Seil F J, Drake-Baumann R
Neurology Research, VA Medical Center, Portland 97201.
J Comp Neurol. 1994 Apr 15;342(3):366-77. doi: 10.1002/cne.903420305.
Organotypic cerebellar cultures derived from newborn mice were continuously exposed to medium containing tetrodotoxin and elevated levels of magnesium to block all electrical activity. After 2 weeks in vitro, no activity was evident during the first 15-20 minutes following transfer to a recording medium without blocking agents. Thereafter, cortical discharge rates increased until a state of sustained hyperactivity was reached. Ultrastructural examination of such cultures revealed a reduction of inhibitory Purkinje cell somatic synapses to half the control value along with an even greater reduction of axodendritic synapses (largely inhibitory) in the cortical neuropil. No loss of axospinous synapses (excitatory) was evident. These results support the concept that spontaneous neuronal activity is necessary for the full development of inhibitory circuitry.
从新生小鼠获得的小脑器官型培养物持续暴露于含有河豚毒素和升高镁水平的培养基中,以阻断所有电活动。体外培养2周后,转移到不含阻断剂的记录培养基后的最初15 - 20分钟内未观察到明显活动。此后,皮层放电率增加,直至达到持续多动状态。对这种培养物的超微结构检查显示,抑制性浦肯野细胞体突触减少至对照值的一半,同时皮层神经毡中轴突树突突触(主要为抑制性)减少得更多。轴棘突触(兴奋性)没有明显丢失。这些结果支持了自发神经元活动对于抑制性神经回路的充分发育是必要的这一概念。