of calpain in human lens epithelial cellsTakeshi Nakajima, Thomas R Shearer, Mitsuyoshi Azuma
Experimental Eye Research|June 15, 2015
Galectin-3 enhances extracellular matrix associations and wound healing in monkey corneal epitheliumAtsuko Fujii, Thomas R Shearer, Mitsuyoshi Azuma
Current Eye Research|September 29, 2011
Involvement of calpain 2 in ionomycin-induced cell death in cultured mouse lens epithelial cellsTakeshi Nakajima, Thomas R Shearer, Mitsuyoshi Azuma
Investigative Ophthalmology & Visual Science|September 23, 2015
Hypoxia Activates Calpains in the Nerve Fiber Layer of Monkey Retinal ExplantsMasayuki Hirata, Thomas R Shearer, Mitsuyoshi Azuma
Journal of Ocular Pharmacology and Therapeutics : the Official Journal of the Association for Ocular Pharmacology and Therapeutics|October 28, 2009
Calpain inhibitor SNJ-1945 attenuates events prior to angiogenesis in cultured human retinal endothelial cellsHong Ma, Ayumi Tochigi, Thomas R Shearer, et al.
Molecular Vision|June 25, 2014
Mechanism for laser-induced neovascularization in rat choroid: accumulation of integrin α chain-positive cells and their ligandsTakeshi Nakajima, Masayuki Hirata, Thomas R Shearer, et al.
Experimental Eye Research|July 12, 2025
Hypoxia-induced activation of calpain and oxidative stress in mitochondria leads to RGC death in human iPSC-derived retinal organoidsMasayuki Hirata, Yayoi Kishimoto, Thomas R Shearer, et al.
Experimental Eye Research|September 16, 2024
FK962 protects retinal ganglion cell under hypoxia/reoxygenation: Possible involvement of glial cell line-derived neurotrophic factor signaling pathwayMomoko Kobayashi-Otsugu, Yayoi Kishimoto, Mitsuyoshi Azuma, et al.
Pageof 6