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豚鼠心室肌的咖啡因挛缩及细胞外钠离子的作用。

Caffeine contracture in guinea-pig ventricular muscle and the effect of extracellular sodium ions.

作者信息

Kitazawa T

机构信息

Department of Pharmacology, Juntendo University School of Medicine, Tokyo, Japan.

出版信息

J Physiol. 1988 Aug;402:703-29. doi: 10.1113/jphysiol.1988.sp017230.

Abstract
  1. The mechanisms underlying the virtual absence of caffeine contracture in guinea-pig heart in a Na+-rich external solution were reinvestigated in small (50-120 microns thick) bundles of intact and skinned papillary muscle fibres. 2. In Na+-free solution, the peak tension of 30 mM-caffeine contracture corresponded to the maximum tension of the skinned fibres, and was independent of changes in [Ca2+]o and [K+]o. In the presence of external Na+, the peak tension, which was at most several per cent of the maximum, was affected by [Ca2+]o, [Na+]o and [K+]o, and enhanced by Mn2+ and Ni2+. 3. In the absence of Ca2+, replacement of Na+ with K+ allowed caffeine to evoke a large contracture, showing that there was sufficient calcium stored in the cells under Na+-rich conditions. After treatment with 30 mM-caffeine in the Na+-rich, Ca2+-free solution, and upon replacement of all Na+ with Li+, caffeine was still able to produce a large contracture, which was dependent upon Ca2+ pre-loading of the cells before the first caffeine treatment and upon the subsequent duration in the Na+-free solution. 4. Replacement of Li+ with Na+ during the contracture led to rapid relaxation which was delayed by an increase in [Ca2+]o, depolarization by K+, and addition of La3+ and Mn2+. After Na+-induced complete relaxation in the absence of Ca2+, upon removal of the drugs and Na+, subsequent application of caffeine to the cells evoked a large contracture without Ca2+ reloading. 5. In the skinned fibres, 30 mM-caffeine increased the Ca2+ sensitivity of the contractile system and depressed the maximum tension. An increase in Na+ from 8.4 to 58.4 mM altered neither Ca2+ sensitivity nor the rate of tension development in the absence or presence of caffeine. 6. Increase in Na+ affected neither the rate nor the amount of Ca2+ uptake by the sarcoplasmic reticulum (SR) in the absence or presence of caffeine. Increasing Na+ slightly inhibited the caffeine-induced Ca2+ release from the SR, but more than 10 mM-caffeine produced SR Ca2+ depletion. 7. In the presence of a strong Ca2+ buffer, the steady level of Ca2+ uptake by the SR with 1 mM-caffeine was equal to the amount of Ca2+ remaining in the SR just after the application of caffeine, indicating that Ca2+ release was not inactivated.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用完整的和去表皮的乳头肌纤维小束(50 - 120微米厚),对富含钠离子的细胞外溶液中豚鼠心脏几乎不存在咖啡因挛缩的潜在机制进行了重新研究。2. 在无钠溶液中,30 mM咖啡因挛缩的峰值张力与去表皮纤维的最大张力相对应,且与细胞外钙离子浓度([Ca2+]o)和钾离子浓度([K+]o)的变化无关。在有细胞外钠离子存在时,峰值张力(最多为最大值的百分之几)受[Ca2+]o、[Na+]o和[K+]o影响,并被锰离子(Mn2+)和镍离子(Ni2+)增强。3. 在无钙离子的情况下,用钾离子替代钠离子可使咖啡因引发较大的挛缩,表明在富含钠离子的条件下细胞内储存了足够的钙。在富含钠离子、无钙的溶液中用30 mM咖啡因处理后,当用锂离子替代所有钠离子时,咖啡因仍能产生较大的挛缩,这取决于第一次咖啡因处理前细胞的钙预负荷以及随后在无钠溶液中的持续时间。4. 在挛缩过程中用钠离子替代锂离子会导致快速松弛,而细胞外钙离子浓度升高、钾离子去极化以及添加镧离子(La3+)和锰离子会延迟这种松弛。在无钙情况下钠离子诱导完全松弛后,去除药物和钠离子,随后对细胞施加咖啡因会引发较大的挛缩而无需重新加载钙离子。5. 在去表皮纤维中,30 mM咖啡因增加了收缩系统对钙离子的敏感性并降低了最大张力。在不存在或存在咖啡因的情况下,将钠离子浓度从8.4 mM增加到58.4 mM既未改变钙离子敏感性,也未改变张力发展速率。6. 在不存在或存在咖啡因的情况下,钠离子增加对肌浆网(SR)摄取钙离子的速率和量均无影响。增加钠离子会轻微抑制咖啡因诱导的肌浆网钙离子释放,但超过10 mM的咖啡因会导致肌浆网钙离子耗竭。7. 在存在强钙离子缓冲剂的情况下,1 mM咖啡因时肌浆网摄取钙离子的稳定水平等于施加咖啡因后肌浆网中剩余的钙离子量,表明钙离子释放未失活。(摘要截断于400字)

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