Department of Rheumatology and Immunology, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Nanjing University, Nanjing, China.
Department of Rheumatology and Immunology, Nanjing Drum Tower Hospital Clinical College of Nanjing Medical University, Nanjing, China.
Immunology. 2023 Oct;170(2):286-300. doi: 10.1111/imm.13668. Epub 2023 Jun 19.
Although various studies have been performed on the function of polymorphonuclear myeloid-derived suppressor cells (PMN-MDSCs) in RA, the results were conflicting. Here we were trying to clarify the role of PMN-MDSCs in the pathogenesis of RA and its specific mechanisms. We detected the frequencies and counts of PMN-MDSCs, TNF-α B cells and Ki67 B cells in spleen and inflamed joints of collagen-induced arthritis (CIA) mice using flow cytometry. The pathological role of PMN-MDSCs was examined by anti-Ly6G neutralizing antibodies against PMN-MDSCs or adoptive transfer of PMN-MDSCs. And the modulation of PMN-MDSCs on B cells was conducted by coculture assays, RNA-Seq, RT-qPCR, and so on. The mechanism of BAFF regulating B cells was verified through western blot and flow cytometry. PMN-MDSCs accumulated in the spleen and joints of CIA mice. PMN-MDSCs depletion could alleviate the arthritis severity, which was accompanied by decreased TNF-α secretion and proliferation of B cells. And its adoptive transfer also facilitated disease progress. Furthermore, PMN-MDSCs from CIA mice had higher expression level of BAFF, which regulated TNF-α expression, proliferation and apoptosis of B cells in vitro. What's more, BAFF promoted phosphorylation of BTK/NF-κB signalling pathway. And Ibrutinib (BTK inhibitor) could reverse the effect of BAFF on TNF-α expression of B cells. Our study suggested that PMN-MDSCs enhanced disease severity of CIA and manipulated TNF-α expression, proliferation and apoptosis of B cells via BAFF, furthermore, BAFF promoted TNF-α expression through BTK/NF-κB signalling pathway, which demonstrated a novel pathogenesis of PMN-MDSCs in CIA.
尽管已经有许多研究探讨了多形核髓系来源抑制细胞(PMN-MDSCs)在类风湿关节炎(RA)中的功能,但结果存在争议。在这里,我们试图阐明 PMN-MDSC 在 RA 发病机制中的作用及其具体机制。我们使用流式细胞术检测胶原诱导关节炎(CIA)小鼠脾脏和炎症关节中 PMN-MDSC、TNF-α B 细胞和 Ki67 B 细胞的频率和计数。通过针对 PMN-MDSC 的抗 Ly6G 中和抗体或 PMN-MDSC 的过继转移来检查 PMN-MDSC 的病理作用。通过共培养实验、RNA-Seq、RT-qPCR 等方法研究 PMN-MDSC 对 B 细胞的调节作用。通过 Western blot 和流式细胞术验证 BAFF 调节 B 细胞的机制。PMN-MDSC 在 CIA 小鼠的脾脏和关节中积累。PMN-MDSC 耗竭可减轻关节炎严重程度,伴随 TNF-α 分泌和 B 细胞增殖减少。而过继转移也促进了疾病的进展。此外,来自 CIA 小鼠的 PMN-MDSC 具有更高水平的 BAFF,其可体外调节 B 细胞中 TNF-α 的表达、增殖和凋亡。更重要的是,BAFF 促进了 BTK/NF-κB 信号通路的磷酸化。伊布替尼(BTK 抑制剂)可逆转 BAFF 对 B 细胞 TNF-α 表达的作用。我们的研究表明,PMN-MDSC 通过 BAFF 增强 CIA 的疾病严重程度,并调节 TNF-α 的表达、增殖和凋亡,此外,BAFF 通过 BTK/NF-κB 信号通路促进 TNF-α 的表达,这表明了 PMN-MDSC 在 CIA 中的一种新的发病机制。