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Effects of myofiber isolation technique on sarcolemma biomechanics

机译:肌纤维分离技术对肌瘤生物力学的影响

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摘要

Isolated myofibers are commonly used to understand the function of skeletal muscle in vivo. This can involve single isolated myofibers obtained from dissection or from enzymatic dissociation. Isolation via dissection allows control of sarcomere length and preserves tendon attachment but is labor-intensive, time-consuming and yields few viable myofibers. In contrast, enzymatic dissociation is fast and facile, produces hundreds of myofibers, and more importantly reduces the number of muscles/animals needed for studies. Biomechanical properties of the sarcolemma have been studied using myofibers from the extensor digitorum longus, but this has been limited to dissected myofibers, making data collection slow and difficult. We have modified this tool to perform biomechanical measurements of the sarcolemma in dissociated myofibers from the flexor digitorum brevis.METHOD SUMMARYModifications of the elastimetry technique allowed us to obtain biomechanical measurements of the sarcolemma in enzymatically dissociated myofibers at a much higher throughput.
机译:分离的肌纤维通常用于了解骨骼肌在体内的功能。这可能涉及从解剖或酶解离中获得的单个分离的肌纤维。通过解剖分离可以控制肌节长度并保留肌腱附着,但劳动密集型、耗时且产生很少的活肌纤维。相比之下,酶解离快速而简单,产生数百根肌纤维,更重要的是减少了研究所需的肌肉/动物数量。已经使用来自趾长伸肌的肌纤维研究了肌瘤的生物力学特性,但这仅限于解剖的肌纤维,使得数据收集缓慢而困难。我们修改了这个工具,对与趾短屈肌分离的肌纤维中的肌瘤进行生物力学测量。方法摘要弹性技术的编码使我们能够以更高的通量获得酶解离肌纤维中肌瘤的生物力学测量值。

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