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豚鼠钙激活心室肌的等长力发展、等张收缩和弹性测量。

Isometric force development, isotonic shortening, and elasticity measurements from Ca2+-activated ventricular muscle of the guinea pig.

作者信息

Maughan D W, Low E S, Alpert N R

出版信息

J Gen Physiol. 1978 Apr;71(4):431-51. doi: 10.1085/jgp.71.4.431.

Abstract

Isometric tension and isotonic shortening were measured at constant levels of calcium activation of varying magnitude in mechanically disrupted EGTA-treated ventricular bundles from guinea pigs. The results were as follows: (a) The effect of creatine phosphate (CP) on peak tension and rate of shortening saturated at a CP concentration more than 10 mM; below that level tension was increased and shortening velocity decreased. We interpreted this to mean that CP above 10 mM was sufficient to buffer MgATP(2-) intracellularly. (b) The activated bundles exhibited an exponential stress-strain relationship and the series elastic properties did not vary appreciably with degree of activation or creatine phosphate level. (c) At a muscle length 20 percent beyond just taut, peak tension increased with Ca(2+) concentration over the range slightly below 10(-6) to slightly above 10(-4)M. (d) By releasing the muscle length-active tension curves were constructed. Force declined to 20 percent peak tension with a decrease in muscle length (after the recoil) of only 11 percent at 10(-4)M Ca(2+) and 6 percent at 4x10(-6)M Ca(2+). (e) The rate of shortening after a release was greater at lower loads. At identical loads (relative to maximum force at a given Ca(2+) level), velocity at a given time after the release was less at lower Ca(2+) concentrations; at 10 M(-5), velocity was 72 percent of that at 10(-4)M, and at 4x10(-6)M, active shortening was usually delayed and was 40 percent of the velocity at 10(-4) M. Thus, under the conditions of these experiments, both velocity and peak tension depend on the level of Ca(2+) activation over a similar range of Ca(2+) concentration.

摘要

在不同程度钙激活水平下,对机械破坏的豚鼠经乙二醇双四乙酸(EGTA)处理的心室肌束进行等长张力和等张收缩测量。结果如下:(a)磷酸肌酸(CP)对峰值张力和收缩速率的影响在CP浓度超过10 mM时达到饱和;低于该水平时,张力增加而收缩速度降低。我们将此解释为意味着高于10 mM的CP足以在细胞内缓冲MgATP(2-)。(b)激活的肌束呈现指数应力-应变关系,且串联弹性特性不会随激活程度或磷酸肌酸水平而有明显变化。(c)在比刚好绷紧长20%的肌肉长度下,在略低于10(-6)至略高于10(-4)M的范围内,峰值张力随Ca(2+)浓度增加。(d)通过释放肌肉长度构建了主动张力曲线。在10(-4)M Ca(2+)时,肌肉长度(回缩后)仅减少11%,力降至峰值张力的20%;在4x10(-6)M Ca(2+)时,减少6%。(e)释放后的收缩速率在较低负荷下更大。在相同负荷下(相对于给定Ca(2+)水平下的最大力),释放后给定时间的速度在较低Ca(2+)浓度下更小;在10 M(-5)时,速度是10(-4)M时的72%,在4x10(-6)M时,主动收缩通常延迟,且是10(-4)M时速度的40%。因此,在这些实验条件下,速度和峰值张力在相似的Ca(2+)浓度范围内均取决于Ca(2+)激活水平。

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