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肾上腺素对兔角膜上皮氯化物转运的作用部位及方式。

Site and mode of adrenaline action on chloride transport across the rabbit corneal epithelium.

作者信息

Klyce S D, Wong R K

出版信息

J Physiol. 1977 Apr;266(3):777-99. doi: 10.1113/jphysiol.1977.sp011793.

Abstract
  1. Membrane events accompanying adrenaline-stimulated Cl secretion by the isolated rabbit corneal epithelium were investigated with micro-electrodes. 2. Pulses of adrenaline (5 X 10(-10) M final concentration) delivered to either side of the epithelium produced a transient decrease in epithelial resistance occuring at the outer membrane of the squamous cell. This response was reversible and could be blocked completely by total Cl substitution with SO4. 3. Adrenaline generally produced a small transient increase in epithelial potential occuring also at the squamous cell outer membrane. Reversal potentials obtained for the adrenaline response were 45-1 mV for corneal potential and 22-8 mV for outer membrane. 4. Adrenaline always hyperpolarized epithelial potential when the tear side was bathed in Cl-free solution. Reversing the gradient (Cl-free on the stromal side) slowly and consistently changed the response to a depolarization which reached a steady level after 2 hr. 5. The reversal potential of the outer membrane for the adrenaline response was found to be a semilogarithmic function of the tear side Cl concentration over a broad range with a slope of 56 mV/decade. The reversal potential was zero at a tear side Cl concentration of 41-5 mM, which value may be taken to be representative of cell Cl concentration. 6. After abolishing the adrenaline response by perfusing both sides of the tissue with Cl-free solution, reintroduction of Cl to the stromal side led to a recovery of the epithelial potential response in the hyperpolarizing direction. The recovery of the response was inhibited by ouabain (10(-5) M). 7. The results supported the following model for the influence of adrenaline on anion transport in the epithelium: Cl is transported against an electrochemical potential gradient into the cells from the stromal side by an active process linked to Na-k activated ATPase. Normally a slight gradient exists from cells to tears favouring the passive outward diffusion of Cl. This latter process is enhanged by adrenaline, which increases cell cyclic AMP, in turn increasing the passive Cl permeability of the outer cellular membrane.
摘要
  1. 用微电极研究了离体兔角膜上皮细胞在肾上腺素刺激下伴随的膜电位变化。2. 将肾上腺素脉冲(终浓度为5×10⁻¹⁰ M)施加于上皮细胞的任一侧,可导致鳞状细胞外膜处上皮电阻短暂降低。此反应是可逆的,用SO₄完全替代Cl可完全阻断该反应。3. 肾上腺素通常还会使鳞状细胞外膜处的上皮电位产生小的短暂升高。肾上腺素反应的反转电位,角膜电位为45 - 1 mV,外膜电位为22 - 8 mV。4. 当泪液侧浸泡在无Cl溶液中时,肾上腺素总是使上皮电位超极化。反转梯度(基质侧无Cl)会缓慢且持续地将反应转变为去极化,2小时后达到稳定水平。5. 发现肾上腺素反应中外膜的反转电位在很宽的范围内是泪液侧Cl浓度的半对数函数,斜率为56 mV/十倍浓度变化。当泪液侧Cl浓度为41 - 5 mM时,反转电位为零,该值可视为细胞Cl浓度的代表值。6. 用无Cl溶液灌注组织两侧消除肾上腺素反应后,向基质侧重新引入Cl会导致上皮电位反应在超极化方向恢复。哇巴因(10⁻⁵ M)可抑制反应的恢复。7. 这些结果支持了以下肾上腺素对上皮细胞阴离子转运影响的模型:Cl通过与Na - K激活的ATP酶相关的主动过程,逆电化学势梯度从基质侧转运到细胞内。正常情况下,从细胞到泪液存在轻微梯度,有利于Cl的被动向外扩散。肾上腺素可增强后一过程,它增加细胞环磷酸腺苷,进而增加细胞外膜的被动Cl通透性。

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