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酸当量在哺乳动物平滑肌细胞膜上的转运。

Movement of acid equivalents across the mammalian smooth muscle cell membrane.

作者信息

Aickin C C

机构信息

University Department of Pharmacology, Oxford.

出版信息

Ciba Found Symp. 1988;139:3-22. doi: 10.1002/9780470513699.ch2.

Abstract

Factors affecting intracellular pH (pHi) in the smooth muscle of guinea pig ureter have been investigated using pH-sensitive microelectrodes. Associated acids and bases appear to have free passage across the cell membrane but results suggest very low permeability to charged acid equivalents, thus implicating carrier-mediated movements in many of the observed pHi transients. Recovery from acidosis in the nominal absence of CO2 was inhibited by removal of Na+ and by the presence of amiloride, indicating that Na+/H+ exchange was responsible. The presence of CO2 resulted in a faster recovery from acidosis but, since intracellular buffering power was not increased, not a substantially faster effective extrusion of protons. Surprisingly, amiloride no longer caused discernable inhibition. Recovery from moderate acidosis remained Na+ dependent but was not inhibited by DIDS or acetazolamide or by the absence of Cl-, suggesting a dominant Na+-, and HCO3(-)-dependent mechanism unlike any hitherto described. Recovery from alkalosis was inhibited by DIDS and Cl(-)-free conditions, indicating that Cl-/HCO3- exchange was involved. Results suggest reversal of this mechanism on extreme acidosis. Experiments in vascular smooth muscle with fluorescent indicators confirm the presence of Na+/H+ exchange but provide conflicting evidence about the presence and properties of the HCO3(-)-dependent mechanism.

摘要

利用对pH敏感的微电极,研究了影响豚鼠输尿管平滑肌细胞内pH(pHi)的因素。相关的酸和碱似乎可自由通过细胞膜,但结果表明,带电荷的酸当量的通透性非常低,因此表明在许多观察到的pHi瞬变中存在载体介导的转运。在名义上无CO2的情况下,酸中毒的恢复受到Na+去除和氨氯吡咪存在的抑制,表明Na+/H+交换起作用。CO2的存在导致酸中毒恢复更快,但由于细胞内缓冲能力未增加,质子的有效排出并未显著加快。令人惊讶的是,氨氯吡咪不再产生明显抑制作用。中度酸中毒的恢复仍然依赖Na+,但不受二异丙基氨基磺酸钠(DIDS)、乙酰唑胺或Cl-缺失的抑制,提示存在一种与迄今所描述的不同的主要依赖Na+和HCO3(-)的机制。碱中毒的恢复受到DIDS和无Cl-条件的抑制,表明涉及Cl-/HCO3-交换。结果表明,在极端酸中毒时该机制会逆转。用荧光指示剂对血管平滑肌进行的实验证实了Na+/H+交换的存在,但关于HCO3(-)依赖机制的存在和特性提供了相互矛盾的证据。

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