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Cecal Ligation and Puncture-induced Sepsis as a Model To Study Autophagy in Mice
Published on: February 9, 2014
MiR-23b-3p ameliorates sepsis-induced acute lung injury by inhibiting SMAD3-mediated endothelial-mesenchymal
Luofeng Jiang1,2, Wei Zhang1,2, Heng He1,2
1Department of Burn Surgery, the First Affiliated Hospital of Naval Medical University, 168th Changhai Road, Yangpu District, Shanghai 200433, China.
Background:
Sepsis-associated acute lung injury (ALI) is driven by endothelial barrier dysfunction and endothelial-mesenchymal transition (EndoMT), mediated by TGF-β1/SMAD3 signaling. Despite the therapeutic potential of SMAD3, current inhibitors face limitations. As endogenous small molecules that are closely related to physiological regulatory processes, microRNAs (miRNAs) have more potential research value for regulating SMAD3. Therefore, this study aimed to investigate the protective effect and molecular mechanism of a key miRNA targeting SMAD3 in sepsis-ALI.
Methods:
Screening multiple databases revealed that miR-23b-3p was the sole miRNA targeting SMAD3. Lipopolysaccharide (LPS)-stimulated human umbilical vein endothelial cells (HUVECs) and cecal ligation/puncture (CLP) mice were used to model sepsis. Lentivirus was used to construct stable strains. The functional performance and mechanism were verified by key techniques, including dual-luciferase assays, rescue experiments, reverse transcription-quantitative polymerase chain reaction (qPCR)/Western blotting, monocyte adhesion/permeability assays, and histopathology.
Results:
In LPS-stimulated HUVECs, miR-23b-3p downregulation correlated with TGF-β1/SMAD3 activation, EndoMT progression, and barrier disruption. miR-23b-3p overexpression reversed these effects by restoring the expression of junctional proteins and suppressing the expression of mesenchymal markers. Chromatin isolation by RNA purification-qPCR, RNA pull-down, and dual-luciferase assays confirmed the direct miR-23b-3p-SMAD3 3'UTR interaction. Rescue experiments demonstrated that miR-23b-3p counteracts TGF-β1/SMAD3 hyperactivation. In CLP mice, intratracheal agomiR-23b-3p attenuated lung injury, normalized alveolar architecture, and reduced vascular leakage by suppressing endothelial Smad3 upregulation.
Conclusion:
miR-23b-3p is a SMAD3-targeting regulator that inhibits EndoMT and repairs endothelial barrier integrity. Mechanistically, miR-23b-3p preserves endothelial homeostasis via SMAD3-dependent EndoMT inhibition. This study provides mechanistic insights and a miRNA-based therapeutic strategy for sepsis-induced ALI.
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