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miR-135a 通过靶向 NF-B/炎症信号通路缓解二氧化硅诱导的肺纤维化。

miR-135a Alleviates Silica-Induced Pulmonary Fibrosis by Targeting NF-B/Inflammatory Signaling Pathway.

机构信息

Department of Pathology, Xiangya Hospital, Central South University, Changsha, Hunan 410008, China.

Department of Pathology, School of Basic Medicine, Central South University, Changsha, Hunan 410013, China.

出版信息

Mediators Inflamm. 2020 Jun 17;2020:1231243. doi: 10.1155/2020/1231243. eCollection 2020.

Abstract

Silica exposure triggers inflammatory response and pulmonary fibrosis that is a severe occupational or environmental lung disease with no effective therapies. The complicated biological and molecular mechanisms underlying silica-induced lung damages have not yet been fully understood. miR-135a inhibits inflammation, apoptosis, and cancer cell proliferation. But the roles of miRNA135a involved in the silica-induced lung damages remain largely unexplored. We investigated the roles and mechanisms of miR-135a underlying silica-induced pulmonary fibrosis. The present study showed silica exposure caused the decrease in miR-135a level but the increase in inflammatory mediators. Transduction of lentivirus expressing miR-135a reduced the level of inflammatory mediators in lung tissues from silica-treated mice and improved pulmonary fibrosis which was consistent with the downregulated -SMA but enhanced E-cadherin. Moreover, miR-135a overexpression inhibited p-p65 level in lung tissues. Overexpression of miR-135a inhibitor strengthened TLR4 protein level and NF-B activation in BEAS-2B cells. Injection of PDTC, an inhibitor of NF-B, further reinforced miR-135a-mediated amelioration of inflammation and pulmonary fibrosis induced by silica. The collective data indicate miR-135a restrains NF-B activation probably through targeting TLR4 to alleviate silica-induced inflammatory response and pulmonary fibrosis.

摘要

硅暴露引发炎症反应和肺纤维化,这是一种严重的职业或环境性肺部疾病,目前尚无有效的治疗方法。硅引发肺部损伤的复杂生物学和分子机制尚未完全阐明。miR-135a 可抑制炎症、细胞凋亡和癌细胞增殖。但是 miRNA135a 在硅诱导的肺损伤中的作用仍在很大程度上尚未被探索。我们研究了 miR-135a 在硅诱导的肺纤维化中的作用和机制。本研究表明,硅暴露导致 miR-135a 水平降低,但炎症介质增加。表达 miR-135a 的慢病毒转导减少了硅处理小鼠肺组织中炎症介质的水平,并改善了肺纤维化,这与 -SMA 的下调和 E-钙粘蛋白的增强一致。此外,miR-135a 的过表达抑制了肺组织中 p-p65 的水平。miR-135a 抑制剂的过表达增强了 BEAS-2B 细胞中 TLR4 蛋白水平和 NF-B 的激活。NF-B 抑制剂 PDTC 的注射进一步加强了 miR-135a 介导的硅诱导的炎症和肺纤维化的改善。这些数据表明,miR-135a 通过靶向 TLR4 抑制 NF-B 激活,从而减轻硅诱导的炎症反应和肺纤维化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a6c/7317310/ca93dc566124/MI2020-1231243.001.jpg

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