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肉毒毒素 A 长期作用于双关节肌:被动肌力增加,主动肌力产生的长度范围受限,肌间相互作用不变。

Long-term BTX-A effects on bi-articular muscle: Higher passive force, limited length range of active force production and unchanged intermuscular interactions.

机构信息

Institute of Biomedical Engineering, Boğaziçi University, Istanbul, Turkey.

Department of Plastic Reconstructive and Aesthetic Surgery, Marmara University, Istanbul, Turkey.

出版信息

J Biomech. 2021 Sep 20;126:110627. doi: 10.1016/j.jbiomech.2021.110627. Epub 2021 Jul 12.

DOI:10.1016/j.jbiomech.2021.110627
PMID:34293603
Abstract

Botulinum toxin type-A (BTX-A) is commonly used for spasticity management aiming at reducing joint stiffness and increasing joint range of motion in CP patients. However, previous animal studies showed acutely increased passive forces and a narrowerlength range of active force exertion (l) for muscles exposed. BTX-A can spread affecting mechanics of several muscles in a compartment, but it was shown acutely to diminishepimuscular myofascial force transmission (EMFT). Yet, our understanding of these effects in the long-term is limited and they need to be tested in a bi-articular muscle. The goal was to test the following hypotheses in a long-term rat model: exposure to BTX-A (i) has no effects onland passive forces of bi-articular extensor digitorum longus (EDL) muscle and (ii) diminishes EMFT. Male Wistar rats were divided into two groups: BTX-A and control (0.1 units of BTX-A or only saline was injected into the tibialis anterior). Isometric proximal and distal EDL forces were measured simultaneously, one-month post-injection. Proximally and distally lengthening the muscle showed that BTX-A causes a significantly narrowerl(by 14.7% distally and 32.2% proximally) and significantly increased passive muscle forces (over 2-fold both distally and proximally). Altering muscle position at constant length showed that BTX-A does not change EMFT. The findings reject both hypotheses showing that long-term exposure to BTX-A compromises bi-articular muscle's contribution to motion for both joints and the muscle's mechanical interaction with the surroundings remains unaffected. These effects which may compromise long-term spasticity management should be studied in CP patients.

摘要

A型肉毒毒素(BTX-A)常用于治疗脑瘫患者的痉挛,旨在降低关节僵硬程度并增加关节活动范围。然而,先前的动物研究表明,暴露的肌肉会突然增加被动力,主动力发挥的长度范围(l)变窄。BTX-A 可扩散,影响同一间隔内的多块肌肉的力学,但它会急剧减弱肌肉筋膜的力传递(EMFT)。然而,我们对这些长期影响的了解有限,需要在双关节肌肉中进行测试。该研究的目的是在长期大鼠模型中检验以下假设:(i)BTX-A 暴露对双关节伸趾长肌(EDL)的被动力没有影响,(ii)EMFT 减弱。雄性 Wistar 大鼠分为两组:BTX-A 组和对照组(BTX-A 组注射 0.1 单位 BTX-A,对照组仅注射生理盐水)。注射后一个月,同时测量等长近侧和远侧 EDL 力。近侧和远侧肌肉延长表明,BTX-A 导致 l 明显变窄(远侧变窄 14.7%,近侧变窄 32.2%),被动肌肉力明显增加(远侧和近侧均增加两倍以上)。在恒定长度改变肌肉位置表明,BTX-A 不会改变 EMFT。这些发现否定了这两个假设,表明长期暴露于 BTX-A 会损害双关节肌肉对两个关节运动的贡献,并且肌肉与周围环境的机械相互作用不受影响。这些可能会影响长期痉挛管理的影响应在脑瘫患者中进行研究。

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