首页> 外文期刊>American Journal of Physiology >Airway injury in lung disease pathophysiology: selective depletion of airway stem and progenitor cell pools potentiates lung inflammation and alveolar dysfunction.
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Airway injury in lung disease pathophysiology: selective depletion of airway stem and progenitor cell pools potentiates lung inflammation and alveolar dysfunction.

机译:肺部疾病病理生理学中的气道损伤:气道干细胞和祖细胞池的选择性消耗会增强肺部炎症和肺泡功能障碍。

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摘要

Identification of early events that contribute to the establishment of chronic lung disease has been complicated by the variable involvement of the airway and alveolar compartments in the complex physiology of end-stage disease. In particular, the impact of airway injury on alveolar integrity and function has not been addressed and would be facilitated by development of animal models of lung disease that specifically target a single cell type within the airway epithelium. We have previously demonstrated that ganciclovir treatment of CCtk transgenic mice, which express the herpes simplex thymidine kinase gene under regulation of the mouse Clara cell secretory protein (CCSP) promoter, results in elimination of the airway progenitor and stem cell pools and a consequent failure of airway regeneration that is associated with rapid morbidity and mortality. In this study, we used the CCtk model to test the hypothesis that selective airway injury initiates profound lung dysfunction through mechanisms that compromise alveolar integrity. Results demonstrate that elimination of the CCSP-expressing cell population results in secondary alveolar inflammation, edema, and depletion of the alveolar type II cell population. On the basis of these data we conclude that selective airway injury can serve as the inciting injury in diseases characterized by severely compromised alveolar function.
机译:由于终末期疾病的复杂生理中气道和肺泡腔室的可变参与,使得有助于建立慢性肺部疾病的早期事件的鉴定变得复杂。特别地,尚未解决气道损伤对肺泡完整性和功能的影响,并且将通过专门针对气道上皮内的单个细胞类型的肺部疾病动物模型的开发来促进。先前我们已经证明更昔洛韦对CCtk转基因小鼠的治疗(其在小鼠Clara细胞分泌蛋白(CCSP)启动子的调控下表达单纯疱疹胸苷激酶基因)导致了气道祖细胞和干细胞池的消除以及由此导致的失败与快速发病和死亡相关的气道再生。在这项研究中,我们使用CCtk模型来检验以下假设,即选择性气道损伤通过损害肺泡完整性的机制引发严重的肺功能障碍。结果表明,消除表达CCSP的细胞群会导致继发性肺泡发炎,浮肿和II型肺泡细胞群的耗竭。根据这些数据,我们得出结论,在以肺泡功能严重受损为特征的疾病中,选择性气道损伤可作为诱发性损伤。

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