首页> 美国卫生研究院文献>The Journal of Physiology >Contractile activation and force generation in skinned rabbit muscle fibres: effects of hydrostatic pressure.
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Contractile activation and force generation in skinned rabbit muscle fibres: effects of hydrostatic pressure.

机译:剥皮的兔肌肉纤维中的收缩活化和力产生:静水压力的影响。

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摘要

1. Effects of hydrostatic pressure (range 0.1-10 MPa) on the isometric tension of skinned (rabbit psoas) muscle fibres were examined at 12 degrees C and at different levels of Ca2+ activation (pCa range 4-7); the effects on both the steady tension and the tension transients induced by rapid pressure release (< 1 ms) are described. 2. The steady tension was depressed by increased pressure (approximately 1% MPa-1) at a high level of Ca2+ activation (pCa approximately 4) whereas it was potentiated at lower Ca2+ levels (pCa > 6); the effects were reversible. 3. At maximal Ca2+ activation, the tension recovery following pressure release (10 MPa to atmospheric) consisted of a fast (approximately 30 s-1) and a slow (2-3 s-1) phase; the rate and the normalized amplitude (normalized to the steady tension at atmospheric pressure for a particular pCa) of the fast phase were invariant with changes in Ca2+ level. 4. The effects of changing Ca2+ level on the slow phase were complex; its positive amplitude at high Ca2+ levels changed to negative and the rate decreased to approximately 1 s-1 at low Ca2+ levels (pCa > 6.0). 5. Results are discussed in relation to previous studies on the effect of pressure on intact muscle fibres and the actin-myosin interaction. This work supports calcium regulation of cross-bridge recruitment rather than calcium regulation of the rate of a specific step in the cross-bridge cycle.
机译:1.在12摄氏度和不同水平的Ca2 +活化(pCa范围4-7)下,检查了静水压力(范围0.1-10 MPa)对皮肤(兔腰大肌)肌纤维等轴测张力的影响;描述了由于快速压力释放(<1 ms)对稳定张力和张力瞬变的影响。 2.在较高的Ca2 +活化水平(pCa约为4)下,通过增加压力(约1%MPa-1)来降低稳态张力,而在较低的Ca2 +活化水平下(pCa> 6)增强稳态压力。影响是可逆的。 3.在最大的Ca2 +活化作用下,压力释放(向大气压施加10 MPa)后的张力恢复包括快速(大约30 s-1)和慢速(2-3 s-1)阶段。快速相的速率和归一化幅度(针对特定的pCa归一化到大气压下的稳态张力)随Ca2 +水平的变化而不变。 4.改变Ca 2+水平对慢相的影响是复杂的;在高Ca2 +水平下,其正振幅变为负,而在低Ca2 +水平下,其速率下降至约1 s-1(pCa> 6.0)。 5.关于压力对完整肌纤维的影响和肌动蛋白-肌球蛋白相互作用的先前研究,讨论了结果。这项工作支持钙调节跨桥募集,而不是钙调节跨桥循环中特定步骤的速率。

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