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野生型和 MLC/mIgf-1 转基因小鼠肌肉完整单纤维的力学性能。

Mechanical properties of intact single fibres from wild-type and MLC/mIgf-1 transgenic mouse muscle.

机构信息

Dipartimento di Scienze Fisiologiche and Istituto Interuniversitario di Miologia, Università degli Studi di Firenze, Florence, Italy.

出版信息

J Muscle Res Cell Motil. 2009;30(5-6):199-207. doi: 10.1007/s10974-009-9187-8.

Abstract

The effects of overexpression of the local form of insulin like growth factor-1 (mIgf-1) on skeletal muscle were investigated by comparing the mechanical properties of single intact fibres from the flexor digitorum brevis of wild-type (WT) and (MLC/mIgf-1) transgenic mice (TG)at 21-24 degrees C. Isolated single fibres were clean enough to measure accurately the sarcomere length. The parameters investigated were: tetanic absolute and specific force, the force-velocity relationship, and the sarcomere length-tension relationship. In addition, we investigated the properties of the "static stiffness", a non-crossbridge Ca(2+)-dependent increase of fibre stiffness previously found in frog muscle. Both average cross-sectional area and tetanic force almost doubled in TG fibres, so that specific force was the same in both preparation: 312 +/- 20 and 344 +/- 34 kN m(-2) in WT and TG fibres, respectively. None of the relative force-velocity parameters was altered by Igf-1 overexpression, however, V(max) (8-10 l(0) s(-1)) was greater than previously reported in whole muscles. The sarcomere length-tension relationship was the same in TG and WT fibres showing the classical shape with a plateau region between 2.28 and 2.52 microm and a linear descending limb. The static stiffness was present in both WT and TG fibres and showed similar characteristics to that of frog skeletal muscle. In contrast to the other parameters, static stiffness in TG fibres was about 24% smaller than in WT fibres suggesting a possible effect of Igf-1 overexpression on its mechanism.

摘要

我们通过比较野生型(WT)和(MLC/mIgf-1)转基因(TG)小鼠屈趾短肌中单个完整纤维的机械性能,研究了局部胰岛素样生长因子-1(mIgf-1)表达过表达对骨骼肌的影响。在 21-24°C 下,分离的单个纤维干净到足以准确测量肌节长度。研究的参数包括:强直绝对力和比力、力-速度关系以及肌节长度-张力关系。此外,我们研究了“静态刚度”的特性,这是一种以前在青蛙肌肉中发现的非交联桥 Ca(2+)依赖性纤维刚度增加。在 TG 纤维中,平均横截面积和强直力几乎增加了一倍,因此两种制备物的比力相同:WT 纤维为 312 +/- 20 kN m(-2),TG 纤维为 344 +/- 34 kN m(-2)。IGF-1 过表达并未改变任何相对力-速度参数,但是 V(max)(8-10 l(0)s(-1))大于以前在整块肌肉中的报道。肌节长度-张力关系在 TG 和 WT 纤维中相同,显示出具有 2.28-2.52μm 之间的平台区和线性下降支的经典形状。静态刚度存在于 WT 和 TG 纤维中,表现出与青蛙骨骼肌相似的特征。与其他参数相反,TG 纤维中的静态刚度比 WT 纤维小约 24%,这表明 IGF-1 过表达对其机制可能有影响。

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