Schuetze S M, Vicini S
J Physiol. 1986 Jun;375:153-67. doi: 10.1113/jphysiol.1986.sp016111.
Miniature end-plate currents (m.e.p.c.s.) were recorded extracellularly from individual fibres in neonatal rat soleus muscles for 2-24 h. In agreement with previous studies, the decay phases of m.e.p.c.s at many end-plates were doubly exponential with time constants of approximately 6 ms and approximately 1.5 ms at 21 degrees C. Earlier studies have shown that doubly exponential decays are due to the combined action of embryonic-type acetylcholine (ACh) receptors (AChRs) with long channel open times and adult-type AChRs with brief open times. When individual end-plates with doubly exponential m.e.p.c.s were studied for several hours or more, the relative size of the slow decay component frequently decreased with time. There was no evidence for a corresponding decrease in total m.e.p.c. amplitude. The time constants of the fast and slow components did not change. M.e.p.c. decays were stable at end-plates that were either very mature (small slow decay component) or very immature (small fast decay component). In these cases, the decay phases were virtually singly exponential and the time constant did not change. These data indicate that at end-plates with a mixture of adult-type and embryonic-type channels, the fraction of adult-type AChRs increases with time. This is similar to what occurs at end-plates developing in vivo. The results of ACh noise analysis experiments support this interpretation.
在新生大鼠比目鱼肌中,从单个肌纤维细胞外记录微小终板电流(m.e.p.c.s.)2至24小时。与先前的研究一致,在21摄氏度时,许多终板处微小终板电流的衰减阶段呈双指数形式,时间常数分别约为6毫秒和约1.5毫秒。早期研究表明,双指数衰减是由于通道开放时间长的胚胎型乙酰胆碱(ACh)受体(AChRs)与开放时间短的成年型AChRs共同作用的结果。当对具有双指数微小终板电流的单个终板进行数小时或更长时间的研究时,缓慢衰减成分的相对大小经常随时间减小。没有证据表明微小终板电流的总幅度相应减小。快速和缓慢成分的时间常数没有变化。在非常成熟(缓慢衰减成分小)或非常不成熟(快速衰减成分小)的终板处,微小终板电流的衰减是稳定的。在这些情况下,衰减阶段实际上是单指数的,且时间常数不变。这些数据表明,在具有成年型和胚胎型通道混合的终板处,成年型AChRs的比例随时间增加。这与体内发育的终板处发生的情况类似。乙酰胆碱噪声分析实验的结果支持这一解释。