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阴离子和阳离子对内部灌注藤壶肌纤维静息膜电位的影响。

Effects of anions and cations on the resting membrane potential of internally perfused barnacle muscle fibres.

作者信息

Lakshminarayanaiah N, Rojas E

出版信息

J Physiol. 1973 Sep;233(3):613-34. doi: 10.1113/jphysiol.1973.sp010326.

Abstract
  1. Single barnacle muscle fibres from Megabalanus psittacus (Darwin) were internally perfused with a number of K salt solutions (200 mM) which were made isotonic to the barnacle saline with sucrose.2. 200 mM-K acetate solution, in general, was found to be more effective than other solutions of K salts in generating and maintaining stable resting membrane potential of -56.0 +/- 0.7 mV (all potentials are referred to the external solutions as ground). The various K salts, on the basis of the magnitude of the resting potential they generated in the muscle fibres, followed the sequence, acetate > isethionate > aspartate > glutamate > fluoride > monohydrogen phosphate > succinate > citrate > sulphate > oxalate > iodobenzoate > ferrocyanide > chlorate > nitrate > chloride > thiocyanate > iodide > bromide > cyanide.3. The resting potential in muscle fibres perfused with solutions of acetate, aspartate and glutamate increased linearly with the logarithm of the K concentration (slope = 30.4 mV for K acetate and 27.4 for K aspartate and glutamate) when the ionic strength of the solutions was progressively increased from 50 to 650 mM. On the other hand, similar increase of ionic strength beyond 200 mM of solutions of K isethionate, fluoride, monohydrogen phosphate, succinate and citrate depolarized the muscle fibres.4. Perfusion of acetate solutions of other alkali metal ions gave low values for the resting potential and followed the sequence K > Na > Rb > Li > Cs. Also NH(4) and Tris ions gave low values for the resting potential which underwent oscillations associated with the twitching of the fibre and occasionally became positive in value (action potential).5. Addition of tetraethyl ammonium chloride (TEA-Cl), 20-100 mM, to K acetate solutions (200 mM) depolarized the fibre membrane and the consequent reduction of resting potential varied linearly with the logarithm of TEA concentration.6. Replacement of chloride ion by acetate or isethionate in the external solution did not change significantly the resting potential although the values were consistently lower by about 2 mV.7. Complete elimination of K in the external solution and reduction of its ionic strength using sucrose depolarized the muscle fibres by about 27 mV when Na was changed from 475 to 1 mM. Under these conditions, external solutions completely in acetate form gave resting potentials which were more positive than those observed in completely chloride solutions by 6-8 mV.8. Replacement of Na by Li, Tris, choline, tetramethyl or tetraethyl ammonium ion in the external solution made the values of the resting potential more positive (depolarization). Similarly increasing the concentration of K (or Cs or Rb in place of K) by correspondingly decreasing the concentration of Na in the outside solution depolarized the fibres and the resting potential became zero at a concentration of 280 mM (or 308 or 1500 mM for Rb or Cs, respectively) on extrapolation.
摘要
  1. 取自紫贻贝(达尔文)的单个藤壶肌纤维用多种钾盐溶液(200 mM)进行内部灌注,这些溶液用蔗糖使其与藤壶生理盐水等渗。

  2. 一般来说,发现200 mM - 醋酸钾溶液在产生和维持稳定的 -56.0 ± 0.7 mV静息膜电位方面比其他钾盐溶液更有效(所有电位均以外部溶液为基准)。根据它们在肌纤维中产生的静息电位大小,各种钾盐的顺序为:醋酸盐>羟乙磺酸盐>天冬氨酸盐>谷氨酸盐>氟化物>磷酸一氢盐>琥珀酸盐>柠檬酸盐>硫酸盐>草酸盐>碘苯甲酸盐>亚铁氰化物>氯酸盐>硝酸盐>氯化物>硫氰酸盐>碘化物>溴化物>氰化物。

  3. 当溶液的离子强度从50 mM逐渐增加到650 mM时,用醋酸盐、天冬氨酸盐和谷氨酸盐溶液灌注的肌纤维中的静息电位随钾浓度的对数呈线性增加(醋酸钾的斜率 = 30.4 mV,天冬氨酸钾和谷氨酸钾的斜率 = 27.4 mV)。另一方面,当羟乙磺酸钾、氟化物、磷酸一氢盐、琥珀酸盐和柠檬酸盐溶液的离子强度在超过200 mM时类似地增加,则会使肌纤维去极化。

  4. 用其他碱金属离子的醋酸盐溶液灌注时,静息电位值较低,顺序为钾>钠>铷>锂>铯。此外,铵离子和三羟甲基氨基甲烷离子也使静息电位值较低,且会伴随纤维的抽搐出现振荡,偶尔电位值会变为正值(动作电位)。

  5. 向200 mM的醋酸钾溶液中添加20 - 100 mM的四乙氯化铵(TEA - Cl)会使纤维膜去极化,随之静息电位的降低与TEA浓度的对数呈线性变化。

  6. 外部溶液中用醋酸盐或羟乙磺酸盐替代氯离子时,静息电位虽始终约低约2 mV,但无显著变化。

  7. 当外部溶液中的钠从475 mM变为1 mM,且用蔗糖完全消除钾并降低其离子强度时,肌纤维去极化约27 mV。在这些条件下,完全为醋酸盐形式的外部溶液产生的静息电位比完全为氯化物溶液中观察到的静息电位更正6 - 8 mV。

  8. 外部溶液中用锂、三羟甲基氨基甲烷、胆碱、四甲基或四乙铵离子替代钠会使静息电位值更正(去极化)。同样,通过相应降低外部溶液中钠的浓度来增加钾(或用铯或铷替代钾)的浓度会使纤维去极化,外推至浓度为280 mM(铷为308 mM或铯为1500 mM时)静息电位变为零。

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