首页> 美国卫生研究院文献>The Journal of Physiology >Contractile activation characteristics of single permeabilized fibres from levator palpebrae superioris orbicularis oculi and vastus lateralis muscles from humans
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Contractile activation characteristics of single permeabilized fibres from levator palpebrae superioris orbicularis oculi and vastus lateralis muscles from humans

机译:人上睑提肌眼轮匝肌和外侧股外侧肌的单个渗透纤维的收缩活化特性

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摘要

class="enumerated" style="list-style-type:decimal">We investigated the contractile activation characteristics of single membrane-permeabilized fibres from the following muscles from humans: the levator palpebrae superioris (LPS), an extraocular muscle; the orbicularis oculi (OO), a facial muscle; and the vastus lateralis (VL), a major muscle of the thigh.Single permeabilized muscle fibres were isolated from each of the different muscles, attached to a sensitive force transducer and activated by rapid immersion in buffered solutions of varying [Ca2+] and [Sr2+]. Fibres were allocated into discrete populations based on their contractile characteristics, including their differential force responses during Ca2+ and Sr2+ activation.With the exception of one fibre from the LPS, all 152 fibres sampled from the three different human muscles could be classified into either population I (slow, type I) or population II (fast, type II) based on their force-pCa(pSr) relations. The LPS muscle fibre which was unable to be classified into the two major fibre populations displayed a combination of the typical force-pCa(pSr) relations for mammalian fast and slow muscle fibres.Although fibres from the LPS, OO and VL muscles had similar differential sensitivities to Ca2+and Sr2+, the steepness of the force-pCa(pSr) curves for fibres from the LPS and OO muscles were highly variable compared with those for fibres from the VL muscle. Specific forces (N cm−2) of the smaller diameter fibres from the LPS and OO muscles were significantly lower than those of fibres from the VL muscle.The differences in the contractile activation characteristics between fibres from the VL muscle and those of fibres from facial (OO) muscles and extraocular (LPS) muscles, reflect the differences in their fibre composition that are responsible for their functional specificity.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 我们研究了人类以下肌肉的单层膜透化纤维的收缩激活特性:上睑提肌(LPS),眼外肌;眼睑肌;眼睑肌。眼轮虫(OO),面肌; 从每条不同的肌肉中分离出单个透化的肌肉纤维,将其连接到灵敏的力传感器上,并通过快速浸入缓冲液中快速激活。改变[Ca 2 + ]和[Sr 2 + ]。根据纤维的收缩特性,包括在Ca 2 + 和Sr 2 + 激活期间的不同力响应,将纤维分配到离散种群中。 除了来自LPS的一根纤维外,可以根据它们的力-pCa(pSr)关系将从三种不同的人类肌肉采样的所有152条纤维分为I类(慢,I型)或II类(快,II型)。 。无法归类为两个主要纤维群的LPS肌肉纤维表现出哺乳动物快肌和慢肌纤维典型的力-pCa(pSr)关系的组合。 尽管来自LPS的纤维OO和VL肌肉的敏感性与Ca 2 + 和Sr 2 + 相似,LPS和OO肌肉的纤维的力-pCa(pSr)曲线的陡度与来自VL肌肉的纤维相比,它们的变化很大。 LPS和OO肌肉的较小直径纤维的比力(N cm −2 )显着低于VL肌肉的纤维。 收缩力的差异VL肌肉的纤维与面部(OO)肌肉和眼外(LPS)肌肉的纤维之间的活化特性反映了负责其功能特异性的纤维成分的差异。

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