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In vitro effect of meconium on the physical surface properties and morphology of exogenous pulmonary surfactant

机译:胎粪对外源性肺表面活性剂物理表面性质和形态的体外影响

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摘要

The pathophysiology of meconium aspiration syndrome(MAS) is related to mechanical obstruction of the airways and to chemical pneumonitis. Meconium is also suggested to cause functional deterioration of pulmonary surfactant. Recent studies have reported that meconium inhibits the physical surface properties of pulmonary surfactant, and that administration of exogenous surfactant may provide therapeutic benefits in animal models or infants with respiratory distress due to MAS. To assess the effects of meconium on physical surface properties, especially the changes on the air-liquid interface and hypophase of pulmonary surfactant in vitro, we studied the following findings; a) the surface spreading rate(SSR) and the surface adsorption rate(SAR), b) the viscosity, c) the electron microscopic changes, on a series of mixtures with various concentrations of lyophilized human meconium and Surfactant-TA(SurfactenTM). The human meconium has significantly increased the surface tension of SSR and the viscosity of pulmonary surfactant, but had decreased the surface pressure of SAR of surfactant, and changed the electron microscopic findings of surfactant. We have concluded that these findings support the concept that meconium-induced surfactant dysfunction may play a role in the pathophysiology of MAS.
机译:胎粪吸入综合征(MAS)的病理生理与气道机械性阻塞和化学性肺炎有关。还建议使用Medium引起肺表面活性剂的功能下降。最近的研究报道,胎粪抑制肺表面活性剂的物理表面性质,外源性表面活性剂的给药可能在动物模型或因MAS引起呼吸窘迫的婴儿中提供治疗益处。为了评估胎粪对物理表面性质的影响,特别是体外对肺表面活性剂的气液界面和下相变化的影响,我们研究了以下发现: a)在一系列含有各种浓度的冻干人胎和Surfactant-TA(SurfactenTM)的混合物上的表面扩散速率(SSR)和表面吸附速率(SAR),b)粘度,c)电子显微镜变化。人体胎粪显着增加了SSR的表面张力和肺表面活性剂的粘度,但降低了表面活性剂SAR的表面压力,并改变了表面活性剂的电子显微镜结果。我们得出的结论是,这些发现支持了胎粪诱导的表面活性剂功能障碍可能在MAS的病理生理中起作用的概念。

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