Publication | Open Access
<scp>TGF</scp>‐β3‐induced miR‐494 inhibits macrophage polarization via suppressing <scp>PGE</scp>2 secretion in mesenchymal stem cells
42
Citations
41
References
2016
Year
ImmunologyStem Cell BiologyRegenerative MedicineStem CellsCell SignalingMolecular SignalingMesenchymal Stem CellsMacrophage PolarizationMicrorna DetectionEpigenetic RegulationAbnormal Macrophage PolarizationMesenchymal Stem CellCell BiologyDevelopmental BiologyImmune Cell DevelopmentStem Cell ResearchSmall RnaMedicineDmsc-regulated Macrophage Polarization
Abnormal macrophage polarization at the maternal-fetal interface may contribute to the development of Preeclampsia (PE). The reason why macrophage polarization changed in PE is still unclear. Decidual mesenchymal stem cells (dMSCs) could regulate macrophage polarization. However, miRNA in dMSCs of PE were maladjusted. Therefore, we speculated that miRNA may affect dMSC-regulated macrophage polarization. In this study, we found that miR-494-overexpressed dMSCs inhibit M2 macrophage polarization and this inhibitory effect is mediated by miR-494-reduced PGE2 secretion. Furthermore, we proved that miR-494 is induced by TGF-β3. In summary, our findings suggest that the high expression of TGF-β3 in PE decidua stimulates miR-494 in dMSCs and attenuates the regulation of MSC switching the macrophage toward M2 type, contributing to an immune imbalance at maternal-fetal interface.
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