Yucesoy Can A, Turkoğlu Ahu Nur, Umur Sevgi, Ateş Filiz
Biomedical Engineering Institute, BoğaziÇi University, 34684, Çengelköy Istanbul, Turkey.
Muscle Nerve. 2015 Jan;51(1):106-16. doi: 10.1002/mus.24275. Epub 2014 Nov 19.
We tested the hypothesis that BTX-A diminishes epimuscular myofascial force transmission (EMFT) within an intact muscle compartment.
The tibialis anterior (TA) and extensor hallucis longus (EHL) muscles were kept at constant length, whereas the position of the extensor digitorum longus (EDL) muscle was changed exclusively. Two groups of Wistar rats were tested: a control group (no BTX-A injected) and a BTX group (0.1 unit of BTX-A injected into the mid-belly of TA).
In controls, distally altered EDL position affected EDL distal and proximal forces and proximodistal force differences, indicating substantial EMFT. In the BTX group, EDL forces measured at the most proximal position did not change significantly with altered muscle position, and EDL proximodistal force differences became minimized.
Use of BTX-A diminishes EMFT. It may be relevant clinically that BTX-A compromises intermuscular mechanical interaction, as recent studies have shown that such an interaction plays a role in the abnormal mechanics of spastic muscle.
我们检验了以下假设,即A型肉毒毒素(BTX-A)可减少完整肌腔内的肌外肌筋膜力传递(EMFT)。
将胫骨前肌(TA)和拇长伸肌(EHL)保持在恒定长度,而仅改变趾长伸肌(EDL)的位置。对两组Wistar大鼠进行测试:对照组(未注射BTX-A)和BTX组(将0.1单位BTX-A注射到TA肌腹中部)。
在对照组中,EDL位置的远端改变影响了EDL的远端和近端力以及近端到远端的力差,表明存在显著的EMFT。在BTX组中,在最近端位置测量的EDL力并未随肌肉位置的改变而显著变化,并且EDL近端到远端的力差最小化。
使用BTX-A可减少EMFT。由于最近的研究表明这种相互作用在痉挛性肌肉的异常力学中起作用,因此BTX-A损害肌肉间机械相互作用这一点在临床上可能具有相关性。