Suppr超能文献

从鱼类快肌和慢肌中分离出的皮肤纤维的pCa-张力和力-速度特性。

The pCa-tension and force-velocity characteristics of skinned fibres isolated from fish fast and slow muscles.

作者信息

Altringham J D, Johnston I A

出版信息

J Physiol. 1982 Dec;333:421-49. doi: 10.1113/jphysiol.1982.sp014462.

Abstract
  1. Single fast fibres and small bundles of two to six slow fibres were dissected from the myotomal muscles of the cod, Gadus morhua, and the dogfish, Scyliorhinus canicula. Fibres were chemically skinned with the non-ionic detergent Brij 58.2. The isometric tension properties were investigated. Maximal isometric tensions (mean +/- S.E. of mean) were 18.65+/-1.18 (n = 11) and 8.34+/-0.98 (n = 13) N cm(-2) for cod fast and slow fibres, and 18.34+/-0.88 (n = 28) and 8.24+/-0.39 (n = 12) N cm(-2) for dogfish fast and slow fibres respectively. The values are comparable to those observed in mammalian and amphibian skinned fibres. The lower tensions generated by the slow fibres cannot be fully explained on the basis of their lower myofibrillar fractional volume.3. In common with previous studies, a steep sigmoid relationship between pCa and tension was observed. The threshold for tension generation was around pCa 7.2. Half-maximal pCas were 6.08 and 6.42 for cod fast and slow muscle, and 6.41 and 6.50 for dogfish fast and slow fibres respectively. Cod fibres were maximally activated at around pCa 5.18, and dogfish fibres at pCa 5.62.4. Contraction-induced residual tensions were observed in cod fast fibres after return to relaxing solution. This phenomenon is a feature common to many skinned fibre studies, but the mechanism behind it has yet to be resolved.5. The force-velocity characteristics of fast and slow fibres have been investigated (at 8 degrees C).6. Points below 0.6 P(0) on the P-V curves could be fitted to a linear form of the Hill equation. Extrapolated V(max)s were calculated as follows: cod fast fibre V(max) = 1.01 muscle length sec(-1) (Lsec(-1)) (a = 0.21 P(0); b = 0.21 Lsec(-1)). Slow fibre = 0.53 Lsec(-1) (a = 0.28P(0); b = 0.21 Lsec(-1)). Dogfish fast fibre V(max) = 2.34 Lsec(-1) (a = 0.06 P(0); b = 0.14 Lsec(-1)). Slow fibre = 0.67 Lsec(-1) (a = 0.19 P(0); b = 0.13 Lsec(-1)).7. Contraction velocity in cod slow fibres decreased continuously to produce markedly non-linear velocity transients, similar to those reported for amphibian slow fibres.8. The effect of altering Ca(2+) concentration on the shape of the isotonic velocity curve (at low loads) was studied in dogfish fast fibres (0.5-1 degrees C). Contraction velocity decreased continuously during shortening, at both maximal and half-maximal Ca(2+) concentration. The rate of decay of velocity with shortening was greater at low Ca(2+) concentration.
摘要
  1. 从鳕鱼(大西洋鳕)和鲨鱼(小斑星鲨)的肌节肌中分离出单根快肌纤维以及由两到六根慢肌纤维组成的小束纤维。纤维用非离子洗涤剂Brij 58进行化学去膜处理。

  2. 对等长张力特性进行了研究。鳕鱼快肌和慢肌纤维的最大等长张力(平均值±平均标准误)分别为18.65±1.18(n = 11)和8.34±0.98(n = 13)N/cm²,鲨鱼快肌和慢肌纤维分别为18.34±0.88(n = 28)和8.24±0.39(n = 12)N/cm²。这些值与在哺乳动物和两栖动物去膜纤维中观察到的值相当。慢肌纤维产生的较低张力不能完全基于其较低的肌原纤维分数体积来解释。

  3. 与先前的研究一致,观察到pCa与张力之间呈陡峭的S形关系。产生张力的阈值约为pCa 7.2。鳕鱼快肌和慢肌的半最大pCa分别为6.08和6.42,鲨鱼快肌和慢肌纤维分别为6.41和6.50。鳕鱼纤维在约pCa 5.18时达到最大激活,鲨鱼纤维在pCa 5.62时达到最大激活。

  4. 在回到松弛溶液后,在鳕鱼快肌纤维中观察到收缩诱导的残余张力。这种现象是许多去膜纤维研究中的一个共同特征,但其背后的机制尚未得到解决。

  5. 研究了快肌和慢肌纤维的力-速度特性(在8℃下)。

  6. P-V曲线上低于0.6P(0)的点可以拟合为希尔方程的线性形式。外推的V(max)计算如下:鳕鱼快肌纤维V(max)=1.01肌肉长度/秒(L/秒)(a = 0.21P(0);b = 0.21L/秒)。慢肌纤维 = 0.53L/秒(a = 0.28P(0);b = 0.21L/秒)。鲨鱼快肌纤维V(max)=2.34L/秒(a = 0.06P(0);b = 0.14L/秒)。慢肌纤维 = 0.67L/秒(a = 0.19P(0);b = 0.13L/秒)。

  7. 鳕鱼慢肌纤维的收缩速度持续下降,产生明显的非线性速度瞬变,类似于两栖动物慢肌纤维所报道的情况。

  8. 在鲨鱼快肌纤维(0.5 - 1℃)中研究了改变Ca(2+)浓度对低负荷下等张速度曲线形状的影响。在最大和半最大Ca(2+)浓度下,缩短过程中收缩速度均持续下降。在低Ca(2+)浓度下,速度随缩短的衰减速率更大。

相似文献

引用本文的文献

本文引用的文献

2
The relation between force and speed in muscular contraction.肌肉收缩中力与速度的关系。
J Physiol. 1939 Jun 14;96(1):45-64. doi: 10.1113/jphysiol.1939.sp003756.
3
PATTERNS OF MUSCULAR INNERVATION IN THE LOWER CHORDATES.低等脊索动物的肌肉神经支配模式
Int Rev Neurobiol. 1964;6:99-147. doi: 10.1016/s0074-7742(08)60768-0.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验