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Protectin DX increases alveolar fluid clearance in rats with lipopolysaccharide-induced acute lung injury

机译:Protectin DX增加脂多糖诱导的急性肺损伤大鼠肺泡液清除

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摘要

Acute respiratory distress syndrome is a life-threatening critical syndrome resulting largely from the accumulation of and the inability to clear pulmonary edema. Protectin DX, an endogenously produced lipid mediator, is believed to exert anti-inflammatory and pro-resolution effects. Protectin DX (5 µg/kg) was injected i.v. 8 h after LPS (14 mg/kg) administration, and alveolar fluid clearance was measured in live rats (n = 8). In primary rat ATII epithelial cells, protectin DX (3.605 × 10−3 mg/l) was added to the culture medium with LPS for 6 h. Protectin DX improved alveolar fluid clearance (9.65 ± 1.60 vs. 15.85 ± 1.49, p < 0.0001) and decreased pulmonary edema and lung injury in LPS-induced lung injury in rats. Protectin DX markedly regulated alveolar fluid clearance by upregulating sodium channel and Na, K-ATPase protein expression levels in vivo and in vitro. Protectin DX also increased the activity of Na, K-ATPase and upregulated P-Akt via inhibiting Nedd4–2 in vivo. In addition, protectin DX enhanced the subcellular distribution of sodium channels and Na, K-ATPase, which were specifically localized to the apical and basal membranes of primary rat ATII cells. Furthermore, BOC-2, Rp-cAMP, and blocked the increased alveolar fluid clearance in response to protectin DX. Protectin DX stimulates alveolar fluid clearance through a mechanism partly dependent on alveolar epithelial sodium channel and Na, K-ATPase activation via the ALX/PI3K/Nedd4–2 signaling pathway.
机译:急性呼吸窘迫综合征是危及生命的严重综合征,主要是由于肺水肿的积累和无法清除导致的。人们认为,Protin DX是一种内源性脂质介体,可发挥抗炎和促分解作用。静脉内注射Prottin DX(5μg/ kg)。 LPS(14μg/ kg)给药后8h,在活大鼠中测量肺泡液清除率(n = 8)。在原代大鼠ATII上皮细胞中,将保护素DX(3.605×10 -3 mg / l)加入LPS培养基中培养6 h。 Protectin DX改善了LPS所致大鼠肺损伤中肺泡液清除率(9.65±1.60 vs. 15.85±1.49,p <0.0001),并减少了肺水肿和肺损伤。 Protectin DX通过在体内和体外上调钠通道和Na,K-ATPase蛋白表达水平来显着调节肺泡液清除。 Protectin DX还可以通过抑制Nedd4-2体内而增加Na,K-ATPase的活性并上调P-Akt。此外,保护素DX增强了钠通道和Na,K-ATPase的亚细胞分布,这些通道专门定位于原代大鼠ATII细胞的顶膜和基膜。此外,BOC-2,Rp-cAMP和对保护素DX的反应阻止了肺泡液清除率的增加。 Protectin DX通过部分依赖肺泡上皮钠通道和通过ALX / PI3K / Nedd4-2信号通路激活Na,K-ATPase的机制刺激肺泡液清除。

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