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神经肌肉接头的发育。3. 去神经支配后运动终板的退变以及神经外植体在体外的维持。

Development of the neuromuscular junction. 3. Degeneration of motor end plates after denervation and maintenance in vitro by nerve explants.

作者信息

Lentz T L

出版信息

J Cell Biol. 1972 Oct;55(1):93-103. doi: 10.1083/jcb.55.1.93.

Abstract

To determine the effects of nerve explants on the integrity of motor end plates in vitro, cholinesterase activity and structure of end plates were compared in newt muscle denervated in vivo, cultured in the absence of nerve explants, and cultured in the presence of sensory ganglia. In neuromuscular junctions denervated in vivo or in vitro, the synaptic vesicles become clumped and fragmented. A few intact vesicles escape into the synaptic cleft. Axon terminals degenerate until they are left as residual bodies within the Schwann cell cytoplasm. Junctional folds on the muscle surface are reduced in height and are no longer evident once traces of axoplasm within the Schwann cell disappear. End plate cholinesterase activity is reduced as junctional folds are lost. When muscle is cultured in the presence of a sensory ganglion, the terminal axoplasm degenerates in the same manner but junctional folds persist on the muscle surface. Moderately intense cholinesterase activity remains in association with the junctional folds, so that normal motor end plates are maintained in the absence of innervation. These results show that degenerative changes in the structure of the motor end plate and loss of cholinesterase activity occurring in organ culture as a result of denervation can be retarded by nerve explants that do not directly innervate the muscle.

摘要

为了在体外确定神经外植体对运动终板完整性的影响,我们比较了在体内去神经支配、在无神经外植体条件下培养以及在感觉神经节存在条件下培养的蝾螈肌肉中终板的胆碱酯酶活性和结构。在体内或体外去神经支配的神经肌肉接头中,突触小泡会聚集并破碎。少数完整的小泡逸入突触间隙。轴突终末退化,直至在施万细胞胞质内仅留下残余小体。肌肉表面的接头皱襞高度降低,一旦施万细胞内的轴浆痕迹消失,接头皱襞就不再明显。随着接头皱襞的丧失,终板胆碱酯酶活性降低。当肌肉在感觉神经节存在的条件下培养时,轴突终末的轴浆以相同方式退化,但肌肉表面的接头皱襞仍然存在。适度强烈的胆碱酯酶活性仍与接头皱襞相关联,因此在无神经支配的情况下仍能维持正常的运动终板。这些结果表明,在器官培养中因去神经支配而发生的运动终板结构的退行性变化和胆碱酯酶活性的丧失,可以被不直接支配肌肉的神经外植体所延缓。

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Properties of regenerating neuromuscular synapses in the frog.青蛙中再生神经肌肉突触的特性
J Physiol. 1960 Nov;154(1):190-205. doi: 10.1113/jphysiol.1960.sp006573.

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