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骨骼肌组织成分的碱性磷酸酶和二肽基肽酶IV染色:一项比较研究。

Alkaline phosphatase and dipeptidylpeptidase IV staining of tissue components of skeletal muscle: a comparative study.

作者信息

Grim M, Carlson B M

机构信息

Department of Anatomy, Charles University, Prague, Czechoslovakia.

出版信息

J Histochem Cytochem. 1990 Dec;38(12):1907-12. doi: 10.1177/38.12.1701462.

Abstract

A combined alkaline phosphatase (AP) and dipeptidlypeptidase IV (DPP IV) staining reaction has demonstrated enzymatic heterogeneity of the arterial and venous segments of capillaries in rat skeletal muscle. This study compared the staining reactions of skeletal muscles in many commonly used laboratory animals, including the axolotl, chick, quail, Monodelphys, rat, mouse, hamster, guinea pig, rabbit, dog, monkey, and human. DPP IV activity was found in the venous ends of the capillaries and in the endothelium of some larger veins in many of the species but was never demonstrated in the arterial side of the circulation. AP was found in the arterial ends of capillaries in all species except the axolotl, and it was also found in the endothelium of larger arteries of most species. AP activity was absent in venous endothelium of all species except for birds and Monodelphys. DPP IV activity was found in the perineurium of intramuscular nerves of most species, and AP activity was commonly seen in tendons and intramuscular connective tissue. The interspecies variability found in this study shows that care must be taken in comparing experimental data involving this technique from one species to another, but within a species the technique allows a fine level of discrimination between functionally distinct compounds of skeletal muscle tissue.

摘要

碱性磷酸酶(AP)和二肽基肽酶IV(DPP IV)联合染色反应已证明大鼠骨骼肌毛细血管动脉段和静脉段存在酶的异质性。本研究比较了许多常用实验动物骨骼肌的染色反应,这些动物包括蝾螈、鸡、鹌鹑、长吻袋貂、大鼠、小鼠、仓鼠、豚鼠、兔子、狗、猴子和人类。在许多物种的毛细血管静脉端以及一些较大静脉的内皮中发现了DPP IV活性,但在循环系统的动脉侧从未发现。除蝾螈外,在所有物种的毛细血管动脉端均发现了AP,并且在大多数物种的较大动脉内皮中也发现了AP。除鸟类和长吻袋貂外,在所有物种的静脉内皮中均未发现AP活性。在大多数物种的肌内神经束膜中发现了DPP IV活性,并且在肌腱和肌内结缔组织中通常可见AP活性。本研究中发现的种间变异性表明,在比较不同物种间涉及该技术的实验数据时必须谨慎,但在同一物种内,该技术能够对骨骼肌组织功能不同的化合物进行精细区分。

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