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Differential Expression of Aquaporins in Experimental Models of Acute Lung Injury

机译:水通道蛋白在急性肺损伤实验模型中的差异表达

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Aim: The mammalian lung expresses at least three aquaporin (AQP) water channels whose precise role in lung injury or inflammation is still controversial. Materials and Methods: Three murine models of lung inflammation and corresponding controls were used to evaluate the expression of Aqp1, Aqp4, Aqp5 and Aqp9: lipopolysaccharide (LPS)-induced lung injury; HCl-induced lung injury; and ventilation-induced lung injury (VILI). Results: All models yielded increased lung vascular permeability, and inflammatory cell infiltration in the broncho-alveolar lavage fluid; VILI additionally produced altered lung mechanics. Lung expression of Aqp4 decreased in the models that targeted primarily the alveolar epithelium, i.e. acid aspiration and mechanical ventilation, while Aqp5 expression decreased in the model that appeared to target both the capillary endothelium and alveolar epithelium, i.e. LPS. Conclusion: Participation of aquaporins in the acute inflammatory process depends on localization and the type of lung injury.
机译:目的:哺乳动物的肺表达至少三个水通道蛋白(AQP)水通道,其在肺损伤或炎症中的确切作用仍存在争议。材料与方法:采用三种小鼠肺炎症模型及相应的对照,评价脂多糖(LPS)诱导的肺损伤中Aqp1,Aqp4,Aqp5和Aqp9的表达。盐酸引起的肺损伤;和通气诱发的肺损伤(VILI)。结果:所有模型均增加了肺血管通透性,并在支气管肺泡灌洗液中引起炎性细胞浸润; VILI还改变了肺的力学。在主要针对肺泡上皮即酸抽吸和机械通气的模型中,Aqp4的肺表达降低,而在同时针对毛细血管内皮和肺泡上皮(即LPS)的模型中,Aqp5表达下降。结论:水通道蛋白参与急性炎症过程取决于肺损伤的部位和类型。

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