Larcombe Alexander N, Zosky Graeme R, Bozanich Elizabeth M, Turner Debra J, Hantos Zoltan, Sly Peter D
Division of Clinical Sciences, Telethon Institute for Child Health Research & Centre for Child Health Research, University of Western Australia, Perth, Australia.
Respir Physiol Neurobiol. 2008 May 31;161(3):223-9. doi: 10.1016/j.resp.2008.01.009. Epub 2008 Feb 7.
Basal airway smooth muscle (ASM) tone has not been demonstrated in mice in vivo. To determine whether basal ASM tone is present in mouse airways we measured respiratory system impedance (Zrs) before and after either atropine or bilateral vagotomy. Zrs was measured using forced oscillations delivered via a wave-tube during slow ( approximately 35s) inflation-deflation maneuvers between transrespiratory pressures (Prs) of 0 and 20 cm H2O. A constant-phase tissue model was applied to the Zrs to calculate airway resistance (R aw), tissue damping (G) and elastance (H). Thoracic gas volume (TGV) was determined plethysmographically at Prs=0 cm H2O and by integration of the inspiratory flow. The relationship between conductance (G aw=1/R aw) and TGV during inflation was also examined. Neither atropine nor vagotomy produced any change in R aw, H, eta (=G/H), TGV or the slope of G aw vs. TGV that was different to that observed in the relevant control groups. These data show that BALB/c mice do not have cholinergic ASM tone in vivo.
在小鼠体内尚未证实存在基础气道平滑肌(ASM)张力。为了确定小鼠气道中是否存在基础ASM张力,我们在给予阿托品或双侧迷走神经切断术前和术后测量了呼吸系统阻抗(Zrs)。在0至20 cm H2O的跨呼吸压力(Prs)之间进行缓慢(约35秒)的充气-放气操作期间,通过波管施加强迫振荡来测量Zrs。将恒定相位组织模型应用于Zrs以计算气道阻力(Raw)、组织阻尼(G)和弹性(H)。在Prs = 0 cm H2O时通过体积描记法测定胸内气体容积(TGV),并通过吸气流量积分来确定。还研究了充气期间传导率(Gaw = 1 / Raw)与TGV之间的关系。阿托品和迷走神经切断术均未使Raw、H、η(= G / H)、TGV或Gaw与TGV关系曲线的斜率发生任何不同于相关对照组的变化。这些数据表明,BALB / c小鼠体内不存在胆碱能ASM张力。