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异氟烷对费希尔大鼠和刘易斯大鼠气道平滑肌横桥动力学的影响。

The effects of isoflurane on airway smooth muscle crossbridge kinetics in Fisher and Lewis rats.

作者信息

Duracher Caroline, Blanc François-Xavier, Gueugniaud Pierre-Yves, David Jean Stéphane, Riou Bruno, Lecarpentier Yves, Coirault Catherine

机构信息

Laboratory of Pathophysiologie cellulaire et moléculaire de l'insuffisance cardiaque, Institut National de la Santé et de la Recherche Médicale INSERM U572 Centre Hospitalo-Universitaire Lariboisière, Assistance Publique-Hôpitaux de Paris, France.

出版信息

Anesth Analg. 2005 Jul;101(1):136-42, table of contents. doi: 10.1213/01.ANE.0000152644.44927.E4.

Abstract

Our aim was to determine how isoflurane modified crossbridge (CB) number and kinetics in airway smooth muscle (ASM) and to compare its effects in Fisher and Lewis rats, two strains with differences in airway responsiveness. The effects of isoflurane (2 MAC) on isotonic and isometric contractility in tracheal ASM strips were investigated after methacholine (10(-6) M)-induced contraction. CB mechanics and kinetics were analyzed using the formalism of Huxley's equations adapted to ASM. After isoflurane, maximum velocity did not differ from baseline in Lewis rats, whereas it was significantly less than baseline in Fisher rats ( approximately 25%), the most reactive strain. Isoflurane totally reversed methacholine-induced increase in active CB number in Lewis rats (2.4 +/- 0.5 versus 1.8 +/- 0.4 10(9)/mm(2) after methacholine and isoflurane, respectively) whereas reversal was only partial in Fisher rats (2.7 +/- 0.4 versus 2.1 +/- 0.3 10(9)/mm(2) after methacholine and isoflurane, respectively). Isoflurane induced a 40% increase in attachment step duration in both strains and an almost twofold increase in the CB cycle duration compared with baseline in Lewis rats. The isoflurane-induced increase in detachment step duration was less in Lewis than in Fisher rats (P < 0.05). We concluded that isoflurane modulated CB number and CB cycling rates of isolated rat ASM differently depending on the level of airway responsiveness.

摘要

我们的目的是确定异氟烷如何改变气道平滑肌(ASM)中的横桥(CB)数量和动力学,并比较其在Fisher大鼠和Lewis大鼠中的作用,这两种品系在气道反应性方面存在差异。在乙酰甲胆碱(10⁻⁶ M)诱导收缩后,研究了异氟烷(2 MAC)对气管ASM条带等张和等长收缩性的影响。使用适用于ASM的赫胥黎方程形式分析CB力学和动力学。异氟烷作用后,Lewis大鼠的最大速度与基线无差异,而在反应性最强的Fisher大鼠中,最大速度显著低于基线(约25%)。异氟烷完全逆转了Lewis大鼠中乙酰甲胆碱诱导的活性CB数量增加(乙酰甲胆碱和异氟烷作用后分别为2.4±0.5与1.8±0.4×10⁹/mm²),而在Fisher大鼠中逆转仅为部分(乙酰甲胆碱和异氟烷作用后分别为2.7±0.4与2.1±0.3×10⁹/mm²)。异氟烷使两种品系的附着步骤持续时间增加40%,与Lewis大鼠的基线相比,CB周期持续时间增加近两倍。Lewis大鼠中异氟烷诱导的分离步骤持续时间增加小于Fisher大鼠(P<0.05)。我们得出结论,异氟烷根据气道反应性水平对离体大鼠ASM的CB数量和CB循环速率进行不同的调节。

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