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神经支配在骨骼肌胚胎发育中的作用。

Role of innervation on the embryonic development of skeletal muscle.

作者信息

Sohal G S, Holt R K

出版信息

Cell Tissue Res. 1980;210(3):383-93. doi: 10.1007/BF00220196.

Abstract

The extent to which the motor innervation regulates the embryonic development of skeletal muscle was investigated by comparing changes in normal, aneural, and paralyzed superior oblique muscle of the duck embryo. The muscle was made aneural by permanently destroying the trochlear motor neurons with electrocautery on day 7, i.e., three days prior to innervation. Embryos were paralyzed by daily application of alpha-bungarotoxin onto the chorioallantoic membrane from day 10 onwards. The differentiation of myoblasts and myotubes in the aneural muscle was severely affected and did not progress to the myofiber stage. A mass of dead cells in the aneural muscle was replaced by connective tissue. Although the differentiation of myoblasts and myotubes was also retarded in the paralyzed muscle, numerous muscle cells progressed to the myofiber stage. Neuromuscular junctions of normal ultrastructure were seen in all paralyzed muscles. Degeneration of some cells in the paralyzed muscle occurred but there was no evidence of a massive wave of cell death similar to that observed in the aneural muscle. These observations suggest that both the trophic factors from the nerve and the nerve-evoked muscle activity are essential for the execution of the developmental program of the muscle. Trophic factors may play a larger role in differentiation, and maintenance of the muscle than muscle activity.

摘要

通过比较鸭胚正常、无神经支配和麻痹的上斜肌的变化,研究了运动神经支配对骨骼肌胚胎发育的调节程度。在第7天,即神经支配前3天,用电烙术永久性破坏滑车运动神经元,使肌肉失去神经支配。从第10天起,每天在绒毛尿囊膜上涂抹α-银环蛇毒素使胚胎麻痹。无神经支配肌肉中肌母细胞和肌管的分化受到严重影响,无法进展到肌纤维阶段。无神经支配肌肉中的大量死亡细胞被结缔组织取代。虽然麻痹肌肉中肌母细胞和肌管的分化也受到抑制,但仍有许多肌肉细胞进展到肌纤维阶段。在所有麻痹肌肉中均可见到超微结构正常的神经肌肉接头。麻痹肌肉中一些细胞发生退化,但没有证据表明存在类似于无神经支配肌肉中观察到的大规模细胞死亡浪潮。这些观察结果表明,来自神经的营养因子和神经诱发的肌肉活动对于肌肉发育程序的执行都是必不可少的。营养因子在肌肉的分化和维持中可能比肌肉活动发挥更大的作用。

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