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Acidosis-Induced TGF-β2 Production Promotes Lipid Droplet Formation in Dendritic Cells and Alters Their Potential to Support Anti-Mesothelioma T Cell Response

机译:酸中毒诱导的TGF-β2产生促进树突细胞中的脂质液滴形成,并改变其潜力以支持抗间皮瘤T细胞应答

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摘要

For poorly immunogenic tumors such as mesothelioma there is an imperious need to understand why antigen-presenting cells such as dendritic cells (DCs) are not prone to supporting the anticancer T cell response. The tumor microenvironment (TME) is thought to be a major contributor to this DC dysfunction. We have reported that the acidic TME component promotes lipid droplet (LD) formation together with epithelial-to-mesenchymal transition in cancer cells through autocrine transforming growth factor-β2 (TGF-β2) signaling. Since TGF-β is also a master regulator of immune tolerance, we have here examined whether acidosis can impede immunostimulatory DC activity. We have found that exposure of mesothelioma cells to acidosis promotes TGF-β2 secretion, which in turn leads to LD accumulation and profound metabolic rewiring in DCs. We have further documented how DCs exposed to the mesothelioma acidic milieu make the anticancer vaccine less efficient in vivo, with a reduced extent of both DC migratory potential and T cell activation. Interestingly, inhibition of TGF-β2 signaling and diacylglycerol O-acyltransferase (DGAT), the last enzyme involved in triglyceride synthesis, led to a significant restoration of DC activity and anticancer immune response. In conclusion, our study has identified that acidic mesothelioma milieu drives DC dysfunction and altered T cell response through pharmacologically reversible TGF-β2-dependent mechanisms.
机译:对于免疫原性差的肿瘤如间皮瘤存在迫切的需要了解为什么抗原呈递细胞如树突状细胞(DC)是不易于支撑抗癌T细胞应答。肿瘤微环境(TME)被认为是一个主要贡献者这个DC功能障碍。我们已经报道了酸性TME组分促进脂滴(LD)形成与通过自分泌转化生长因子β2(TGF-β2)的信令在癌细胞中的上皮 - 间充质转换在一起。由于TGF-β也是免疫耐受的主要调控,我们在这里检查酸中毒是否能够阻碍免疫DC活动。我们发现,间皮瘤细胞暴露于酸中毒促进TGF-β2的分泌,进而导致LD积累和深刻的代谢重新布线DC中。我们已经进一步证明暴露于间皮瘤酸性环境的DCs如何使抗癌疫苗的体内效率较低,与两个DC迁徙电位和T细胞活化的减少的程度。有趣的是,TGF-β2信令和二酰基甘油O-酰基转移酶的抑制(DGAT),参与甘油三酯合成的最后一个酶,导致DC活性的显著恢复和抗癌免疫应答。总之,我们的研究已确定酸性间皮瘤环境驱动DC功能障碍,并通过药理可逆的TGF-β2依赖机制改变的T细胞反应。

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