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激光温度跃升引发的兔腰大肌纤维中的瞬态张力变化。

Transient tension changes initiated by laser temperature jumps in rabbit psoas muscle fibres.

作者信息

Goldman Y E, McCray J A, Ranatunga K W

机构信息

Department of Physiology, University of Pennsylvania, Philadelphia 19104.

出版信息

J Physiol. 1987 Nov;392:71-95. doi: 10.1113/jphysiol.1987.sp016770.

Abstract
  1. A technique was developed to generate 2-8 degrees C step temperature perturbations (T-jumps) in single muscle fibres to study the thermodynamics of muscle contraction. A solid-state pulsed holmium laser emitting at 2.065 microns heated the fibre and surrounding solution in approximately 150 mus. The signal from a 100 microns thermocouple fed back to a heating wire maintained the elevated temperature after the laser pulse. 2. Tension of glycerol-extracted muscle fibres from rabbit psoas muscle did not change significantly following T-jumps when the fibre was relaxed. 3. In rigor, tension decreased abruptly on heating indicating normal (not rubber-like) thermoelasticity. The thermoelastic coefficient (negative ratio of relative length change to relative temperature change) of the fibre was estimated to be -0.021 at sarcomere lengths of 2.5-2.8 microns. Rigor tension was constant after the temperature step and returned to the original value on recooling. 4. In maximal Ca2+ activation, tension transients initiated by T-jumps had several phases. An immediate tension decrease suggests that thermoelasticity during contraction is similar to that in rigor. Active tension then recovered to the value before the T-jump with an apparent rate constant of approximately 400 s-1 (at 10-20 degrees C). This rate constant did not have an appreciable dependence on the final temperature. Finally, tension increased exponentially to a new higher level with a rate constant of approximately 20 s-1 at 20 degrees C. This rate constant increased with temperature with a Q10 of 1.4. 5. At submaximal Ca2+ activation the tension rise was followed by a decay to below the value before the T-jump. This decline was expected from the temperature dependence of steady pCa-tension curves. The final tension decline occurred on the 1-5 s time scale. 6. The value and amplitude dependence of the rate constant for the quick recovery following T-jumps were similar to those of the quick recovery following length steps during active contractions. The enthalpy change associated with the quick tension recovery following temperature-step perturbations was estimated to be positive suggesting that the recovery process is an endothermic reaction. Slower reaction steps on the 10-30 ms timescale, as well as reactions corresponding to the quick recovery, may contribute to the cross-bridge power stroke.
摘要
  1. 开发了一种技术,可在单根肌纤维中产生2至8摄氏度的阶跃温度扰动(T跳变),以研究肌肉收缩的热力学。一台发射波长为2.065微米的固态脉冲钬激光在约150微秒内加热纤维及周围溶液。来自100微米热电偶的信号反馈至加热丝,在激光脉冲后维持升高的温度。2. 当兔腰大肌甘油提取的肌纤维处于松弛状态时,T跳变后其张力无显著变化。3. 在僵直状态下,加热时张力会突然下降,表明具有正常(而非橡胶状)的热弹性。在肌节长度为2.5至2.8微米时,纤维的热弹性系数(相对长度变化与相对温度变化的负比率)估计为-0.021。温度阶跃后僵直张力保持恒定,再冷却时恢复到初始值。4. 在最大Ca2+激活状态下,由T跳变引发的张力瞬变有几个阶段。张力立即下降表明收缩过程中的热弹性与僵直状态相似。然后主动张力恢复到T跳变前的值,表观速率常数约为400 s-1(在10至20摄氏度)。该速率常数对最终温度没有明显依赖性。最后,张力在20摄氏度时以约20 s-1的速率常数呈指数上升至新的更高水平。该速率常数随温度升高,Q10为1.4。5. 在次最大Ca2+激活状态下,张力上升后会衰减至低于T跳变前的值。这种下降是根据稳态pCa-张力曲线的温度依赖性预期得到的。最终张力下降发生在1至5秒的时间尺度上。6. T跳变后快速恢复的速率常数的值和幅度依赖性与主动收缩期间长度阶跃后的快速恢复相似。温度阶跃扰动后快速张力恢复相关的焓变估计为正值,表明恢复过程是吸热反应。10至30毫秒时间尺度上较慢的反应步骤以及与快速恢复对应的反应可能有助于横桥动力冲程。

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