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The role of gap junctions in cell death and neuromodulation in the retina

摘要Vision altering diseases, such as glaucoma, diabetic retinopathy, age-related macular degeneration, myopia, retinal vascular disease, traumatic brain injuries and others cripple many lives and are projected to continue to cause anguish in the foreseeable future. Gap junctions serve as an emerging target for neuromodulation and possible regeneration as they directly connect healthy and/or diseased cells, thereby playing a crucial role in pathophysiology. Since they are permeable for macromolecules, able to cross the cellular barriers, they show duality in illness as a cause and as a therapeutic target. In this review, we take recent advancements in gap junction neuromodulation (pharmacological blockade, gene therapy, electrical and light stimulation) into account, to show the gap junction's role in neuronal cell death and the possible routes of rescuing neuronal and glial cells in the retina succeeding illness or injury.

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作者 Gergely Szarka [1] Márton Balogh [1] ádám J.Teng?lics [1] Alma Ganczer [1] Béla V?lgyi [2] Tamás Kovács-?ller [3] 学术成果认领
作者单位 János Szentágothai Research Centre,University of Pécs,Pécs,Hungary;Retinal Electrical Synapses Research Group,National Brain Research Program (NAP 2.0),Hungarian Academy of Sciences,Budapest,Hungary;Department of Experimental Zoology and Neurobiology,University of Pécs,Pécs,Hungary [1] János Szentágothai Research Centre,University of Pécs,Pécs,Hungary;Retinal Electrical Synapses Research Group,National Brain Research Program (NAP 2.0),Hungarian Academy of Sciences,Budapest,Hungary;Department of Experimental Zoology and Neurobiology,University of Pécs,Pécs,Hungary;Medical School,University of Pécs,Pécs,Hungary [2] János Szentágothai Research Centre,University of Pécs,Pécs,Hungary;Retinal Electrical Synapses Research Group,National Brain Research Program (NAP 2.0),Hungarian Academy of Sciences,Budapest,Hungary;Medical School,University of Pécs,Pécs,Hungary [3]
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发布时间 2021-03-09(万方平台首次上网日期,不代表论文的发表时间)
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中国神经再生研究(英文版)

中国神经再生研究(英文版)

2021年16卷10期

1911-1920页

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