Mathias R T, Rae J L
Curr Eye Res. 1985 Apr;4(4):421-30. doi: 10.3109/02713688509025156.
Electro-chemical steady state in the lens depends on the transport properties of its various constituent cells. These transport properties, at a minimum, include the active transport of Na/K and the passive leak of Na, K and Cl through membrane channels. The work of Kinsey and Reddy (1), first localized active Na/K transport to the anterior surface cell membranes. In this paper, we estimate that the pump current density is 2 to 4 mu amp/cm2 of surface membrane, by measuring the change in intracellular voltage when the lens is exposed to 100 microM ouabain. Our impedance data suggest the passive leak of K is mostly across the membranes of surface cells, but whether these are anterior or posterior cells is not yet known. Membranes of the fiber cells throughout the volume of the lens appear to have channels that are selective for Na and Cl but few K channels. A simple model of electro-chemical steady state is derived to relate localized transport properties to the resting voltages in the lens. The above described localization of properties predicts radially circulating currents at steady state and spatial gradients in the intracellular and extracellular voltages. These predictions are compared to our measurements of steady state voltages and we find good agreement.
晶状体中的电化学稳态取决于其各种组成细胞的转运特性。这些转运特性至少包括钠/钾的主动转运以及钠、钾和氯通过膜通道的被动泄漏。金西和雷迪(1)的研究首次将钠/钾的主动转运定位到前表面细胞膜。在本文中,我们通过测量晶状体暴露于100微摩尔哇巴因时细胞内电压的变化,估计泵电流密度为表面膜2至4微安/平方厘米。我们的阻抗数据表明,钾的被动泄漏主要发生在表面细胞的膜上,但这些细胞是前表面细胞还是后表面细胞尚不清楚。晶状体整个体积内的纤维细胞膜似乎具有对钠和氯有选择性的通道,但钾通道很少。推导了一个简单的电化学稳态模型,以将局部转运特性与晶状体中的静息电压联系起来。上述特性的定位预测了稳态下的径向循环电流以及细胞内和细胞外电压的空间梯度。将这些预测结果与我们对稳态电压的测量结果进行比较,我们发现两者吻合良好。