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低温条件下电场刺激对分离大鼠气管平滑肌基础张力的增强作用。

Enhanced basal tension in isolated rat tracheal smooth muscle stimulated by electric field stimulation under low temperature.

机构信息

The Graduate Institute of Clinical Medicine and Department of Otolaryngology, College of Medicine, Taipei Medical University-Shuang Ho Hospital, Taipei, Taiwan, Republic of China.

Department of Preventive and Community Medicine, College of Medicine, Taipei Medical University-Shuang Ho Hospital, Taipei, Taiwan, Republic of China.

出版信息

Int J Med Sci. 2018 Oct 20;15(14):1611-1615. doi: 10.7150/ijms.27603. eCollection 2018.

Abstract

Exposure to cold causes cutaneous vasoconstriction to reduce body heat loss, while the airway warms up the inspired cold air, thus suggesting that cooling might evoke a response in tracheal smooth muscle different from that in cutaneous blood vessels. The aim of this study was to evaluate the effect of temperature on isolated rat trachea, with or without electric field stimulation (EFS). Tissue bath for isolated trachea was used. An isometric contraction of trachea from healthy male Sprague-Dawley rat (body weight: ≥ 200 g) was continuously recorded. Tension in strips of rat trachea that were untreated and treated with EFS, was continuously recorded in stepwise manner at temperatures varying from 37 °C to 7 °C or from 7 °C to 37 °C. Results indicated that descent and re-ascent of temperature produced temperature-dependent tension changes. Basal tension of the trachea decreased when temperature was reduced if EFS was not applied. EFS-induced spike contraction decreased when temperature was reduced, while basal tension increased at the same time. We concluded that low temperature induced rapid and reproducible contraction in isolated rat tracheal strip only if EFS was applied. Increasing temperature reduced basal tension and enhanced EFS-induced spike contraction of the trachea at the same time.

摘要

暴露于寒冷会导致皮肤血管收缩,以减少身体热量的损失,而气道则会使吸入的冷空气变暖,因此可以推测,冷却可能会引起气管平滑肌的反应不同于皮肤血管。本研究旨在评估温度对分离的大鼠气管的影响,包括有无电场刺激(EFS)。使用离体气管组织浴槽。连续记录来自健康雄性 Sprague-Dawley 大鼠(体重:≥200 g)的气管等长收缩。以 37°C 至 7°C 或 7°C 至 37°C 的逐步方式连续记录未经处理和经 EFS 处理的大鼠气管条的张力。结果表明,降温或升温会产生依赖于温度的张力变化。如果未施加 EFS,则温度降低时气管的基础张力降低。EFS 诱导的尖峰收缩随温度降低而减少,而基础张力同时增加。我们得出结论,只有在施加 EFS 的情况下,低温才会引起分离的大鼠气管条的快速和可重复的收缩。升高温度会降低基础张力,并同时增强 EFS 诱导的气管尖峰收缩。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b308/6299406/e671801d8207/ijmsv15p1611g001.jpg

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