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犬心脏浦肯野纤维中细胞内钠活性、钙与毒毛花苷原性肌力作用之间的关系。

The relationship among intracellular sodium activity, calcium, and strophanthidin inotropy in canine cardiac Purkinje fibers.

作者信息

Vassalle M, Lee C O

出版信息

J Gen Physiol. 1984 Feb;83(2):287-307. doi: 10.1085/jgp.83.2.287.

Abstract

The role of sodium and calcium ions in strophanthidin inotropy was studied by measuring simultaneously the electrical, mechanical, and intracellular sodium ion activities in electrically driven cardiac Purkinje fibers under conditions that change the intracellular sodium or calcium level (tetrodotoxin, strophanthidin, high calcium, and norepinephrine). Tetrodotoxin (TTX; 1-5 X 10(-6)M) shifted the action potential plateau to more negative values, shortened the action potential duration, and decreased the contractile tension and the intracellular sodium ion activity (aiNa). The changes in tension and in aiNa caused by TTX appear to be related since they had similar time courses. Strophanthidin (2-5 X 10(-7)M) increased tension and aiNa less in the presence of TTX, and, for any given value of aiNa, tension was less than in the absence of TTX. Increasing extracellular calcium (from 1.8 to 3.3-3.6 mM) or adding norepinephrine (0.5-1 X 10(-6)M) increased tension and decreased aiNa less in the presence than in the absence of TTX. When two of the above procedures were combined, the results were different. Thus, during the increase in aiNa and tension caused by strophanthidin in the presence of TTX, increasing calcium or adding norepinephrine increased tension markedly but did not increase aiNa further. In a TTX-high calcium or TTX-norepinephrine solution, adding strophanthidin increased both tension and aiNa, and the increase in tension was far greater than in the presence of TTX alone. The results indicate that: (a) the contractile force in Purkinje fibers is affected by a change in aiNa; (b) a decrease in aiNa by TTX markedly reduces the inotropic effect of strophanthidin, possibly as a consequence of depletion of intracellular calcium; (c) increasing calcium influx with norepinephrine or high calcium in the TTX-strophanthidin solution produces a potentiation of tension development, even if aiNa does not increase further; and (d) when the calcium influx is already increased by high calcium or norepinephrine, strophanthidin has its usual inotropic effect even in the presence of TTX. In conclusion, the positive inotropic effect of strophanthidin requires that an increase in aiNa be associated with suitable calcium availability.

摘要

通过在改变细胞内钠或钙水平的条件下(河豚毒素、毒毛花苷、高钙和去甲肾上腺素)同时测量电驱动的心脏浦肯野纤维中的电活动、机械活动和细胞内钠离子活性,研究了钠离子和钙离子在毒毛花苷变力作用中的作用。河豚毒素(TTX;1 - 5×10⁻⁶M)使动作电位平台移向更负的值,缩短动作电位持续时间,并降低收缩张力和细胞内钠离子活性(aiNa)。TTX引起的张力和aiNa的变化似乎相关,因为它们具有相似的时间进程。在存在TTX的情况下,毒毛花苷(2 - 5×10⁻⁷M)增加张力和aiNa的幅度较小,并且对于任何给定的aiNa值,张力均低于不存在TTX时。增加细胞外钙(从1.8 mM增加到3.3 - 3.6 mM)或添加去甲肾上腺素(0.5 - 1×10⁻⁶M)在存在TTX时比不存在TTX时增加张力的幅度小,且降低aiNa的幅度也小。当将上述两种操作组合时,结果不同。因此,在存在TTX的情况下毒毛花苷引起aiNa和张力增加期间,增加钙或添加去甲肾上腺素可显著增加张力,但不会进一步增加aiNa。在TTX - 高钙或TTX - 去甲肾上腺素溶液中,添加毒毛花苷可增加张力和aiNa,且张力增加幅度远大于仅存在TTX时。结果表明:(a)浦肯野纤维中的收缩力受aiNa变化的影响;(b)TTX使aiNa降低显著降低了毒毛花苷的变力作用,这可能是细胞内钙耗竭的结果;(c)在TTX - 毒毛花苷溶液中,去甲肾上腺素或高钙增加钙内流可增强张力发展,即使aiNa没有进一步增加;(d)当高钙或去甲肾上腺素已经增加了钙内流时,即使存在TTX,毒毛花苷仍具有其通常的变力作用。总之,毒毛花苷的正性变力作用要求aiNa增加与合适的钙可用性相关联。

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