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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The role of complement component 3 (C3) in differentiation of myeloid-derived suppressor cells.
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The role of complement component 3 (C3) in differentiation of myeloid-derived suppressor cells.

机译:补体成分3(C3)在髓样抑制细胞分化中的作用。

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Myeloid-derived suppressor cells (MDSCs) play an important role in the regulation of the immune response. MDSC expansion occurs in many circumstances, including cancer, inflammation, stresses, and transplant tolerance. Liver transplants in mice are spontaneously accepted, but hepatocyte transplants are acutely rejected, suggesting the immunoregulatory activities of liver nonparenchymal cells. We have reported that hepatic stellate cells (HpSCs), the stromal cells in the liver, are immensely immunosuppressive and can effectively protect islet transplants via induction of MDSCs. The present study shows that the addition of HpSCs into dendritic cell (DC) culture promoted development of MDSCs, instead of DCs, which was highly dependent on complement component 3 (C3) from HpSCs. The C3 HpSCs lost their ability to induce MDSCs and, consequently, failed to protect the cotransplanted islet allografts. HpSCs produced complement activation factor B and factor D which then enhanced C3 cleavage to activation products iC3b and C3d. Addition of exogenous iC3b, but not C3d, into the DC culture led to the differentiation of MDSCs with potent immune-inhibitory function. These findings provide novel mechanistic insights into the differentiation of myeloid cells mediated by local tissue cells, and may assist in the development of MDSC-based therapy in clinical settings.
机译:骨髓来源的抑制细胞(MDSC)在调节免疫反应中起重要作用。 MDSC扩张发生在许多情况下,包括癌症,炎症,压力和移植耐受性。自发地接受小鼠的肝移植,但急性排斥肝细胞移植,提示肝非实质细胞的免疫调节活性。我们已经报告说,肝星状细胞(HpSCs)是肝脏中的基质细胞,具有极大的免疫抑制作用,可以通过诱导MDSCs有效保护胰岛移植。本研究表明,向树突状细胞(DC)培养物中添加HpSCs促进了MDSCs的发展,而不是DCs的发展,而DCs高度依赖于HpSCs的补体成分3(C3)。 C3 HpSCs失去了诱导MDSCs的能力,因此,无法保护共移植的胰岛同种异体移植物。 HpSCs产生补体激活因子B和因子D,然后增强C3对激活产物iC3b和C3d的裂解。向DC培养物中添加外源iC3b(而非C3d)导致具有有效免疫抑制功能的MDSC分化。这些发现为由局部组织细胞介导的髓样细胞的分化提供了新颖的机制见解,并可能有助于在临床环境中开发基于MDSC的疗法。

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