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Surfactant protein C dampens inflammation by decreasing JAK/STAT activation during lung repair

机译:表面活性蛋白C通过减少肺修复过程中的JAK / STAT活化来减轻炎症

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摘要

Surfactant protein C (SPC), a key component of pulmonary surfactant, also plays a role in regulating inflammation. SPC deficiency in patients and mouse models is associated with increased inflammation and delayed repair, but the key drivers of SPC-regulated inflammation in response to injury are largely unknown. This study focuses on a new mechanism of SPC as an anti-inflammatory molecule using SPC-TK/SPC-KO (surfactant protein C-thymidine kinase/surfactant protein C knockout) mice, which represent a novel sterile injury model that mimics clinical acute respiratory distress syndrome (ARDS). SPC-TK mice express the inducible suicide gene thymidine kinase from by the SPC promoter, which targets alveolar type 2 (AT2) cells for depletion in response to ganciclovir (GCV). We compared GCV-induced injury and repair in SPC-TK mice that have normal endogenous SPC expression with SPC-TK/SPC-KO mice lacking SPC expression. In contrast to SPC-TK mice, SPC-TK/SPC-KO mice treated with GCV exhibited more severe inflammation, resulting in over 90% mortality; there was only 8% mortality of SPC-TK animals. SPC-TK/SPC-KO mice had highly elevated inflammatory cytokines and granulocyte infiltration in the bronchoalveolar lavage (BAL) fluid. Consistent with a proinflammatory phenotype, immunofluorescence revealed increased phosphorylated signal transduction and activation of transcription 3 (pSTAT3), suggesting enhanced Janus kinase (JAK)/STAT activation in inflammatory and AT2 cells of SPC-TK/SPC-KO mice. The level of suppressor of cytokine signaling 3, an anti-inflammatory mediator that decreases pSTAT3 signaling, was significantly decreased in the BAL fluid of SPC-TK/SPC-KO mice. Hyperactivation of pSTAT3 and inflammation were rescued by AZD1480, a JAK1/2 inhibitor. Our findings showing a novel role for SPC in regulating inflammation via JAK/STAT may have clinical applications.
机译:表面活性蛋白C(SPC)是肺表面活性剂的关键成分,在调节炎症中也起作用。患者和小鼠模型中SPC的缺乏与炎症增加和修复延迟有关,但是很大程度上尚不清楚SPC调节的针对炎症反应的关键驱动因素。这项研究集中在使用SPC-TK / SPC-KO(表面活性蛋白C-胸苷激酶/表面活性蛋白C基因敲除)小鼠作为抗炎分子的SPC的新机制上,它代表了一种新型的模拟临床急性呼吸道的无菌损伤模型。窘迫综合征(ARDS)。 SPC-TK小鼠通过SPC启动子表达可诱导的自杀基因胸苷激酶,该启动子靶向肺泡2型(AT2)细胞以响应更昔洛韦(GCV)消耗。我们将GCV诱导的正常内源性SPC表达的SPC-TK小鼠的损伤和修复与缺乏SPC表达的SPC-TK / SPC-KO小鼠进行了比较。与SPC-TK小鼠相反,用GCV治疗的SPC-TK / SPC-KO小鼠表现出更严重的炎症,导致超过90%的死亡率。 SPC-TK动物的死亡率只有8%。 SPC-TK / SPC-KO小鼠在支气管肺泡灌洗液(BAL)中的炎症细胞因子和粒细胞浸润高度升高。与促炎表型一致,免疫荧光显示磷酸化信号转导和转录激活3(pSTAT3)增加,表明在SPC-TK / SPC-KO小鼠的炎症和AT2细胞中Janus激酶(JAK)/ STAT激活增强。在SPC-TK / SPC-KO小鼠的BAL液中,细胞因子信号传导抑制剂3(一种降低pSTAT3信号传导的抗炎介质)的水平显着降低。 pSTAT3的过度活化和炎症可通过JAK1 / 2抑制剂AZD1480挽救。我们的发现显示SPC在通过JAK / STAT调节炎症中的新作用可能具有临床应用。

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