Department of Physiology, College of Medicine, Najran University, Saudi Arabia.
Department of Pediatrics, College of Medicine, Najran University, Saudi Arabia.
Can J Physiol Pharmacol. 2020 Nov;98(11):810-817. doi: 10.1139/cjpp-2019-0605. Epub 2020 Jul 20.
The purpose of this study was to explore the potential contracting effect of leptin on isolated guinea pig tracheal smooth muscle (TSM), the possible mechanism, and the impact of epithelium denudation or allergen sensitization, respectively. An in vitro experiment investigated the effect of leptin at a concentration of 250-1000 nmol/L on isolated guinea pig TSM with an intact or denuded epithelium. Ovalbumin and IgE were used to test the impact of active and passive sensitization. The isolated TSM strips were incubated in Krebs solution and aerated with carbogen (95% O and 5% CO) via an automated tissue organ bath system ( = 4 for each group). Isometric contractions were recorded digitally using iox2 data acquisition software. The possible mechanism of leptin-induced TSM contraction was examined by preincubation with leptin receptor (Ob-R) antagonist. Leptin had significant concentration-dependent contraction effects on guinea pig TSM ( < 0.05). Epithelium denuding and active or passive sensitization significantly increased the potency of the leptin. Preincubation with a leptin receptor (Ob-R) antagonist significantly reduced the contraction effects, suggesting an Ob-R-mediated mechanism. Leptin had a contracting effect on airway smooth muscles potentiated by either epithelium denuding or sensitization, and the Ob-R mechanism was a possible effect mediator.
本研究旨在探讨瘦素对分离的豚鼠气管平滑肌(TSM)的潜在收缩作用、可能的机制,以及上皮细胞剥脱或变应原致敏的影响。体外实验研究了浓度为 250-1000 nmol/L 的瘦素对完整或剥脱上皮的分离豚鼠 TSM 的影响。卵清蛋白和 IgE 用于测试主动和被动致敏的影响。使用自动组织器官浴系统(每组 = 4),将分离的 TSM 条在 Krebs 溶液中孵育并通过碳化氧(95%O 和 5%CO)充气。使用 iox2 数据采集软件数字化记录等长收缩。通过预先孵育瘦素受体(Ob-R)拮抗剂来检查瘦素诱导 TSM 收缩的可能机制。瘦素对豚鼠 TSM 具有显著的浓度依赖性收缩作用(<0.05)。上皮细胞剥脱和主动或被动致敏显著增加了瘦素的效力。预先孵育瘦素受体(Ob-R)拮抗剂可显著降低收缩作用,提示存在 Ob-R 介导的机制。瘦素对气道平滑肌具有收缩作用,这种作用可通过上皮细胞剥脱或致敏增强,Ob-R 机制可能是一种有效的介导机制。