Department of Dermatology, UC Davis School of Medicine, 2921 Stockton Blvd., Sacramento, CA 95817, USA.
Prog Retin Eye Res. 2012 Jan;31(1):65-88. doi: 10.1016/j.preteyeres.2011.10.001. Epub 2011 Oct 17.
Epithelia of the cornea, lens and retina contain a vast array of ion channels and pumps. Together they produce a polarized flow of ions in and out of cells, as well as across the epithelia. These naturally occurring ion fluxes are essential to the hydration and metabolism of the ocular tissues, especially for the avascular cornea and lens. The directional transport of ions generates electric fields and currents in those tissues. Applied electric fields affect migration, division and proliferation of ocular cells which are important in homeostasis and healing of the ocular tissues. Abnormalities in any of those aspects may underlie many ocular diseases, for example chronic corneal ulcers, posterior capsule opacity after cataract surgery, and retinopathies. Electric field-inducing cellular responses, termed electrical signaling here, therefore may be an unexpected yet powerful mechanism in regulating ocular cell behavior. Both endogenous electric fields and applied electric fields could be exploited to regulate ocular cells. We aim to briefly describe the physiology of the naturally occurring electrical activities in the corneal, lens, and retinal epithelia, to provide experimental evidence of the effects of electric fields on ocular cell behaviors, and to suggest possible clinical implications.
角膜、晶状体和视网膜的上皮细胞含有大量的离子通道和泵。它们共同产生细胞内外以及上皮细胞之间的极化离子流。这些天然存在的离子通量对于眼组织的水合作用和代谢至关重要,特别是对于无血管的角膜和晶状体。离子的定向转运在这些组织中产生电场和电流。外加电场会影响眼细胞的迁移、分裂和增殖,这对于眼组织的稳态和修复非常重要。这些方面的任何异常都可能是许多眼部疾病的基础,例如慢性角膜溃疡、白内障手术后后囊混浊和视网膜病变。因此,电场诱导的细胞反应,即本文中的电信号,可能是调节眼细胞行为的一种意想不到但强大的机制。内源性电场和外加电场都可以用来调节眼细胞。我们旨在简要描述角膜、晶状体和视网膜上皮细胞中天然存在的电活动生理学,提供电场对眼细胞行为影响的实验证据,并提出可能的临床意义。