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完整大鼠快、慢肌纤维分化过程中的静息张力特征

Resting tension characteristics in differentiating intact rat fast- and slow-twitch muscle fibers.

作者信息

Mutungi Gabriel, Trinick John, Ranatunga K W

机构信息

Department of Physiology, School of Biomedical Sciences, University of Bristol, Bristol BS8 1TD, UK.

出版信息

J Appl Physiol (1985). 2003 Dec;95(6):2241-7. doi: 10.1152/japplphysiol.00990.2002. Epub 2003 Aug 22.

Abstract

The postnatal changes in resting muscle tension were investigated at 20 degrees C by using small muscle fiber bundles isolated from either the extensor digitorum longus or the soleus of both neonatal (7-21 days old) and adult rats. The results show that the tension-extension characteristics of the bundles depended on the age of the rats. For example, both the extensor digitorum longus and soleus bundles of rats older than 14 days showed characteristic differences that were absent in bundles from younger rats. Furthermore, the tension-extension relation of the adult slow muscle fiber bundles were similar to those of the two neonatal muscles and were shifted to longer sarcomere lengths relative to those of the adult fast-fiber bundles. Thus, at the extended sarcomere length of 2.9 microm, the adult fast muscle fiber bundles developed higher resting tensions (5.6 +/- 0.5 kN/m2) than either the two neonatal ( approximately 3 kN/m2) or the adult slow (3.1 +/- 0.4 kN/m2) muscle fiber bundles. At all ages examined, the resting tension responses to a ramp stretch were qualitatively similar and consisted of three components: a viscous, a viscoelastic, and an elastic tension. However, in rats older than 14 days, all three tension components showed clear fast- and slow-fiber type differences that were absent in younger rats. Bundles from 7-day-old rats also developed significantly lower resting tensions than the corresponding adult ones. Additionally, the resting tension characteristics of the adult muscles were not affected by chemical skinning. From these results, we conclude that in rats resting muscle tension, like active tension, differentiates within the first 3 wk after birth.

摘要

在20摄氏度下,通过使用从新生(7 - 21日龄)和成年大鼠的趾长伸肌或比目鱼肌分离出的小肌纤维束,研究了静息肌肉张力的产后变化。结果表明,肌束的张力 - 伸展特性取决于大鼠的年龄。例如,14日龄以上大鼠的趾长伸肌和比目鱼肌束表现出特征差异,而较年轻大鼠的肌束则没有这些差异。此外,成年慢肌纤维束的张力 - 伸展关系与两种新生肌肉的相似,并且相对于成年快纤维束,其肌节长度向更长的方向偏移。因此,在肌节长度为2.9微米的伸展状态下,成年快肌纤维束产生的静息张力(5.6±0.5 kN/m²)高于两种新生肌肉(约3 kN/m²)或成年慢肌(3.1±0.4 kN/m²)纤维束。在所有检查的年龄组中,对斜坡拉伸的静息张力反应在质量上相似,由三个成分组成:粘性张力、粘弹性张力和弹性张力。然而,在14日龄以上的大鼠中,所有这三个张力成分都表现出明显的快肌和慢肌纤维类型差异,而较年轻的大鼠则没有。7日龄大鼠的肌束产生的静息张力也明显低于相应的成年大鼠。此外,成年肌肉的静息张力特性不受化学去膜的影响。从这些结果中,我们得出结论,在大鼠中,静息肌肉张力与主动张力一样,在出生后的前三周内发生分化。

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