Mmu-let-7a-5p inhibits macrophage apoptosis by targeting CASP3 to increase bacterial load and facilities mycobacterium survival

Author:

Zhan XuehuaORCID,Yuan Wenqi,Ma Rong,Zhou Yueyong,Xu Guangxian,Ge ZhaohuiORCID

Abstract

We have been trying to find a miRNA that can specifically regulate the function of mycobacterial host cells to achieve the purpose of eliminating Mycobacterium tuberculosis. The purpose of this study is to investigate the regulation of mmu-let-7a-5p on macrophages apoptosis and its effect on intracellular BCG clearance. After a series of in vitro experiments, we found that mmu-let-7a-5p could negatively regulate the apoptosis of macrophages by targeting Caspase-3. The extrinsic apoptosis signal axis TNFR1/FADD/Caspase-8/Caspase-3 was inhibited after BCG infection. Up-regulated the expression level of mmu-let-7a-5p increase the cell proliferation viability and inhibit apoptosis rate of macrophages, but down-regulated its level could apparently reduce the bacterial load of intracellular Mycobacteria and accelerate the clearance of residual Mycobacteria effectively. Mmu-let-7a-5p has great potential to be utilized as an optimal candidate exosomal loaded miRNA for anti-tuberculosis immunotherapy in our subsequent research.

Funder

School Level Project of Ningxia Medical University

National Natural Science Foundation of China

Publisher

Public Library of Science (PLoS)

Reference51 articles.

1. Terminology of bone and joint infection;M Rupp;Bone Joint Res,2021

2. Bone and joint tuberculosis;C Pigrau-Serrallach;European spine journal: official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society.,2013

3. Measurement of the concentration of three antituberculosis drugs in the focus of spinal tuberculosis;Z Ge;European spine journal: official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society.,2008

4. Development and In Vitro Release of Isoniazid and Rifampicin-Loaded Bovine Serum Albumin Nanoparticles;Z Ge;Med Sci Monit,2018

5. The biology, function, and biomedical applications of exosomes;R Kalluri;Science,2020

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