Memet T Emin, Alexandra M Dubuisson, Prisha Sujin Kumar, Carsten Knutsen, Cristina M Alvira, Rebecca F Hough
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引用次数: 0
摘要
急性肺损伤(ALI)在儿童和成人中引起高度致命的急性呼吸窘迫综合征(ARDS),缺乏治疗方法。儿童ARDS (PARDS)的死亡率约为成人ARDS的一半。改进的ALI测量可以在幼龄动物的啮齿动物模型中重现,这表明生理差异可能是这些结果的基础。在这里,我们发现肺炎诱导的ALI在成年小鼠内皮中引起依赖yes相关蛋白(YAP)的炎症信号。这种信号在21日龄断奶小鼠中不存在。肺内皮反应转录组学分析显示,核因子κ b (NF-κB)在成年小鼠与断奶小鼠的ALI中显著升高。阻断YAP信号可防止成年小鼠对铜绿假单胞菌肺炎的炎症反应、低氧血症和NF-κB核易位。我们的研究结果表明,在成年小鼠的肺内皮中存在一个重要的信号级联,而在断奶小鼠中不存在。我们认为其他途径也可能表现出年龄依赖的信号,这将对成人和儿童年龄组的ARDS治疗具有重要意义。
Yes-associated Protein Induces Age-dependent Inflammatory Signaling in the Pulmonary Endothelium.
Acute Lung Injury (ALI) causes the highly lethal Acute Respiratory Distress Syndrome (ARDS) in children and adults, for which therapy is lacking. Children with Pediatric ARDS (PARDS) have a mortality rate that is about half of adults with ARDS. Improved ALI measures can be reproduced in rodent models with juvenile animals, suggesting that physiologic differences may underlie these outcomes. Here, we show that pneumonia-induced ALI caused inflammatory signaling in the endothelium of adult mice which depended on Yes-associated protein (YAP). This signaling was not present in 21-day-old weanling mice. Transcriptomic analysis of lung endothelial responses revealed nuclear factor kappa-B (NF-κB) as significantly increased with ALI in adult versus weanling mice. Blockade of YAP signaling protected against inflammatory response, hypoxemia, and NF-κB nuclear translocation in response to Pseudomonas aeruginosa pneumonia in adult mice. Our results demonstrate an important signaling cascade in the lung endothelium of adult mice that is not present in weanlings. We suggest other pathways may also exhibit age-dependent signaling, which would have important implications for ARDS therapeutics in the adult and pediatric age groups.
期刊介绍:
The American Journal of Physiology-Lung Cellular and Molecular Physiology publishes original research covering the broad scope of molecular, cellular, and integrative aspects of normal and abnormal function of cells and components of the respiratory system. Areas of interest include conducting airways, pulmonary circulation, lung endothelial and epithelial cells, the pleura, neuroendocrine and immunologic cells in the lung, neural cells involved in control of breathing, and cells of the diaphragm and thoracic muscles. The processes to be covered in the Journal include gas-exchange, metabolic control at the cellular level, intracellular signaling, gene expression, genomics, macromolecules and their turnover, cell-cell and cell-matrix interactions, cell motility, secretory mechanisms, membrane function, surfactant, matrix components, mucus and lining materials, lung defenses, macrophage function, transport of salt, water and protein, development and differentiation of the respiratory system, and response to the environment.