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豚鼠输尿管平滑肌中钠钙交换的研究。

An investigation of sodium-calcium exchange in the smooth muscle of guinea-pig ureter.

作者信息

Aickin C C, Brading A F, Walmsley D

机构信息

University Department of Pharmacology, Oxford.

出版信息

J Physiol. 1987 Oct;391:325-46. doi: 10.1113/jphysiol.1987.sp016741.

Abstract
  1. After application of ouabain (10(-4) M), the intracellular Na+ activity (alpha iNa) of smooth muscle cells in the guinea-pig ureter stabilizes at a relatively low level which can be rapidly lowered by reduction of external Na+ (Na+o) or elevation of Ca2+o. Both these procedures also elicit a transient contracture. These observations have previously been interpreted as evidence for Na+-Ca2+ exchange. The presence of such an exchange mechanism has now been further investigated by measurements of alpha iNa, tension, ion analysis and 22Na efflux. 2. Ion analysis demonstrated that tissues were able to maintain a high cellular K+ content in the presence of ouabain, but slowly lost K+ and gained Na+ if K+o was also removed, as expected for an infinite outward gradient for K+ and a fully inhibited Na+ pump. 3. Tissues were only able to maintain a low cellular Na+ and high cellular K+ in the presence of ouabain if Ca2+ was present in the bathing solution. Reduction of Ca2+o to very low levels also caused a continual slow rise in alpha iNa in the presence of ouabain, provided that the prolonged depolarization caused by these low levels was prevented by elevation of Mg2+o. Alteration of the membrane potential by changing K+o at constant Na+o showed that alpha iNa decreased by about 1.2 mM for a 10 mV depolarization, within the range from -70 to -30 mV. 4. A small Ca2+o-activated 22Na efflux was observed in ouabain-treated tissues in the absence of Na+o. 40 mM-Ca2+ was not more effective at activating this efflux than was 2.5 mM-Ca2+, while 40 mM-Mg2+ was ineffective. Restoration of the normal Na+o caused a large increase in the rate of 22Na loss. 5. Application of Mn2+ in the presence of ouabain caused a slow rise in alpha iNa and a small decline in resting tension. The fall in alpha iNa on reduction of Na+o was slowed by the presence of Mn2+ (mean half-time increased from 1.7 to 5.0 min) and the concomitant contracture was almost abolished. These results are consistent with a Mn2+-induced inhibition of Na+-Ca2+ exchange. However, the fall in alpha iNa induced by elevation of Ca2+o was unaffected by the presence of Mn2+ and the attendant contracture was, if anything, enhanced. 6. Observation of changes in alpha iNa and tension at various Mn2+ and Ca2+ concentrations demonstrated a competitive interaction between the two divalent cations.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 应用哇巴因(10⁻⁴ M)后,豚鼠输尿管平滑肌细胞内的钠离子活性(αiNa)稳定在相对较低水平,降低细胞外钠离子(Na⁺o)或升高细胞外钙离子(Ca²⁺o)可使其迅速降低。这两种操作还会引发短暂的挛缩。这些观察结果此前被解释为钠钙交换的证据。现在通过测量αiNa、张力、离子分析和²²Na外流对这种交换机制的存在进行了进一步研究。2. 离子分析表明,在存在哇巴因的情况下,组织能够维持较高的细胞内钾离子含量,但如果同时去除钾离子(K⁺o),则会缓慢丢失钾离子并摄取钠离子,这正如钾离子无限向外梯度和完全抑制的钠泵所预期的那样。3. 只有当浴液中存在钙离子时,组织在哇巴因存在的情况下才能维持低细胞内钠离子和高细胞内钾离子水平。如果通过升高镁离子(Mg²⁺o)防止这些低水平钙离子引起的长时间去极化,将细胞外钙离子降低到非常低的水平也会导致在哇巴因存在的情况下αiNa持续缓慢升高。在恒定的细胞外钠离子浓度下改变钾离子浓度来改变膜电位表明,在 -70至 -30 mV范围内,去极化10 mV时αiNa下降约1.2 mM。4. 在不存在细胞外钠离子的情况下,在经哇巴因处理的组织中观察到少量钙离子激活的²²Na外流。40 mM的钙离子激活这种外流的效果并不比2.5 mM的钙离子更有效,而40 mM的镁离子则无效。恢复正常的细胞外钠离子会导致²²Na丢失速率大幅增加。5. 在哇巴因存在的情况下应用锰离子会导致αiNa缓慢升高和静息张力小幅下降。锰离子的存在减缓了降低细胞外钠离子时αiNa的下降(平均半衰期从1.7分钟增加到5.0分钟),同时伴随的挛缩几乎消失。这些结果与锰离子诱导的钠钙交换抑制一致。然而,升高细胞外钙离子诱导的αiNa下降不受锰离子存在的影响,并且伴随的挛缩如果有什么变化的话,反而增强了。6. 在不同的锰离子和钙离子浓度下观察αiNa和张力的变化表明,这两种二价阳离子之间存在竞争性相互作用。(摘要截断于400字)

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