The receptor for advanced glycation end products mediates dysfunction of airway epithelial barrier in a lipopolysaccharides-induced murine acute lung injury model

支气管肺泡灌洗 紧密连接 封堵器 愤怒(情绪) 势垒函数 HMGB1 炎症 医学 免疫学 急性呼吸窘迫综合征 受体 生物 细胞生物学 内科学 神经科学
作者
Jiahui Li,Kai Wang,Bo Huang,Rui Li,Xilong Wang,Hailing Zhang,Haixiong Tang,Xin Chen
出处
期刊:International Immunopharmacology [Elsevier]
卷期号:93: 107419-107419 被引量:21
标识
DOI:10.1016/j.intimp.2021.107419
摘要

• LPS exposure impairs airway epithelial cells adhesion and tight junction barrier function. • Blocking RAGE activity ameliorates LPS-induced dysfunction of airway epithelial barrier. • RAGE inhibition blunts airway inflammation and injury induced by LPS. Airway epithelial cells (AECs) act as the first barrier protecting against invasion of environment agents and maintain integrity of lung structure and function. Dysfunction of airway epithelial barrier has been shown to be involved in ALI/ARDS pathogenesis. Yet, the exact mechanism is still obscure. Our study evaluated whether the receptor for advanced glycation end products (RAGE) mediates impaired airway epithelial barrier in LPS-induced murine ALI model. Male BALB/c mice were subjected to intratracheal instillation of LPS to generate an ALI model. Inhibitors of RAGE, FPS-ZM1 and Azeliragon were respectively given to the mice through intraperitoneal injection. Bronchoalveolar lavage fluid (BALF) and lung tissues were collected for further analysis. LPS exposure led to markedly increased expression of RAGE and its ligands HMGB1, HSP70, S100b. Treatment of FPS-ZM1 or Azeliragon not only effectively descended the expression of RAGE and its ligands but also attenuated LPS-induced neutrophil-predominant airway inflammation and injury, decreased levels of IL-6, IL-1β and TNF-α in BALF, alleviated increased alveolar-capillary permeability and pulmonary edema. LPS stimulation significantly impaired the integrity of airway epithelium, paralleled with dislocation of adheren junction (AJ) protein E-cadherin at cell-cell contacts and down-expression of both AJ and tight junction (TJ) proteins Claudin-2 and occludin, all of which were dramatically rescued by RAGE inhibition. RAGE signaling mediates airway epithelial barrier dysfunction in a LPS-induced ALI murine model.
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