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Desmin modulates lung elastic recoil and airway responsiveness.

机译:结蛋白调节肺弹性后坐力和气道反应性。

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Desmin is a structural protein that is expressed in smooth muscle cells of both airways and alveolar ducts. Therefore, desmin could be well situated to participate in passive and contractile force transmission in the lung. We hypothesized that desmin modulates lung compliance, lung recoil pressure, and airway contractile response. To test this hypothesis, respiratory system complex impedance (Zin,rs) at different positive end-expiratory pressure (PEEP) levels and quasi-static pressure-volume data were obtained in desmin-null and wild-type mice at baseline and during methacholine administration. Airways and lung tissue properties were partitioned by fitting Zin,rs to a constant-phase model. Relative to controls, desmin-null mice showed 1) lower values for lung stiffness and recoil pressure at baseline and induced airway constriction, 2) greater negative PEEP dependence of H and airway resistance under baseline conditions and cholinergic stimulation, and 3) airway hyporesponsiveness. These results demonstrate that desmin is a load-bearing protein that stiffens the airways and consequently the lung and modulates airway contractile response.
机译:结蛋白是一种结构蛋白,在气道和肺泡管的平滑肌细胞中表达。因此,结蛋白可以很好地参与肺中的被动和收缩力传递。我们假设结蛋白调节肺顺应性,肺后坐力和气道收缩反应。为了验证这一假设,在基线和甲乙胆碱给药期间,在desmin-null和野生型小鼠中获得了不同的呼气末正压(PEEP)水平和准静态压力-体积数据的呼吸系统复阻抗(Zin,rs) 。通过将Zin,rs拟合为恒定相模型来划分气道和肺组织特性。相对于对照,无结皮的小鼠显示1)在基线和诱发气道收缩时肺刚度和后坐压力较低,2)在基线条件和胆碱能刺激下对H和气道阻力的负PEEP负依赖性更大,以及3)气道低反应性。这些结果表明,结蛋白是一种能使气道,进而使肺部僵硬并调节气道收缩反应的负荷蛋白。

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