Lipopolysaccharide-induced bacterial infection model: microRNA-370-3p participates in the anti-infection response by targeting the macrophage TLR4-NLRP3 caspase-1 cellular pyroptosis pathway

Author:

Liu Wen1,Chen Haiyun1,Xia Fengli1,Lu Lu1,Reyimu Abdusemer1ORCID,Pawuziye Paerhati1,Li Yadong2,Xu Aimin1,Zou Xiaoguang2

Affiliation:

1. Department of Laboratory Medicine, The First People’s Hospital of Kashi, Kashi, China

2. The First People’s Hospital of Kashi, Kashi, China

Abstract

Objective To explore the effect of miR-370-3p on LPS triggering, in particular its involvement in disease progression by targeting the TLR4-NLRP3-caspase-1 cellular pyroptosis pathway in macrophages. Methods Human macrophage RAW264.7 was divided into 6 groups: control, LPS, LPS + inhibitor-NC, LPS + miR-370-3p inhibitor, LPS + mimics-NC and LPS + miR-370-3p mimics. RT-qPCR was used to detect the expression level of miR-370-3p and analyzed comparatively. CCK-8 and flow cytometry assays were used to detect cell viability and apoptosis. ELISA assay was used to detect the levels of IL-1β and TNF-α in the supernatant of the cells. The WB assay was used to detect TLR4, NLRP3, Caspase-1 and GSDMD levels. Results After LPS induction, macrophage miR-370-3p levels decreased, cell viability decreased, and apoptosis increased. At the same time, the levels of TLR4, NLRP3, Caspase-1 and GSDMD increased in the cells, and the levels of IL-1β and TNF-α increased in the cell supernatant. Compared with the LPS group, the significantly higher expression level of miR-370-3p in the cells of the LPS + miR-370-3p mimics group was accompanied by significantly higher cell viability, significantly lower apoptosis rate, significantly lower levels of TLR4, NLRP3, Caspase-1, and GSDMD in the cells, and significantly lower levels of IL-1β and TNF-α in the cell supernatant. Conclusion MiR-370-3p may be involved in anti-infective immune responses by targeting and inhibiting the macrophage TLR4-NLRP3-caspase-1 cellular pyroptosis pathway.

Funder

Research and Development of Key Technologies for Early Diagnosis, Precision Treatment, Prevention and Control of Tuberculosis in Kashgar Region

Study on the Mechanism of Immune Escape Caused by Epitope Variation of Mycobacterium Tuberculosis espA, PPE57 and modD

KaShi Sci-Tech Plan Project

Natural Science Foundation of Xinjiang Uygur Autonomous Region

Publisher

SAGE Publications

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