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终板电位的低量子含量降低了新生大鼠膈肌神经肌肉传递的安全系数。

Low quantal content of the endplate potential reduces safety factor for neuromuscular transmission in the diaphragm of the newborn rat.

作者信息

Wareham A C, Morton R H, Meakin G H

机构信息

Department of Physiological Sciences, University of Manchester Medical School.

出版信息

Br J Anaesth. 1994 Feb;72(2):205-9. doi: 10.1093/bja/72.2.205.

Abstract

We have used phrenic nerve-hemidiaphragm preparations from rats aged 11-28 days to determine the electrophysiological basis of the three-fold increase in sensitivity of the neonatal neuromuscular junction to non-depolarizing neuromuscular blocking drugs. The mean resting membrane potential (RMP) of intact muscle fibres at 19-21 degrees C increased from -67.1 (SEM 0.6) mV at 11 days to -75.8 (0.06) mV at 28 days. Over the same age range the mean size of miniature endplate potentials (MEPP) decreased from 1.7 (0.1) mV to 1.4 (0.03) mV, and the threshold depolarization to produce a muscle action potential increased from 6.8 (0.4) mV to 9.5 (0.6) mV. The quantal content of the evoked endplate potential (EPP) calculated from EPP and MEPP measured in cut muscle fibres was only 6.6 (0.9) at 11 days, but this increased to 21.1 (2.3) at 21 days. As a result of the low quantal content of the EPP, the safety factor for neuromuscular transmission was only 1.7 at 11 days, compared with 2.8 at 20 days. A safety factor of 1.7 in the youngest rats indicates that block of only about 40% of postjunctional acetylcholine receptors would result in failure of neuromuscular transmission. Hence, a low quantal content of EPP, leading to a low safety factor for neuromuscular transmission, probably underlies the increased sensitivity to non-depolarizing neuromuscular blocking drugs of young rats and, by inference, human neonates.

摘要

我们使用了11至28日龄大鼠的膈神经-半膈肌制备物,以确定新生神经肌肉接头对非去极化神经肌肉阻滞剂敏感性增加三倍的电生理基础。在19 - 21摄氏度下,完整肌纤维的平均静息膜电位(RMP)从11日龄时的-67.1(标准误0.6)mV增加到28日龄时的-75.8(0.06)mV。在相同年龄范围内,微小终板电位(MEPP)的平均幅度从1.7(0.1)mV降至1.4(0.03)mV,产生肌肉动作电位的阈去极化从6.8(0.4)mV增加到9.5(0.6)mV。根据在切断的肌纤维中测量的EPP和MEPP计算出的诱发终板电位(EPP)的量子含量在11日龄时仅为6.6(0.9),但在21日龄时增加到21.1(2.3)。由于EPP的量子含量较低,神经肌肉传递的安全系数在11日龄时仅为1.7,而在20日龄时为2.8。最年幼大鼠的安全系数为1.7表明,仅约40%的接头后乙酰胆碱受体被阻断就会导致神经肌肉传递失败。因此,EPP的量子含量低,导致神经肌肉传递的安全系数低,可能是幼鼠以及由此推断人类新生儿对非去极化神经肌肉阻滞剂敏感性增加的基础。

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