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首页> 外文期刊>Mycopathologia >Inhalation of Stachybotrys chartarum Evokes Pulmonary Arterial Remodeling in Mice, Attenuated by Rho-Kinase Inhibitor
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Inhalation of Stachybotrys chartarum Evokes Pulmonary Arterial Remodeling in Mice, Attenuated by Rho-Kinase Inhibitor

机译:吸入Stachybotrys chartarum会引起小鼠肺动脉重构,并受到Rho激酶抑制剂的抑制。

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Stachybotrys chartarum, a ubiquitous fungus in our environment, has been suspected of causing respiratory symptoms in humans, such as acute infant pulmonary hemorrhage and asthma. We previously established a mouse model in which repeated inhalation of Stachybotrys chartarum spores caused pulmonary hypertension. To further investigate the model, particularly in the pulmonary circulation, mice were intra-tracheally injected with spores, 18 times over 12 weeks. Severe muscularization was observed in the small- to medium-sized pulmonary arteries. Bronchoalveolar lavage fluid revealed an increase in eosinophils accompanied by high concentrations of Th2-associated cytokines, IL-4, IL-5, but not Th1-associated IFN-γ. The remodeling was temporary, resolving after cessation of spore inhalation. Chronic inhibition of the RhoA/Rho-kinase pathway by fasudil attenuated pulmonary arterial remodeling. These data suggest that Stachybotrys-mediated remodeling is caused by Th2-associated inflammation and can be resolved by Rho-kinase inhibition, either through direct effects on smooth muscle hypertrophy or through indirect effects on vascular inflammation. These data also show that extensive pulmonary vascular remodeling, often thought of as a fixed lesion, will spontaneously resolve in the absence of underlying molecular etiology.
机译:Stachybotrys chartarum,一种在我们环境中无处不在的真菌,​​被怀疑会引起人类呼吸道症状,例如急性婴儿肺出血和哮喘。我们以前建立了一个小鼠模型,其中反复吸入水链金线虫孢子引起肺动脉高压。为了进一步研究该模型,特别是在肺循环中,对小鼠进行气管内注射孢子,历时12周,共18次。在中小型肺动脉中观察到严重的肌肉化。支气管肺泡灌洗液显示嗜酸性粒细胞增多,并伴有高浓度的Th2相关细胞因子,IL-4,IL-5,而非Th1相关的IFN-γ。重塑是暂时的,在停止吸入孢子后解决。法舒地尔对RhoA / Rho激酶途径的慢性抑制减弱了肺动脉重塑。这些数据表明,水飞蓟宾介导的重塑是由Th2相关的炎症引起的,并且可以通过对平滑肌肥大的直接影响或对血管炎症的间接影响通过Rho激酶抑制来解决。这些数据还表明,广泛的肺血管重塑,通常被认为是固定的病变,在没有潜在分子病因的情况下会自发消退。

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