TNF-α Stimulated Exosome Derived from Fibroblast-like Synoviocytes Isolated from Rheumatoid Arthritis Patients Promotes HUVEC Migration, Invasion and Angiogenesis by Targeting the MiR-200a-3p/KLF6/VEGFA Axis
Overview
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The pathogenesis of rheumatoid arthritis (RA) is heavily impacted by the inflammation and activation of fibroblast-like synoviocytes (FLS). The objective of this investigation is to clarify the involvement of exosomes derived from FLS stimulated by tumour necrosis factor α (TNF-α) in angiogenesis and the underlying mechanisms. FLS cells were obtained from synovial fluid of RA patients and exosomes were obtained from FLS cell supernatant with TNF-α stimulation by ultracentrifugation. Exosomes were subsequently analysed using transmission electron microscopy, nanoparticle tracking analysis, and western blotting. The functional effects of exosomes with TNF-α stimulation on human umbilical vein endothelial cells (HUVEC) migration, invasion, and angiogenesis was evaluated using wound scratch healing test, transwell invasion assay, and tube formation assay. DNA nanoball-seq (DNBSEQ) sequencing platform was utilised to analysis different expression miRNA from exosomes, miRNA and mRNA from HUVEC. The expression level of miR-200a-3p was determined through quantitative real-time polymerase chain reaction (qRT-PCR). The quantification of KLF6 and VEGFA expression levels were performed by qRT-PCR and western blot analysis. The validation of the association between miR-200a-3p and KLF6 was established through a fluorescence enzyme reporting assay. In comparison to exosome induced by PBS, exosome induced by TNF-α exhibited a substantial exacerbation of invasion, migration, and angiogenesis in HUVEC. 4 miRNAs in exosomes and HUVEC cells, namely miR-1246, miR-200a-3p, miR-30a-3p, and miR-99b-3p was obtained. MiR-200a-3p maintained high consistency with the sequencing results. We obtained 5 gene symbols, and KLF6 was chose for further investigation. The expression of miR-200a-3p in exosomes induced by TNF-α and in HUVEC treated with these exosomes demonstrated a significantly increase. Additionally, HUVEC cells displayed a notable decrease in KLF6 expression and a significant elevation in VEGFA expression. This was further confirmed by the fluorescence enzyme report assay, which provided evidence of the direct targeting of KLF6 by miR-200a-3p. Exosomes induced by TNF-α have the ability to enhance the migration, invasion, and angiogenesis of HUVEC cells the miR-200a-3p/KLF6/VEGFA axis.
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Guo S, Wang Z, Xie D, Cai Y, Wang Y, Wang X Pharmaceuticals (Basel). 2024; 17(11).
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Liu Y, Wang J, Fang L, Xia Q J Inflamm Res. 2024; 17:5475-5494.
PMID: 39165320 PMC: 11334919. DOI: 10.2147/JIR.S469032.
Chasov V, Ganeeva I, Zmievskaya E, Davletshin D, Gilyazova E, Valiullina A Cells. 2024; 13(15.
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Ji Y, Mi L, Zhao M, He X, Hu Y, Gao Y Int J Nanomedicine. 2024; 19:3943-3956.
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