正常、瘫痪及无神经鸟类上斜肌纤维类型的胚胎分化。

G S Sohal, D W Sickles
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引用次数: 0

摘要

利用鸭滑车核-上斜肌系统,研究了神经支配对肌纤维类型初始分化的影响。成人肌肉由三种类型的纤维组成(指定为I型,II型,III型),通过atp酶pH敏感性的组织化学技术确定。I型纤维atp酶活性酸稳定,碱不稳定;II型碱稳定,酸不稳定;和III型兼有酸碱稳定性。这些类型表现出线粒体α -甘油磷酸酶脱氢酶、烟酰胺腺嘌呤二核苷酸四唑还原酶和磷酸化酶活性的变化。I型和II型纤维主要分布在眼眶附近的肌肉部分,而肌肉的其余部分主要由III型纤维组成。在正常发育的肌肉中,II型和III型纤维早在胚胎第9天就出现了;在神经纤维到达肌肉的前一天。在胚胎第17天第一次观察到I型纤维。在第22天,I型、II型和III型纤维的百分比分别为29%、53%和18%。随着发育的进展,I型和II型纤维的百分比减少,孵化后76%的纤维属于III型,17%的纤维属于II型,只有7%的纤维属于I型。从第9天开始,每天使用3mg d-管库碱(d-TC)的胚胎瘫痪,II型和III型纤维发生分化,但在瘫痪的肌肉中从未观察到I型纤维。这些肌肉中肌管的数量也明显少于正常肌肉。相反,当胚胎第7天通过永久性破坏运动神经元使肌肉无神经时,所有三种类型的纤维都分化了。当具有神经肌肉的胚胎也接受d-TC处理时,I型纤维未能分化。由此得出结论,纤维类型的初始分化与神经支配无关,原代肌管能够分化为所有三种类型的纤维。在弯曲的肌肉中,I型纤维的缺失可能是由于d-TC对肌肉本身的某种独特作用。
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Embryonic differentiation of fibre types in normal, paralysed and aneural avian superior oblique muscle.

The influence of innervation on the initial differentiation of muscle fibre types was investigated by using the trochlear nucleus-superior oblique muscle system of duck. The adult muscle is composed of three types of fibres (designated as type I, II, III) as identified with the histochemical techniques for ATPase pH sensitivity. Type I fibre ATPase activity was acid-stable, alkali-labile; type II alkali-stable, acid-labile; and type III both acid- and alkali-stable. These types showed variable mitochondrial alpha-glycerophosphatase dehydrogenase, nicotinamide adenine dinucleotide tetrazolium reductase, and phosphorylase activity. Type I and II fibres are primarily located in the portion of the muscle adjacent to the orbit whereas the rest of the muscle is primarily composed of type III fibres. In the normally developing muscle, type II and III fibres are present as early as embryonic day 9; one day prior to the arrival of nerve fibres in the muscle. Type I fibres are first observed on embryonic day 17. On day 22 the percentages of type I, II and III fibres are 29, 53 and 18, respectively. As the development progressed the percentages of type I and II fibres decrease and after hatching 76% of the fibres belong to type III, 17% of type II and only 7% to type I. In embryos paralysed with daily application of 3 mg d-tubocurarine (d-TC) from day 9 onwards the differentiation of type II and III fibres occurs, but type I fibres were never observed in the paralysed muscles. These muscles also contained significantly fewer myotubes than the normal muscle. By contrast, when the muscle was made aneural by permanent destruction of motor neurones on embryonic day 7 all three types of fibres differentiated. When embryos with aneural muscles were also subjected to d-TC treatment the type I fibres failed to differentiate. It is concluded that the initial differentiation of fibre types is independent of innervation and that primary myotubes are capable of differentiating into all three types of fibres. The absence of type I fibres in curarized muscles may be due to some unique effect of d-TC on the muscle itself.

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