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大鼠视网膜色素上皮对叠氮化物和硫氰酸盐的电反应。

Electrical responses of the rat's retinal pigment epithelium to azide and thiocyanate.

作者信息

Ando H, Noell W K

机构信息

Department of Ophthalmology, University of Kansas Medical Center, Kansas City 66103.

出版信息

Jpn J Physiol. 1993;43(3):299-309. doi: 10.2170/jjphysiol.43.299.

Abstract

In the rat under urethane anesthesia, a fast intravenous injection of a bolus of sodium azide elicited a transient cornea-positive change in transocular potential (azide response). A bolus injection of sodium thiocyanate (NaSCN) produced a cornea-negative response (SCN- response) with a similar rising phase as the azide response, but with a faster return from the peak. The peak amplitude depended on bolus volume, concentration, animal strain, and age. For more than 24 h, the azide and SCN- responses could be recorded repeatedly from a single rat with little variation in peak amplitudes. Following an administration of iodate, known to degenerate the retinal pigment epithelium (RPE), the transocular d.c. potential decreased; the azide response became smaller and then was inverted in polarity, whereas the SCN- response became larger. Azide and SCN- are assumed to depolarize and hyperpolarize the basal membrane of RPE, respectively. The equilibrium potential of ions passing through the putative azide-sensitive channels is assumed less negative than resting potential of RPE cells. The SCN- response probably represents a diffusion potential of SCN- permeating through anionic channels at a higher rate than Cl-. Results demonstrate the feasibility of in vivo electrophysiological measurement of the functional state and the structural integrity of RPE under pathological conditions.

摘要

在氨基甲酸乙酯麻醉的大鼠中,快速静脉注射大剂量叠氮化钠会引起瞬态经眼电位角膜阳性变化(叠氮化物反应)。大剂量注射硫氰酸钠(NaSCN)会产生角膜阴性反应(SCN-反应),其上升阶段与叠氮化物反应相似,但从峰值恢复得更快。峰值幅度取决于大剂量的体积、浓度、动物品系和年龄。在超过24小时的时间里,可以从同一只大鼠反复记录叠氮化物和SCN-反应,峰值幅度变化很小。给予已知会使视网膜色素上皮(RPE)退化的碘酸盐后,经眼直流电位降低;叠氮化物反应变小,然后极性反转,而SCN-反应变大。假定叠氮化物和SCN-分别使RPE的基底膜去极化和超极化。假定通过假定的叠氮化物敏感通道的离子平衡电位比RPE细胞的静息电位更负。SCN-反应可能代表SCN-通过阴离子通道以高于Cl-的速率渗透的扩散电位。结果证明了在病理条件下对RPE的功能状态和结构完整性进行体内电生理测量的可行性。

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