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大鼠心室肌细胞外向电流发育变化的研究。

A study of the developmental changes in outward currents of rat ventricular myocytes.

作者信息

Kilborn M J, Fedida D

机构信息

Department of Medical Physiology, University of Calgary, Alberta, Canada.

出版信息

J Physiol. 1990 Nov;430:37-60. doi: 10.1113/jphysiol.1990.sp018280.

Abstract
  1. In ventricular muscle of rat heart, the action potential undergoes a major developmental change in shape in the days and weeks immediately after birth. Potassium (K+) currents which may affect the shape of the action potential have been studied using a whole-cell voltage-clamp technique with single cells from the ventricles of rats aged 1-10 days. All recordings were made at 22-23 degrees C. 2. Three discrete ages were chosen. 1-day (cells isolated within 24 h of birth), 5-day and 10-day rats. These parallel the developmental action potential shortening from neonatal towards adult type. Action potentials of single myocytes were initially of long duration at 1 day with a prominent plateau phase, but had shortened somewhat by 10 days of age. The 5-day group exhibited an action potential transitional in character between the earlier and later groups of cells. 3. Potassium current blocking agents were used to assess the importance of the various outward K+ currents for the action potential waveform at different ages. 4-Aminopyridine (4-AP; 2 x 10(-3) M) which preferentially blocks voltage-activated transient outward currents affected action potentials at all ages, but increases in duration were most pronounced in the 10-day group. Only a small prolongation of the initial phase of repolarization of 1-day action potentials was seen. Extracellular barium chloride, 0.1-2 x 10(-3) M, a blocker of inwardly rectifying potassium channels, had a marked slowing effect on repolarization in all the three age groups. Resting membrane depolarization was also produced by barium. 4. Developmental changes in the inwardly rectifying background current (IK1) and the cardiac transient outward current, It, were investigated. IK1 was recorded as the current sensitive to 2 x 10(-3) M-BaCl2 during voltage-clamp steps from a holding potential of -90 mV. It was found to decrease in magnitude, approximately by a factor of three, from 15 to 5 pA/pF during the first ten postnatal days. This reduction can explain the maturational slowing of repolarization during the final phase of the action potential in rat heart. 5. Current-voltage relations for IK1 from the three age groups crossed at the zero current potential at approximately -90 mV, near the calculated VK for the pipette filling solution and an external bath K+ concentration of 5 x 10(-3) M. This suggests that IK1 channels in these cells are quite selective for K+ ions and that developmental changes in the potassium selectivity are not responsible for changes in IK1.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在大鼠心脏的心室肌中,出生后的数天和数周内,动作电位的形状会发生重大的发育变化。利用全细胞膜片钳技术,对1至10日龄大鼠心室的单细胞进行研究,以探讨可能影响动作电位形状的钾(K+)电流。所有记录均在22 - 23摄氏度下进行。2. 选取了三个不同的年龄阶段。1日龄(出生后24小时内分离的细胞)、5日龄和10日龄的大鼠。这与从新生儿型向成年型动作电位缩短的发育过程相平行。单个心肌细胞的动作电位在1日龄时最初持续时间较长,有明显的平台期,但到10日龄时有所缩短。5日龄组的动作电位在特征上处于早期和后期细胞组之间的过渡阶段。3. 使用钾电流阻断剂来评估不同外向K+电流在不同年龄对动作电位波形的重要性。4 - 氨基吡啶(4 - AP;2×10⁻³ M)优先阻断电压激活的瞬时外向电流,它对所有年龄的动作电位都有影响,但在10日龄组中动作电位持续时间的增加最为明显。对于1日龄动作电位,仅观察到复极化初始阶段有小幅度的延长。细胞外氯化钡,浓度为0.1 - 2×10⁻³ M,作为内向整流钾通道的阻断剂,在所有三个年龄组中对复极化都有显著的减慢作用。钡还会导致静息膜去极化。4. 研究了内向整流背景电流(IK1)和心脏瞬时外向电流It的发育变化。在从 - 90 mV的 holding 电位进行电压钳制步骤期间,将IK1记录为对2×10⁻³ M - BaCl2敏感的电流。发现在出生后的前十天内,其幅度大约降低了三倍,从15 pA/pF降至5 pA/pF。这种降低可以解释大鼠心脏动作电位最后阶段复极化的成熟减慢。5. 三个年龄组的IK1电流 - 电压关系在零电流电位处交叉,该电位约为 - 90 mV,接近移液器填充溶液和外部浴液K+浓度为5×10⁻³ M时计算出的VK。这表明这些细胞中的IK1通道对K+离子具有相当的选择性,并且钾选择性的发育变化与IK1的变化无关。(摘要截断于400字)

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