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长期暴露于冷台氏液后存活的家兔窦房结细胞的电活动

Electrical activity of sinoatrial node cells of the rabbit surviving a long exposure to cold Tyrode's solution.

作者信息

Nishi K, Yoshikawa Y, Takenaka F, Akaike N

出版信息

Circ Res. 1977 Aug;41(2):242-7. doi: 10.1161/01.res.41.2.242.

Abstract

The right atrium including the sinoatrial node was excised from the rabbit heart, immersed in Tyrode's solution, and kept at 0-3 degrees C for several days. The tissue then was warmed to 36-37 degrees C in well oxygenated Tyrode's solution. Transmembrane potentials from cells in the sinoatrial node region and the right atrium were recorded with microelectrodes. After 3 days of storage, the maximum diastolic potential of cells in the sinoatrial node region decreased, but the configuration of the action potential was identical to that of the pacemaker pacemaker potential in the fresh preparation. After 5-7 days of storage, the sinoatrial node tissues in some preparations showed well preserved membrane potentials and pacemaker activity, while in others, the cells were electrically quiescent, or showed subthreshold oscillatory potentials of low amplitude. Transmembrane potentials could not be recorded from the right atrial tissue after storage for this period. Sinoatrial node action potentials with normal configuration were recorded from preparations stored for longer than 10 days. The sinoatrial cells in these preparations responded well to norepinephrine and acetylcholine, indicating that the reactivity of receptors was well preserved. The results provide electrophysiological evidence that cells in the sinoatrial node region can withstand long exposure to cold and retain their sensitivity to neuromediator action, but atrial myocardial cells cannot.

摘要

将兔心脏的右心房(包括窦房结)切除,浸入台氏液中,并在0 - 3℃下保存数天。然后将组织在充分氧合的台氏液中加热至36 - 37℃。用微电极记录窦房结区域和右心房细胞的跨膜电位。储存3天后,窦房结区域细胞的最大舒张电位降低,但动作电位的形态与新鲜标本中的起搏电位相同。储存5 - 7天后,一些标本中的窦房结组织显示膜电位和起搏活动保存良好,而在另一些标本中,细胞电活动静止,或显示低幅度的阈下振荡电位。在此期间储存后,无法从右心房组织记录到跨膜电位。从储存超过10天的标本中记录到形态正常的窦房结动作电位。这些标本中的窦房结细胞对去甲肾上腺素和乙酰胆碱反应良好,表明受体的反应性保存良好。结果提供了电生理证据,表明窦房结区域的细胞能够耐受长时间的低温暴露并保留其对神经介质作用的敏感性,但心房肌细胞则不能。

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