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去神经支配和血管去神经化后mdx骨骼肌的收缩性。

Contractility of mdx skeletal muscle after denervation and devascularization.

作者信息

Mechalchuk C L, Bressler B H

机构信息

Department of Anatomy, University of British Columbia, Vancouver, Canada.

出版信息

Muscle Nerve. 1992 Mar;15(3):310-7. doi: 10.1002/mus.880150309.

Abstract

To evaluate the regenerative capacity of mdx skeletal muscle, changes in contractile properties of the fast-twitch extensor digitorum longus (EDL) of normal and mdx mice were studied at 7 and 16 weeks of age, following denervation and devascularization (DD) at 4 weeks of age. At 7 weeks, DD EDL of both strains showed significantly decreased isometric twitch and tetanus tensions compared with their non-DD controls. By 16 weeks, normal operated muscle exhibited a recovery of 57% and 58% of absolute tetanus and twitch tensions while the mdx EDL recovered remarkably to 96% and 99% of 7-week values. At 7 weeks, the DD EDL of both strains exhibited significantly slower time-to-peak (TTP) and one-half relaxation time (1/2RT). By 16 weeks, TTP and 1/2RT of the mdx DD EDL no longer differed from non-DD controls, but the normal EDL showed slowed TTP. No differences were found in the maximum velocity of shortening (Vo) or in posttetanic potentiation (PTP). Following DD, there was an increase in resistance to fatigue in both strains at 7 weeks. This resistance persisted at 16 weeks in the normal mouse, but the operated mdx EDL returned to normal. It would appear that following a denervation/devascularization insult, the mdx EDL is able to recover contractile characteristics to a remarkably larger extent than normal EDL.

摘要

为评估mdx小鼠骨骼肌的再生能力,研究了正常小鼠和mdx小鼠在4周龄去神经支配和血管化(DD)后,7周龄和16周龄时快肌趾长伸肌(EDL)收缩特性的变化。在7周时,与非DD对照组相比,两种品系的DD EDL等长收缩抽搐和强直张力均显著降低。到16周时,正常手术肌肉的绝对强直和抽搐张力分别恢复了57%和58%,而mdx EDL显著恢复到7周龄时值的96%和99%。在7周时,两种品系的DD EDL达到峰值时间(TTP)和半松弛时间(1/2RT)均显著延长。到16周时,mdx DD EDL的TTP和1/2RT与非DD对照组不再有差异,但正常EDL的TTP减慢。在最大缩短速度(Vo)或强直后增强(PTP)方面未发现差异。DD后,两种品系在7周时抗疲劳能力均增强。这种抗疲劳能力在正常小鼠16周时仍然存在,但手术的mdx EDL恢复到正常水平。似乎在去神经支配/血管化损伤后,mdx EDL比正常EDL能在更大程度上恢复收缩特性。

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