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The Effect of Low Ionic Strength Extracellular Solutions on the Resting Potential in Skeletal Muscle Fibers

机译:低离子强度细胞外溶液对骨骼肌纤维静息电位的影响

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摘要

Intracellular measurements of the resting potential were made in fibers of the frog sartorius muscle in solutions of varying salt composition and concentration to determine the effects of low ionic strength extracellular solutions on the resting potential. Changes in the glass microelectrode tip potential in low ionic strength solutions were minimized by adding ThCl4 to the extracellular solution. These experimental conditions allowed measurement of the relationship of the resting potential to the concentration of the salt in the extracellular solution by replacing it with the nonionic substance, sucrose. Substitution of sucrose for the extracellular NaCl produced a stable depolarization which was logarithmically related to the NaCl concentration. Substitution of sucrose for choline Cl, instead of NaCl, produced the same degree of depolarization. When Na salts of anions less permeable than chloride (Br, I, NO3) were used, the resting potentials in 116 mM solutions were close to those with chloride (±3mv). The depolarizations produced in low ionic strength solutions of these salts were significantly less than those with chloride.
机译:在盐成分和浓度不同的溶液中,在蛙肉肌的纤维中进行细胞内静息电位的测定,以确定低离子强度细胞外溶液对静息电位的影响。通过向细胞外溶液中添加ThCl4,可将低离子强度溶液中玻璃微电极尖端电位的变化降至最低。这些实验条件通过用非离子物质蔗糖代替,可以测量静息电位与细胞外溶液中盐浓度的关系。用蔗糖替代细胞外NaCl可产生稳定的去极化,这与NaCl浓度呈对数关系。用蔗糖代替胆碱Cl代替NaCl,产生了相同程度的去极化。当使用渗透性比氯化物(Br,I,NO3)低的阴离子的Na盐时,在116 mM溶液中的静止电位接近于具有氯化物(±3mv)的静止电位。这些盐在低离子强度溶液中产生的去极化明显少于氯化物。

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