Hirst G D, McLachlan E M
J Physiol. 1984 Apr;349:119-34. doi: 10.1113/jphysiol.1984.sp015147.
The initial stages in the development of functional synapses have been examined in ganglia of the lower lumbar sympathetic chain of the rat using intracellular recording techniques. In animals of age up to 7 days post-natal, many impaled cells were inexcitable and possessed no synaptic input. The proportion of excitable cells impaled increased with the age of the animal. Two types of action potential could be identified. Initially the synaptic input consisted of one or a few subthreshold synaptic potentials. The number of preganglionic inputs to each cell increased over the first 1-2 weeks after birth. The quantal content of each input was initially very low. At least some inputs showed an increase in quantal content during development; eventually one or occasionally two inputs became suprathreshold. Voltage-clamp studies indicated that the time course of excitatory synaptic currents did not change during development. The amplitudes of miniature excitatory synaptic currents in animals aged less than 10 days were some three to five times the size of those recorded from mature animals.
利用细胞内记录技术,对大鼠下腰交感神经链神经节中功能性突触发育的初始阶段进行了研究。在出生后7天龄以内的动物中,许多被刺入的细胞无法兴奋,且没有突触输入。被刺入的可兴奋细胞的比例随着动物年龄的增长而增加。可以识别出两种类型的动作电位。最初,突触输入由一个或几个阈下突触电位组成。出生后的前1 - 2周内,每个细胞的节前输入数量增加。每个输入的量子含量最初非常低。至少一些输入在发育过程中量子含量增加;最终,一个或偶尔两个输入变为阈上输入。电压钳研究表明,兴奋性突触电流的时间进程在发育过程中没有变化。小于10日龄动物的微小兴奋性突触电流幅度约为成熟动物记录值的三到五倍。