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人类口腔面部、咀嚼肌和肢体肌肉毛细血管床的肌肉特异性酶活性模式。

Muscle-specific enzyme activity patterns of the capillary bed of human oro-facial, masticatory and limb muscles.

作者信息

Stål P, Eriksson P O, Thornell L E

机构信息

Department of Anatomy, University of Umeå, Sweden.

出版信息

Histochem Cell Biol. 1995 Jul;104(1):47-54. doi: 10.1007/BF01464785.

Abstract

Enzyme-histochemical methods were used to analyse the activities of alkaline phosphatase (AP), dipeptidylpeptidase IV (DPP IV) and adenosine triphosphatase (ATPase) in capillaries of four different human oro-facial muscles, the major and minor zygomatic, the orbicularis oris and buccinator, one masticatory, the masseter and two limb muscles, the biceps brachii and first dorsal interosseus muscles. In all muscles, except for the orbicularis oris, the majority of the capillaries lacked enzyme activity. Therefore, none of these enzymes seems to be reliable as a general marker for human muscle capillaries. In general, the capillaries of the limb muscles and the major and minor zygomatic and the buccinator, were similar in their staining pattern for AP and ATPase, but differed in DPP IV staining. The orbicularis oris muscle differed from the other muscles by showing the largest proportion of capillaries with AP and ATPase activity. The masseter muscle had the largest proportion of capillaries stained for DPP IV. The muscle specific differences in enzyme activity of the capillaries are in agreement with our previous findings of specific differences between limb, oro-facial and masticatory muscles with respect to capillary supply and composition of fibre types and myosins. The results reflect functional specialization of the capillary bed of human muscles.

摘要

采用酶组织化学方法分析了四种不同的人类口面部肌肉(颧大肌、颧小肌、口轮匝肌和颊肌)、一块咀嚼肌(咬肌)以及两块肢体肌肉(肱二头肌和第一背侧骨间肌)毛细血管中碱性磷酸酶(AP)、二肽基肽酶IV(DPP IV)和三磷酸腺苷酶(ATPase)的活性。在所有肌肉中,除口轮匝肌外,大多数毛细血管缺乏酶活性。因此,这些酶似乎都不能作为人类肌肉毛细血管的通用标志物。一般来说,肢体肌肉、颧大肌、颧小肌和颊肌的毛细血管在AP和ATPase染色模式上相似,但在DPP IV染色上有所不同。口轮匝肌与其他肌肉不同,其具有AP和ATPase活性的毛细血管比例最大。咬肌中DPP IV染色的毛细血管比例最大。毛细血管酶活性的肌肉特异性差异与我们之前关于肢体、口面部和咀嚼肌在毛细血管供应、纤维类型和肌球蛋白组成方面的特异性差异的研究结果一致。这些结果反映了人类肌肉毛细血管床的功能特化。

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