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低温对负鼠食管环行肌膜电位反应的影响。

Effect of cold temperature on membrane potential responses in opossum esophageal circular muscle.

作者信息

Kauvar D, Crist J, Goyal R K

机构信息

Charles A. Dana Research Institute, Boston, Massachusetts.

出版信息

Am J Physiol. 1989 Oct;257(4 Pt 1):G637-43. doi: 10.1152/ajpgi.1989.257.4.G637.

DOI:10.1152/ajpgi.1989.257.4.G637
PMID:2801945
Abstract

The effects of cold temperature on resting membrane potential (RMP) and membrane potential responses to depolarizing electrical current and intramural nerve stimulation were examined in opossum esophageal circular smooth muscle. Intracellular recordings were made in smooth muscle strips obtained from 7 to 8 cm (proximal site) and 1 to 2 cm (distal site) above the lower esophageal sphincter. RMP was not affected by changes in temperature between 34 and 22 degrees C. Cooling caused progressive inhibition of the amplitude and a slight increase in the duration of the spike potential produced by depolarizing current. Cooling did not modify the threshold for spike potential generation but decreased the spike amplitude from 34.0 +/- 0.5 mV at 34 degrees C to 14.1 +/- 2.2 mV at 22 degrees C (P less than 0.01). Electrical field stimulation with single electrical pulses (1.0 ms) produced tetrodotoxin-sensitive biphasic membrane responses consisting of initial hyperpolarization, or an inhibitory junction potential followed by depolarization that increased in amplitude as temperature was decreased from 34 to 26 degrees C and then decreased in amplitude as temperature was further decreased. At both proximal and distal sites cooling from 34 to 22 degrees C caused more than a twofold increase in the duration of hyperpolarization and time to peak depolarization. However, the increase in the absolute time of the duration of hyperpolarization and the time to peak depolarization was significantly greater at the distal than proximal esophageal site. Cooling to 16 degrees C decreased RMP and nearly abolished the biphasic membrane potential response.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在负鼠食管环形平滑肌中,研究了低温对静息膜电位(RMP)以及膜电位对去极化电流和壁内神经刺激反应的影响。在取自食管下括约肌上方7至8厘米(近端部位)和1至2厘米(远端部位)的平滑肌条上进行细胞内记录。在34摄氏度至22摄氏度之间,温度变化对RMP没有影响。降温导致去极化电流产生的锋电位幅度逐渐受到抑制,锋电位持续时间略有增加。降温并未改变锋电位产生的阈值,但使锋电位幅度从34摄氏度时的34.0±0.5毫伏降至22摄氏度时的14.1±2.2毫伏(P<0.01)。用单个电脉冲(1.0毫秒)进行电场刺激产生了对河豚毒素敏感的双相膜反应,包括初始超极化或抑制性接头电位,随后是去极化,随着温度从34摄氏度降至26摄氏度,去极化幅度增加,然后随着温度进一步降低而减小。在近端和远端部位,从34摄氏度降至22摄氏度均导致超极化持续时间和去极化峰值时间增加两倍以上。然而,远端食管部位超极化持续时间和去极化峰值时间的绝对增加幅度明显大于近端部位。冷却至16摄氏度会降低RMP,并几乎消除双相膜电位反应。(摘要截断于250字)

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