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发育中大鼠肌梭内被膜小泡的形态测量分析

Morphometric analysis of coated vesicles in developing rat muscle spindles.

作者信息

Stephens H, Walro J M, Kucera J

机构信息

Department of Neurology, School of Medicine, Boston University.

出版信息

Physiol Res. 1992;41(3):173-90.

PMID:1286083
Abstract

The incidence of coated vesicles under sarcolemmal surfaces of equatorial, juxta-equatorial and polar regions in developing and adult spindles of the rat soleus muscle was examined by quantitative morphometry of transverse ultrathin sections. Coated vesicles were more numerous: 1) under primary sensory endings than under other types of neuromuscular contacts; 2) under the appositional sarcolemma between neighbouring intrafusal fibres than under free surfaces of the sarcolemma; and 3) in developing than in mature spindles. Factors such as location and age of the animal often interacted to produce an additive effect on the incidence of coated vesicles. Although there was a high incidence of coated vesicles at the postsynaptic surface under sensory terminals of bag2 fibres in 18 and 19 day gestational embryonic rats, it peaked in 4 day postnatal animals. The high incidence of coated vesicles at sensory endings supports the view that coated vesicles mediate neurotrophic interactions between afferents and intrafusal fibres during the critical late gestation and early postnatal time period, as sensory axons first contact their target fibres and exert a maximal directing influence on the differentiation of intrafusal fibre types. In addition, the preferential localization of coated vesicles under appositional rather than free surfaces of developing intrafusal fibres in 0-4 day rats suggests that they play a role in the transport of active substances among intrafusal fibres exhibiting different stages of maturity.

摘要

通过对大鼠比目鱼肌发育中和成年纺锤体赤道区、近赤道区和极区肌膜表面下被膜小泡的定量形态学分析,研究了其发生率。被膜小泡数量较多:1)在初级感觉末梢下比在其他类型的神经肌肉接触下更多;2)在相邻梭内肌纤维间的贴附肌膜下比在肌膜的游离表面下更多;3)在发育中的纺锤体中比在成熟纺锤体中更多。动物的位置和年龄等因素常常相互作用,对被膜小泡的发生率产生累加效应。虽然在妊娠18和19天的胚胎大鼠中,袋2纤维感觉末梢下的突触后表面被膜小泡发生率较高,但在出生后4天的动物中达到峰值。感觉末梢处被膜小泡的高发生率支持这样一种观点,即在关键的妊娠后期和出生后早期,当感觉轴突首次接触其靶纤维并对梭内纤维类型的分化施加最大的定向影响时,被膜小泡介导传入神经与梭内纤维之间的神经营养相互作用。此外,在0 - 4天大鼠发育中的梭内纤维贴附而非游离表面下被膜小泡的优先定位表明,它们在处于不同成熟阶段的梭内纤维之间的活性物质运输中发挥作用。

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