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Association of sericin and swimming on the phenotype motor plate and functionality of the denervated plantar muscle of Wistar rats

机译:水飞蓟宾与游泳在Wistar大鼠的表型运动板和失神经的plant肌功能上的关联

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摘要

Physical exercise may help maintain muscle properties and functional improvement after peripheral nerve lesion, which may be enhanced by using biocompatible substances, such as sericin. The aim of this study was analyse the effect of sericin associated with swimming exercise on the phenotype, innervation, and functionality of the plantar muscle of Wistar rats. Forty randomly divided adult rats were used in five groups of eight animals: control, injury, sericin, exercise, exercise and sericin. The application of sericin was done on the spot, 100 μL, shortly after nerve compression. Three days after sciatic nerve compression, the swimming and swimming and sericin groups were submitted to physical swimming exercise for 21 days. Afterwards, the animals were euthanised and the plantar muscle was dissected and submitted to histochemical and histoenzymological techniques. The grip strength test did not show alterations in muscular functionality, and the control presented greater muscle mass in relation to the other groups, the same did not occur for muscle length. Polymorphic neuromuscular junctions were detected in the groups, although without significant morphometric alterations of the area, major and minor diameters. The percentage of type I fibres was lower in the lesion group and there was no difference in fibres IIa and IIb between groups. The area of fibres I, IIa and IIb remained constant between groups. Sericin biopolymer combined with swimming exercise did not affect plantar muscle function, submitted to experimental axonotmosis, whose contractile properties were altered by nerve injury.
机译:体育锻炼可以帮助维持周围神经损伤后的肌肉特性和功能,这可以通过使用生物相容性物质(例如丝胶)来增强。这项研究的目的是分析丝胶蛋白与游泳运动对Wistar大鼠的表型,神经支配和and肌功能的影响。将四十只随机分成的成年大鼠分为八组动物的五组:对照,损伤,丝胶蛋白,运动,运动和丝胶蛋白。在神经受压后不久,即刻以100μL的剂量施用丝胶。坐骨神经受压三天后,游泳,游泳和丝胶蛋白组接受体育锻炼21天。此后,对动物实施安乐死,解剖足底肌肉,并进行组织化学和组织酶学技术研究。握力测试未显示出肌肉功能的改变,并且对照组呈现出相对于其他组更大的肌肉质量,但对于肌肉长度却没有出现相同的变化。在各组中检测到多态性神经肌肉接头,尽管面积,主直径和次直径没有明显的形态变化。在病变组中,I型纤维的百分比较低,并且两组之间的纤维IIa和IIb没有差异。组之间纤维I,IIa和IIb的面积保持恒定。丝胶生物聚合物与游泳运动相结合不会影响足底肌的功能,而导致实验性轴突渗透症,其收缩特性因神经损伤而改变。

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