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The Effect of High Sodium Concentration on the Action Potential of the Skate Heart

机译:高钠浓度对滑冰心脏动作电位的影响

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摘要

It already has been well documented that the maximum rate of depolarization and amplitude of action potentials are directly dependent on [Na+]o in the vertebrate myocardium. Almost all studies have been carried out at low sodium concentration ranges by substituting NaCl for other substances. Action potentials should be demonstrable in higher sodium concentrations, but cells are inevitably damaged by osmotic changes. The blood of elasmobranchs is nearly isosmotic with sea water, but NaCl accounts for 54.5% of the osmotic pressure and 38.7% of it is maintained by urea molecules. Utilizing this special situation in elasmobranchs, the effect of high sodium concentration was studied up to 170% of normal sodium concentration, while still retaining isosmotic condition. The rate of depolarization, amplitude, and duration of the myocardial action potential all increased in direct proportion to [Na+]o, and no depressant effect on transmembrane action potentials was observed in solutions of high sodium concentration. With regard to depolarization rate, the regression curve fitted by the least squares method passed through zero within two standard errors. At high sodium levels, the overshoot changed as expected theoretically, but at lower ranges it deviated from the theoretical values. [Na+]i, and [K+]i, in this tissue have been determined, and these data are explained on the basis of the Na theory.
机译:已经有充分的文献证明,脊椎动物心肌中最大去极化率和动作电位幅度直接取决于[Na + ] o。几乎所有的研究都是在低钠浓度范围内用NaCl代替其他物质进行的。在较高的钠浓度下应显示出动作电位,但渗透变化不可避免地会破坏细胞。弹性支气管的血液几乎与海水等渗,但氯化钠占渗透压的54.5%,其中38.7%由尿素分子维持。利用这种特殊情况,在弹力支中,研究了高钠浓度的影响,最高可达正常钠浓度的170%,同时仍保持等渗状态。心肌动作电位的去极化率,幅度和持续时间均与[Na + ] o成正比增加,在高钠浓度的溶液中未观察到对跨膜动作电位的抑制作用。关于去极化率,通过最小二乘法拟合的回归曲线在两个标准误差内通过零。在较高的钠含量下,超调量按理论上的预期变化,但在较低的范围内,其偏离理论值。已经确定了该组织中的[Na + ] i和[K + ] i,并根据Na理论解释了这些数据。

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