Chang Hung-Chi, Chen Shin-Yan, Huang Yu-Feng, Liu Feng-Lin, Cherng Yih-Giun, Wang Hsing-Won
Department of Anesthesiology, Shuang Ho Hospital, Taipei Medical University, Taipei, Taiwan.
Graduate Institute of Translational and Interdisciplinary Medicine, National Central University, Taoyuan, Taiwan.
J Anesth. 2015 Oct;29(5):809-12. doi: 10.1007/s00540-015-2026-8. Epub 2015 May 21.
Levobupivacaine has been developed as a safer alternative to bupivacaine because of its reduced systemic toxicity. However, the effect of directly delivering levobupivacaine into tracheal smooth muscle has not been adequately explored. We performed this study to determine the in vitro effects of levobupivacaine on isolated rat tracheal smooth muscle. A portion of rat trachea 5 mm in length was mounted in 30 ml of Krebs solution in a muscle bath at 37 °C. The following effects of levobupivacaine were assessed: (1) the effect on tracheal smooth muscle resting tension (n = 6), (2) the effect on contraction caused by 10(-6) M methacholine (n = 6) and (3) the effect on electrically induced tracheal smooth muscle contractions (n = 6). Levobupivacaine caused dose-dependent relaxation in the trachealis muscle precontracted with 10(-6) M methacholine. Contraction inhibition was statistically significant when 10(-5) and 10(-4) M levobupivacaine were applied, compared with the contraction inhibition that occurred in the control groups (p < 0.01). A high dose of levobupivacaine also decreased the spike contraction induced by electrical field stimulation. This study indicated that high concentrations of levobupivacaine might antagonize the cholinergic receptors and inhibit parasympathetic function of the trachea.
左旋布比卡因因其全身毒性较低,已被开发为布比卡因更安全的替代品。然而,将左旋布比卡因直接输送到气管平滑肌中的效果尚未得到充分研究。我们进行了这项研究,以确定左旋布比卡因对离体大鼠气管平滑肌的体外作用。将一段5毫米长的大鼠气管置于37℃肌肉浴中的30毫升克雷布斯溶液中。评估了左旋布比卡因的以下作用:(1)对气管平滑肌静息张力的影响(n = 6),(2)对由10(-6)M乙酰甲胆碱引起的收缩的影响(n = 6),以及(3)对电诱导的气管平滑肌收缩的影响(n = 6)。左旋布比卡因使预先用10(-6)M乙酰甲胆碱收缩的气管肌产生剂量依赖性松弛。与对照组相比,应用10(-5)和10(-4)M左旋布比卡因时收缩抑制具有统计学意义(p < 0.01)。高剂量的左旋布比卡因也降低了电场刺激诱导的尖峰收缩。这项研究表明,高浓度的左旋布比卡因可能拮抗胆碱能受体并抑制气管的副交感神经功能。