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高渗对青蛙骨骼肌强直单纤维中力产生的影响。

The effect of hypertonicity on force generation in tetanized single fibres from frog skeletal muscle.

作者信息

Piazzesi G, Linari M, Lombardi V

机构信息

Dipartimento di Scienze Fisiologiche, Università degli Studi di Firenze, Italy.

出版信息

J Physiol. 1994 May 1;476(3):531-46. doi: 10.1113/jphysiol.1994.sp020152.

Abstract
  1. We compared the tension transient that follows a step change in sarcomere length in normal Ringer solution with that in Ringer solution made hypertonic by the addition of 98 mM sucrose. Steps were applied on tetanized single muscle fibres during either the isometric plateau or the steady force response to lengthening at low speed. Sarcomere length was controlled on selected fibre segments by a striation follower. Analysis is limited to phase 1 (the tension change simultaneous with the length step, mainly due to cross-bridge elasticity) and phase 2 (the quick phase of tension recovery, a manifestation of the cross-bridge elementary force-generating process). 2. At the isometric tetanus plateau the steady force is reduced by 19% in hypertonic solution, and the stiffness is slightly increased. During slow lengthening both steady force and stiffness are similar in normal solution and in hypertonic solution. In hypertonic solution the tension-to-stiffness ratio, a measure of the mean cross-bridge extension before the step, is markedly reduced in isometric conditions (-23%), but not during lengthening (-2%). 3. The plots of instantaneous tension versus the length change during the step show that in hypertonic medium the elasticity of the fibre is almost undamped. Thus the increase in stiffness cannot be attributed to an increase in viscosity. 4. In isometric conditions (T2-T1)/(Ti-T1), the proportion of the initial tension drop recovered at the end of phase 2, is not affected by hypertonicity for releases of moderate and large size (> 2 nm) and is reduced for small releases (< 2 nm) and for stretches. The abscissa intercept of the relation (T2-T1)/(Ti-T1) versus step amplitude is the same in both media. During lengthening, for releases of small and moderate size, (T2-T1)/(Ti-T1) is 20% lower in hypertonic solution. For large releases the slope of the relation is lower so that the abscissa intercept is not changed. 5. The speed of quick tension recovery following a step length change imposed in isometric conditions is slightly depressed in hypertonic solution. The relation between speed of recovery and step amplitude maintains its shape and is shifted downwards. During lengthening, the speed of quick tension recovery in hypertonic solution is less dependent on step amplitude than in normal solution, as if a more linear viscoelasticity is responsible for a large fraction of residual recovery.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们将正常林格液中肌节长度阶跃变化后的张力瞬变与添加98 mM蔗糖使其变为高渗的林格液中的张力瞬变进行了比较。在等长平台期或低速延长时的稳定力响应期间,对强直收缩的单根肌纤维施加阶跃变化。通过条纹跟踪器控制选定纤维段的肌节长度。分析限于第1阶段(与长度阶跃同时发生的张力变化,主要由于横桥弹性)和第2阶段(张力恢复的快速阶段,是横桥基本力产生过程的一种表现)。2. 在等长强直收缩平台期,高渗溶液中的稳定力降低了19%,刚度略有增加。在缓慢延长过程中,正常溶液和高渗溶液中的稳定力和刚度相似。在高渗溶液中,张力与刚度之比(步长前平均横桥伸展的一种度量)在等长条件下显著降低(-23%),但在延长过程中未降低(-2%)。3. 步长期间瞬时张力与长度变化的关系图表明,在高渗介质中纤维的弹性几乎无衰减。因此,刚度的增加不能归因于粘度的增加。4. 在等长条件下(T2 - T1)/(Ti - T1),即第2阶段结束时恢复的初始张力下降比例,对于中等和大尺寸(> 2 nm)的释放不受高渗性影响,对于小释放(< 2 nm)和拉伸则降低。两种介质中(T2 - T1)/(Ti - T1)与步长幅度关系的横坐标截距相同。在延长过程中,对于小尺寸和中等尺寸的释放,高渗溶液中的(T2 - T1)/(Ti - T1)低20%。对于大释放,该关系的斜率较低,因此横坐标截距不变。5. 在等长条件下施加步长变化后快速张力恢复的速度在高渗溶液中略有降低。恢复速度与步长幅度之间的关系保持其形状并向下移动。在延长过程中,高渗溶液中快速张力恢复的速度比正常溶液中对步长幅度的依赖性小,就好像更线性的粘弹性对大部分残余恢复起作用。(摘要截断于400字)

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