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Immune suppressive and pro-metastatic functions of myeloid-derived suppressive cells rely upon education from tumor-associated B cells

机译:骨髓来源的抑制细胞的免疫抑制和转移前功能依赖于肿瘤相关B细胞的教育

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摘要

Myeloid-derived suppressive cells (MDSC) have been reported to promote metastasis, but the loss of cancer-induced B cells/B regulatory cells (tBregs) can block metastasis despite MDSC expansion in cancer. Here, using multiple murine tumor models and human MDSC, we show that MDSC populations which expand in cancer have only partially primed regulatory function and limited pro-metastatic activity unless they are fully educated by tBregs. Cancer-induced tBregs directly activate the regulatory function of both the monocyte and granulocyte subpopulations of MDSC, relying in part on TgfβR1/TgfβR2 signaling. MDSC fully educated in this manner exhibit an increased production of ROS and NO and more efficiently suppress CD4+ and CD8+ T cells, thereby promoting tumor growth and metastasis. Thus, loss of tBregs or TgfβR deficiency in MDSC is sufficient to disable their suppressive function and to block metastasis. Overall, our data indicate that cancer-induced B cells/B regulatory cells are important regulators of the immune suppressive and pro-metastatic functions of MDSC.
机译:据报道,髓样抑制细胞(MDSC)促进转移,但是尽管MDSC在癌症中扩散,但癌症诱导的B细胞/ B调节细胞(tBregs)的丢失仍可阻止转移。在这里,使用多种鼠类肿瘤模型和人类MDSC,我们显示在癌症中扩展的MDSC群体只有部分启动的调节功能和有限的促转移活性,除非它们受到tBregs的充分教育。癌症诱导的tBregs直接激活MDSC单核细胞和粒细胞亚群的调节功能,部分依赖于TgfβR1/TgfβR2信号传导。以这种方式充分受过教育的MDSC可以增加ROS和NO的产生,并更有效地抑制CD4 + 和CD8 + T细胞,从而促进肿瘤的生长和转移。因此,MDSC中tBregs缺失或TgfβR缺失足以使它们的抑制功能丧失并阻止转移。总体而言,我们的数据表明,癌症诱导的B细胞/ B调节细胞是MDSC免疫抑制和转移前功能的重要调节剂。

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