De Veirman Kim, Wang Jinheng, Xu Song, Leleu Xavier, Himpe Eddy, Maes Ken, De Bruyne Elke, Van Valckenborgh Els, Vanderkerken Karin, Menu Eline, Van Riet Ivan
Laboratory of Hematology and Immunology, Myeloma Center Brussels, Vrije Universiteit Brussel (VUB), Brussels, Belgium.
Laboratory of Hematology and Immunology, Myeloma Center Brussels, Vrije Universiteit Brussel (VUB), Brussels, Belgium; Department of Lung Cancer Surgery, Lung Cancer Institute, Tianjin Medical University General Hospital, Tianjin, China.
Cancer Lett. 2016 Jul 10;377(1):17-24. doi: 10.1016/j.canlet.2016.04.024. Epub 2016 Apr 19.
Mutual communication between multiple myeloma (MM) cells and mesenchymal stromal cells (MSC) plays a pivotal role in supporting MM progression. In MM, MSC exhibit a different genomic profile and dysregulated cytokine secretion compared to normal MSC, however the mechanisms involved in these changes are not fully understood. Here, we examined the miRNA changes in human MSC after culture with conditioned medium of MM cells and found 19 dysregulated miRNAs, including upregulated miR-146a. Moreover, exosomes derived from MM cells contained miR-146a and could be transferred into MSC. After overexpressing miR-146a in MSC, secretion of several cytokines and chemokines including CXCL1, IL6, IL-8, IP-10, MCP-1, and CCL-5 was elevated, resulting in the enhancement of MM cell viability and migration. DAPT, an inhibitor of the endogenous Notch pathway, was able to abrogate the miR-146a-induced increase of cytokines in MSC, suggesting the involvement of the Notch pathway. Taken together, our results demonstrate a positive feedback loop between MM cells and MSC: MM cells promote the increase of miR146a in MSC which leads to more cytokine secretion, which in turn favors MM cell growth and migration.
多发性骨髓瘤(MM)细胞与间充质基质细胞(MSC)之间的相互交流在支持MM进展中起关键作用。在MM中,与正常MSC相比,MSC表现出不同的基因组特征和细胞因子分泌失调,然而这些变化所涉及的机制尚未完全了解。在此,我们检测了人MSC在用MM细胞条件培养基培养后的miRNA变化,发现了19种失调的miRNA,包括上调的miR-146a。此外,源自MM细胞的外泌体含有miR-146a,并可转移至MSC。在MSC中过表达miR-146a后,包括CXCL1、IL6、IL-8、IP-10、MCP-1和CCL-5在内的几种细胞因子和趋化因子的分泌增加,导致MM细胞活力和迁移增强。DAPT是一种内源性Notch途径抑制剂,能够消除miR-146a诱导的MSC中细胞因子的增加,提示Notch途径参与其中。综上所述,我们的结果表明MM细胞与MSC之间存在正反馈回路:MM细胞促进MSC中miR146a的增加,这导致更多细胞因子分泌,进而有利于MM细胞生长和迁移。