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化学去膜大鼠心肌中的滞后现象及钙敏感性的长度依赖性

Hysteresis and the length dependence of calcium sensitivity in chemically skinned rat cardiac muscle.

作者信息

Harrison S M, Lamont C, Miller D J

机构信息

Institute of Physiology, Glasgow University.

出版信息

J Physiol. 1988 Jul;401:115-43. doi: 10.1113/jphysiol.1988.sp017154.

Abstract
  1. The relationship between pCa (-log10[Ca2+]) and steady-state isometric tension has been investigated in saponin- or Triton-treated (chemically 'skinned') cardiac muscle of rat. 2. Hysteresis exists in the relationship such that the muscle is less sensitive to Ca2+ during increasing activation (as [Ca2+] is stepped upward) than during reducing activation (as [Ca2+] is stepped downward). 3. The extent of the hysteresis is insensitive to interventions that increase overall calcium sensitivity by chemical means, such as caffeine, carnosine or increased pH. 4. The extent of the hysteresis is sensitive to sarcomere length. The phenomenon is virtually absent above sarcomere lengths of about 2.2-2.3 microns but becomes progressively greater at shorter sarcomere lengths. 5. The effect of sarcomere length on calcium sensitivity is restricted to the upward-going (increasing activation) part of the pCa-tension loop below 2.2 microns. The downward-going (decreasing activation) part of the hysteretic relationship is virtually unaffected by sarcomere length up to 2.2 microns. 6. Significant alterations in sarcomere length do not occur during tension development in the experiments described here: the phenomenon is not attributable to experimental artifacts of this kind. 7. Hysteresis develops sufficiently rapidly to be consistent with a physiological relevance during the normal heart beat. 8. The effects of sarcomere length show that the phenomenon is not due to force per se since, for example, greater peak force produces less hysteresis as sarcomere length is increased towards 2.2 microns. 9. Tonicity increase (by high-molecular-weight dextran), which shrinks the myofilament lattice, increases calcium sensitivity but reduces the effect of sarcomere length on calcium sensitivity. 10. The results suggest that lattice shrinkage is the mechanism which accounts for hysteresis in, and the sarcomere length dependence of, calcium sensitivity in cardiac muscle.
摘要
  1. 在皂角苷或曲拉通处理(化学“去皮”)的大鼠心肌中,研究了游离钙离子浓度的负对数(pCa)与稳态等长张力之间的关系。2. 该关系中存在滞后现象,即与激活降低时(当[Ca2+]逐步降低时)相比,在激活增加时(当[Ca2+]逐步升高时)肌肉对Ca2+的敏感性更低。3. 滞后程度对通过化学手段提高总体钙敏感性的干预措施不敏感,如咖啡因、肌肽或pH值升高。4. 滞后程度对肌节长度敏感。在肌节长度约为2.2 - 2.3微米以上时,该现象几乎不存在,但在较短的肌节长度时逐渐变得更明显。5. 肌节长度对钙敏感性的影响仅限于2.2微米以下pCa - 张力环的上升(激活增加)部分。滞后关系的下降(激活降低)部分在肌节长度达到2.2微米之前实际上不受影响。6. 在此处描述的实验中,张力发展过程中肌节长度没有发生显著变化:该现象并非归因于此类实验假象。7. 滞后现象发展得足够快,与正常心跳期间的生理相关性一致。8. 肌节长度的影响表明该现象并非由于力本身,例如,随着肌节长度增加至2.2微米,更大的峰值力产生的滞后现象更小。9. 张力增加(通过高分子量右旋糖酐)使肌丝晶格收缩,增加了钙敏感性,但降低了肌节长度对钙敏感性的影响。10. 结果表明,晶格收缩是解释心肌中钙敏感性的滞后现象及其对肌节长度依赖性的机制。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ee8/1191841/8ceddc7e707b/jphysiol00506-0125-a.jpg

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