首页> 美国卫生研究院文献>The Journal of Physiology >Velocity of sarcomere shortening in rat cardiac muscle: relationship to force sarcomere length calcium and time.
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Velocity of sarcomere shortening in rat cardiac muscle: relationship to force sarcomere length calcium and time.

机译:大鼠心肌中肌节缩短的速度:与力量肌节长度钙和时间的关系。

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摘要

The relation between force and velocity was determined in sixteen trabeculae of rat right ventricle as a function of time during a twitch, of sarcomere length and of external Ca2+ concentration, [Ca2+]o. The trabeculae were studied in modified Krebs-Henseleit solution at 25 degrees C. Force was measured with a semiconductor strain gauge. Sarcomere length was measured with a laser diffraction system. A servomotor system was used in which control could be switched between sarcomere length, muscle length and force. Force-velocity relations were derived from load clamps and from contractions in which sarcomere length was initially held constant followed by a quick release and slower release of the sarcomeres at controlled velocity. Force-velocity relations were fitted by Hill's equation (Hill, 1938), (Po-P) b = (P+a) V, where P = force, V = velocity, Po = isometric force in mN/mm2 and a and b are constants. For [Ca2+]o = 2.5 mM, with both interventions the values (mean +/- S.D.) were: b = 1.00 +/- 0.45 micron/s; a = 9.52 +/- 5.60 mN/mm2; Vo measured = 13.6 +/- 3.0 micron/s; Vo calculated = 13.4 +/- 3.4 micron/s; Po measured = 96.5 +/- 25.0 mN/mm2; Po calculated = 119.3 +/- 34.5 mN/mm2. Vo rose with [Ca2+]o to a maximum at [Ca2+]o = 1.2 mM when Po was about 50% of maximum, while Po rose with [Ca2+]o to a maximum at above 2.5 mM. Vo rose with time during the twitch to a maximum at 25 ms following onset of contraction; Po was then about 50% of the maximum that was obtained at 120 ms. Vo increased with sarcomere length from zero at a sarcomere length of 1.6 micron to a maximum at 1.85 micron. Between 1.85 micron and 2.3 micron, Vo was constant. At 1.85 micron, Po was about 60% of maximum Po. These results are compatible with the hypothesis that Vo is more sensitive than Po to the amount of Ca2+ bound to the contractile proteins, and that Vo reaches a maximal value with an amount of Ca2+ bound to the contractile proteins at which Po has obtained only about 50% of its maximal value.
机译:力和速度之间的关系是根据大鼠右心室的16个小梁在抽搐期间的时间,肌节长度和外部Ca2 +浓度[Ca2 +] o确定的。在改良的Krebs-Henseleit溶液中在25摄氏度下研究了小梁。用半导体应变仪测量力。肌节长度用激光衍射系统测量。使用了伺服电机系统,其中的控制可以在肌节长度,肌肉长度和力量之间切换。力与速度的关系来自于负载钳和收缩,在这些收缩中,肌节长度最初保持恒定,然后以受控的速度快速释放和缓慢释放肉瘤。力-速度关系由希尔方程(Hill,1938)拟合,(Po-P)b =(P + a)V,其中P =力,V =速度,Po =以mN / mm2为单位的等距力,a和b是常数。对于[Ca 2+] o = 2.5mM,在两种干预下的值(平均值+/- S.D。)为:b = 1.00 +/- 0.45微米/秒; a = 9.52 +/- 5.60 mN / mm2;测量的Vo = 13.6 +/- 3.0微米/秒;计算出的Vo = 13.4 +/- 3.4微米/秒;测得的Po = 96.5 +/- 25.0 mN / mm2;计算出的Po = 119.3 +/- 34.5mN / mm 2。当Po约为最大值的50%时,Vo在[Ca2 +] o = 1.2 mM时以[Ca2 +] o上升至最大值,而Po在[Ca2 +] o时以2.5 mM以上的最大值上升到最大值。抽搐后,Vo在抽搐过程中随时间上升至最大25 ms。然后,Po约为在120 ms处获得的最大值的50%。 Vo随着肌节长度从1.6微米的肌节长度的零增加到1.85微米的最大值。在1.85微米至2.3微米之间,Vo恒定。在1.85微米时,Po约为最大Po的60%。这些结果与以下假设相符:Vo比Po对结合到收缩蛋白上的Ca2 +敏感,并且Vo达到最大值,而Ca2 +结合到收缩蛋白上,而Po仅获得约50。最大值的%。

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