Kurihara S
Jpn J Physiol. 1974 Dec;24(6):649-66. doi: 10.2170/jjphysiol.24.649.
The effect of rapid cooling on the mechanical activities of the cardiac muscles of the Japanese toad was examined. 1. The mechanical responses produced by rapid cooling (23 leads to 0 degrees C) in both auricular and ventricular muscle preparations were composed of an immediate effect (phasic contraction) and a delayed effect (tonic contraction). The immediate effect was blocked by TTX, but the delayed effect was not affected by TTX and Mn. 2. The tonic contraction of the delayed effect produced by rapid cooling was potentiated in Na-deficient Ringer solution in which an equivalent amount of NaC1 was substituted for Tris-C1. The relationship between the relative tension of the delayed effect produced by rapid cooling and the ratio of [Ca2+]/[Na+]2 showed an S-shaped curve. 3. Generation of tension development of the delayed effect produced by rapid cooling was obviously dependent upon the extracellular Ca concentrations. There waa an S-shaped relationship between the relative tension of the delayed effect and pCa in the extracellular medium. 4. In the test solution containing Ca less than pCa8.0, no tension development of the delayed effect was observed. However, the rapid cooling contracture was strongly elicited by application of caffeine (caffeine-RCC). 5. The caffeine-RCC was also observed in the presence of 100 mM KC1. 6. From the results of the present study, it was considered that, even though the Ca influx was abolished, the contraction of the cardiac muscle could be produced by another mechanism, probably due to increase of myoplasmic Ca released by raid cooling from the cell membrane itself and the sarcoplasmic reticulum.
研究了快速冷却对日本蟾蜍心肌机械活动的影响。1. 快速冷却(从23℃降至0℃)在心房和心室肌制备物中产生的机械反应由即时效应(相性收缩)和延迟效应(强直性收缩)组成。即时效应被TTX阻断,但延迟效应不受TTX和Mn的影响。2. 在缺乏Na的林格氏液中,用等量的Tris-Cl替代NaCl,快速冷却产生的延迟效应的强直性收缩增强。快速冷却产生的延迟效应的相对张力与[Ca2+]/[Na+]2比值之间呈S形曲线。3. 快速冷却产生的延迟效应的张力发展明显依赖于细胞外Ca浓度。延迟效应的相对张力与细胞外介质中的pCa之间呈S形关系。4. 在Ca浓度低于pCa8.0的测试溶液中,未观察到延迟效应的张力发展。然而,应用咖啡因(咖啡因-RCC)可强烈引发快速冷却挛缩。5. 在100 mM KCl存在的情况下也观察到咖啡因-RCC。6. 根据本研究结果,认为即使Ca内流被消除,心肌收缩也可能通过另一种机制产生,可能是由于快速冷却从细胞膜本身和肌浆网释放的肌浆Ca增加所致。