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Changes in local capillarity of pure and hybrid MyHC muscle fiber types after nerve injury in rat extensor digitorum longus muscle (EDL)
被引:0
|作者:
Vita Čebašek
Samo Ribarič
机构:
[1] University of Ljubljana,Institute of Anatomy
[2] Faculty of Medicine,Institute of Pathophysiology
[3] University of Ljubljana,undefined
[4] Faculty of Medicine,undefined
来源:
Histochemistry and Cell Biology
|
2019年
/
152卷
关键词:
Capillary supply;
Myosin heavy chain (MyHC) muscle fiber type;
Fluorescence imaging;
Denervation;
Re-innervation;
Morphometry;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
Recently, we evaluated capillary indices without discrimination by fiber type in rat extensor digitorum longus muscle (EDL) 4 weeks after nerve cut (NC), after double nerve crush (double NCR) and in two controls, from the start (CON-1) and the end (CON-2) of the experiment. In the present study, we determined the capillary indices related to specific myosin heavy chain (MyHC) fiber types. Fiber-type composition and local capillarity were assessed from a single, composite, multicolor image, where different MyHC-fiber types and capillaries were shown simultaneously. Applying local capillary indices [the number of capillaries around fiber (CAF) and the CAF scaled to fiber perimeter (CAF/FP)], to specific MyHC-fiber types, we found changes relevant to neuro-muscular studies. In the NC group, only type-2x fibers had a significantly lower CAF, and in the double NCR group, only type-2a fibers had a higher CAF in comparison with both controls. Both types of nerve injury elicited two responses: a coupled regulation of fiber size and capillarity in the oxidative, type 2a fibers and a capillarity independent regulation of fiber size in the glycolytic type-2b fibers. All subtypes of type-2 fibers had a better capillary supply (higher CAF/FP) in the NC and double NCR than in CON-2. The highest improvement was observed in type-2b fibers; this change was mirrored in an oxidative shift only in the double NCR group. Adopting fiber-type-specific capillary indices improves data analysis of rat EDL muscle samples.
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页码:89 / 107
页数:18
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