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乙酰胆碱诱导的小鼠泪腺腺泡细胞中钠离子内流:通过细胞内钠离子活性测量证明多种钠离子转运机制

Acetylcholine-induced Na+ influx in the mouse lacrimal gland acinar cells: demonstration of multiple Na+ transport mechanisms by intracellular Na+ activity measurements.

作者信息

Saito Y, Ozawa T, Nishiyama A

机构信息

Department of Physiology, Tohoku University School of Medicine, Miyagi, Japan.

出版信息

J Membr Biol. 1987;98(2):135-44. doi: 10.1007/BF01872126.

Abstract

In the isolated, superfused mouse lacrimal gland, intracellular Na+ activities (aNai) of the acinar cells were directly measured with double-barreled Na+-selective microelectrodes. In the nonstimulated condition aNai was 6.5 +/- 0.5 mM and membrane potential (Vm) was -38.9 +/- 0.4 mV. Addition of 1 mM ouabain or superfusion with a K+-free solution slightly depolarized the membrane and caused a gradual increase in aNai. Stimulation with acetylcholine (ACh, 1 microM) caused a membrane hyperpolarization by about 20 mV and an increase in aNai by about 9 mM in 5 min. The presence of amiloride (0.1 mM) reduced the ACh-induced increase in aNai by approximately 50%, without affecting Vm and input resistance in both nonstimulated and ACh-stimulated conditions. Acid loading the acinar cells by an addition/withdrawal of 20 mM NH4Cl or by replacement of Tris+-buffer saline solution with HCO3-/CO2-buffered solution increased aNai by a few mM. Superfusion with a Cl(-)-free NO3- solution or 1 mM furosemide or 0.5 mM bumetanide-containing solution had little effect on the resting aNai levels, however, it reduced the ACh-induced increase in aNai by about 30%. Elimination of metabolite anions (glutamate, fumarate and pyruvate) from the superfusate reduced both the resting aNai and the ACh-induced increase in aNai. The present results suggest the presence of multiple Na+ entry mechanisms activated by ACh, namely, Na+/H+ exchange, Na-K-Cl cotransport and organic substrate-coupled Na+ transport mechanisms.

摘要

在分离的、经超灌流的小鼠泪腺中,用双管钠选择性微电极直接测量腺泡细胞的细胞内钠离子活性(aNai)。在非刺激状态下,aNai为6.5±0.5 mM,膜电位(Vm)为-38.9±0.4 mV。添加1 mM哇巴因或用无钾溶液进行超灌流会使膜轻微去极化,并导致aNai逐渐升高。用乙酰胆碱(ACh,1 μM)刺激可使膜超极化约20 mV,并在5分钟内使aNai升高约9 mM。氨氯吡咪(0.1 mM)的存在使ACh诱导的aNai升高降低约50%,在非刺激和ACh刺激状态下均不影响Vm和输入电阻。通过添加/去除20 mM NH4Cl或用HCO3-/CO2缓冲溶液替代Tris+缓冲盐溶液使腺泡细胞酸负荷,可使aNai升高几mM。用无Cl(-)的NO3-溶液、1 mM呋塞米或含0.5 mM布美他尼的溶液进行超灌流对静息aNai水平影响不大,然而,它使ACh诱导的aNai升高降低约30%。从超灌流液中去除代谢阴离子(谷氨酸、富马酸和丙酮酸)可降低静息aNai以及ACh诱导的aNai升高。目前的结果表明存在多种由ACh激活的钠离子进入机制,即钠/氢交换、钠-钾-氯共转运和有机底物偶联的钠离子转运机制。

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