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正常老龄大鼠趾长伸肌中肌纤维周围毛细血管网络的重塑

Remodelling of capillary networks around muscle fibres in the extensor digitorum longus muscle of the normal aged rat.

作者信息

Desaki Junzo, Oki Sadaaki, Ezaki Taichi

机构信息

Department of Anatomy, Ehime University School of Medicine, Shigenobu, Japan.

出版信息

J Electron Microsc (Tokyo). 2002;51(3):183-94. doi: 10.1093/jmicro/51.3.183.

Abstract

Structural changes of capillaries around muscle fibres following their degeneration and regeneration were further examined in the extensor digitorum longus muscle of the 24-month-old normal rat. Bundles of muscle fibres were divided into three types: muscle bundles consisting of large muscle fibres exclusively more than 35 microm in diameter (type 1), various-sized muscle fibres ranging from 10 to 60 microm in diameter (type 2) and only small muscle fibres 20-40 microm in diameter (type 3). The mean number of capillaries around a muscle fibre was extremely high in the type 3 muscle bundle (4.83) and much lower in the type 2 muscle bundle (2.72) compared with that in the type 1 muscle bundle (3.48). Capillaries in the type 1 muscle bundle were round or oval in shape and were of the continuous type. In the type 2 muscle bundle, capillaries around large degenerating muscle fibres showed an irregularly compressed shape and the scaffolds of basal laminae were often found around them, being a result of the destruction of capillaries. On the other hand, small-sized capillaries less than 5 microm in diameter, being possibly regenerating capillaries, were found around small (probably regenerating) muscle fibres and often had a small number (less than 10) of fenestrae. Capillaries in the type 3 muscle bundle, similar in shape and size to those in the type 1, frequently branched or joined, but some of them were partially destroyed. These findings suggest that capillaries degenerate and regenerate to remodel capillary networks around the muscle fibres following their degeneration and regeneration, and that to effectively supply oxygen and nutrients to regenerating muscle fibres, capillaries temporarily form fenestrae and then the capillary networks become dense by sprouts from the existing capillaries, but excess capillaries may be gradually destroyed following maturation of the muscle fibres.

摘要

在24月龄正常大鼠的趾长伸肌中,进一步研究了肌纤维退变和再生后其周围毛细血管的结构变化。肌纤维束分为三种类型:仅由直径超过35微米的大型肌纤维组成的肌束(1型)、直径在10至60微米之间的各种大小肌纤维组成的肌束(2型)以及仅由直径20 - 40微米的小型肌纤维组成的肌束(3型)。与1型肌束(3.48)相比,3型肌束中每条肌纤维周围的毛细血管平均数量极高(4.83),而2型肌束中则低得多(2.72)。1型肌束中的毛细血管呈圆形或椭圆形,属于连续型。在2型肌束中,大型退变肌纤维周围的毛细血管呈现不规则压缩形状,且在其周围常发现基膜支架,这是毛细血管破坏的结果。另一方面,在小型(可能正在再生的)肌纤维周围发现了直径小于5微米的小型毛细血管,可能是正在再生的毛细血管,且通常有少量(少于10个)窗孔。3型肌束中的毛细血管在形状和大小上与1型相似,频繁分支或连接,但其中一些部分被破坏。这些发现表明,毛细血管会退变和再生,以在肌纤维退变和再生后重塑其周围的毛细血管网络,并且为了有效地向再生的肌纤维供应氧气和营养物质,毛细血管会暂时形成窗孔,然后毛细血管网络通过现有毛细血管的芽生变得密集,但多余的毛细血管可能会在肌纤维成熟后逐渐被破坏。

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