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马尿酸 1 通过肺泡上皮钠通道 Na,K-ATP 酶通过 ALX/PI3K/Nedd4-2 途径刺激肺泡液清除。

Maresin1 stimulates alveolar fluid clearance through the alveolar epithelial sodium channel Na,K-ATPase via the ALX/PI3K/Nedd4-2 pathway.

机构信息

Department of Anesthesia and Critical Care, Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Zhejiang, China.

Academic Department of Anesthesia, Critical Care, Pain and Resuscitation, Birmingham Heartlands Hospital, Heart of England NHS Foundation Trust, Birmingham, UK.

出版信息

Lab Invest. 2017 May;97(5):543-554. doi: 10.1038/labinvest.2016.150. Epub 2017 Feb 20.

Abstract

Maresin1 (MaR1) is a new docosahexaenoic acid-derived pro-resolving agent that promotes the resolution of inflammation. In this study, we sought to investigate the effect and underlining mechanisms of MaR1 in modulating alveolar fluid clearance (AFC) on LPS-induced acute lung injury. MaR1 was injected intravenously or administered by instillation (200 ng/kg) 8 h after LPS (14 mg/kg) administration and AFC was measured in live rats. In primary rat alveolar type II epithelial cells, MaR1 (100 nM) was added to the culture medium with lipopolysaccharide for 6 h. MaR1 markedly stimulated AFC in LPS-induced lung injury, with the outcome of decreased pulmonary edema and lung injury. In addition, rat lung tissue protein was isolated after intervention, and we found MaR1 improved epithelial sodium channel (ENaC), Na,K-adenosine triphosphatase (ATPase) protein expression and Na,K-ATPase activity. MaR1 down-regulated Nedd4-2 protein expression though PI3k/Akt but not though PI3k/SGK1 pathway in vivo. In primary rat alveolar type II epithelial cells stimulated with LPS, MaR1-upregulated ENaC and Na,K-ATPase protein abundance in the plasma membrane. Finally, the lipoxin A4 Receptor inhibitor (BOC-2) and PI3K inhibitor (LY294002) not only blocked MaR1's effects on cAMP/cGMP, the expression of phosphorylated Akt and Nedd4-2, but also inhibited the effect of MaR1 on AFC in vivo. In conclusion, MaR1 stimulates AFC through a mechanism partly dependent on alveolar epithelial ENaC and Na,K-ATPase activation via the ALX/PI3K/Nedd4-2 signaling pathway. Our findings reveal a novel mechanism for pulmonary edema fluid reabsorption and MaR1 may provide a new therapy for the resolution of ALI/ARDS.

摘要

maresin1(MaR1)是一种新的二十二碳六烯酸衍生的促解决剂,可促进炎症的消退。在这项研究中,我们试图研究 MaR1 调节脂多糖(LPS)诱导的急性肺损伤肺泡液清除(AFC)的作用和潜在机制。MaR1 于 LPS(14mg/kg)给药后 8 小时静脉内注射或滴注(200ng/kg),并在活大鼠中测量 AFC。在原代大鼠肺泡 II 型上皮细胞中,MaR1(100nM)在添加脂多糖的培养基中添加 6 小时。MaR1 明显刺激 LPS 诱导的肺损伤中的 AFC,导致肺水肿和肺损伤减少。此外,干预后分离大鼠肺组织蛋白,我们发现 MaR1 改善了上皮钠通道(ENaC)、Na,K-三磷酸腺苷酶(ATPase)蛋白表达和 Na,K-ATPase 活性。MaR1 通过 PI3k/Akt 但不是通过 PI3k/SGK1 途径下调 Nedd4-2 蛋白表达。在 LPS 刺激的原代大鼠肺泡 II 型上皮细胞中,MaR1 上调了质膜上 ENaC 和 Na,K-ATPase 蛋白丰度。最后,脂氧素 A4 受体抑制剂(BOC-2)和 PI3K 抑制剂(LY294002)不仅阻断了 MaR1 对 cAMP/cGMP、磷酸化 Akt 和 Nedd4-2 表达的影响,而且抑制了 MaR1 在体内对 AFC 的影响。总之,MaR1 通过部分依赖于肺泡上皮 ENaC 和 Na,K-ATPase 激活的机制刺激 AFC,该机制通过 ALX/PI3K/Nedd4-2 信号通路。我们的研究结果揭示了肺水肿液重吸收的新机制,MaR1 可能为急性肺损伤/急性呼吸窘迫综合征的解决提供新的治疗方法。

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