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Epithelial ovarian cancer-secreted exosomal miR-222-3p induces polarization of tumor-associated macrophages

Oncotarget · 2016 · Vol. 7(28) · pp. 43076–43087
Ying XiangQuanfeng WuXiaoli WuQinyi ZhuXinjing WangLu JiangXin ChenXipeng Wang

Abstract

Cancer secreted exosomal miRNAs are emerging as mediators between tumor-stoma crosstalk. Here, we show epithelial ovarian cancer (EOC)-derived exosomes activated macrophages to a tumor-associated macrophage (TAM)-like phenotype with SOCS3/STAT3 pathway involvement, which could facilitate the progression of cancer. MiR-222-3p was enrichment in exosomes released from EOC cells and it could be transferred to macrophages. Overexpression of miR-222-3p in macrophages induced polarization of the M2 phenotype. Luciferase assay verified miR-222-3p targeted SOCS3 genes and expression of SOCS3 was decreased after transfection with a miR-222-3p mimic. Down-regulation of SOCS3 correlated with an increased expression of STAT3 activation. MiR-222-3p could be detected in the exosomes from serum and its levels were related to EOC. These observations propose tumor-derived exosomal miR-222-3p is an effective regulator in the polarization of tumor-promoting M2 macrophages and may be a biomarker of EOC.

Extracellular vesicles in diseaseReproductive System and PregnancyMicroRNA in disease regulationMicrovesiclesmicroRNAMacrophage polarizationCancer researchTransfectionOvarian cancerSTAT3SOCS3Tumor progressionExosome

MeSH terms

Suppressor of Cytokine Signaling 3 ProteinCarcinoma, Ovarian EpithelialAnimalsFemaleHumansMacrophage ActivationMacrophagesMice, NudeNeoplasms, Glandular and EpithelialOvarian NeoplasmsTransplantation, HeterologousBiomarkers, TumorDown-RegulationU937 CellsGene Expression Profiling

Funding

  • National Natural Science Foundation of China
Citations
341
FWCI
14.62
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99%
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