Haribhai Dipica, Ziegelbauer Jennifer, Jia Shuang, Upchurch Kyle, Yan Ke, Schmitt Erica G, Salzman Nita H, Simpson Pippa, Hessner Martin J, Chatila Talal A, Williams Calvin B
Section of Rheumatology, Department of Pediatrics, Medical College of Wisconsin, Milwaukee, WI 53226;
Section of Endocrinology, Department of Pediatrics, Medical College of Wisconsin, Milwaukee, WI 53226;
J Immunol. 2016 Apr 15;196(8):3305-17. doi: 10.4049/jimmunol.1501956. Epub 2016 Feb 29.
Induced regulatory T (iTreg) and Th17 cells promote mucosal homeostasis. We used a T cell transfer model of colitis to compare the capacity of iTreg and Th17 cells to develop in situ following the transfer of naive CD4(+)CD45RB(hi)T cells intoRag1(-/-)C57BL/6 or BALB/c mice, the prototypical Th1/M1- and Th2/M2-prone strains. We found that the frequency and number of Foxp3(+)iTreg cells and Th17 cells were significantly reduced in C57BL/6 mice compared with the BALB/c strain. C57BL/6 mice with colitis were also resistant to natural Treg cell immunotherapy. Pretreatment of C57BL/6Rag1(-/-)mice with IL-4 plus IL-13, or with M2a but not M1 macrophages, dramatically increased the generation of iTreg and Th17 cells. Importantly, M2a transfers, either as a pretreatment or in mice with established colitis, allowed successful immunotherapy with natural Treg cells. M2a macrophages also reduced the generation of pathogenic iTreg cells that lost Foxp3 expression, suggesting that they stabilize the expression of Foxp3. Thus, polarized M2a macrophages drive a directionally concordant expansion of the iTreg-Th17 cell axis and can be exploited as a therapeutic adjuvant in cell-transfer immunotherapy to re-establish mucosal tolerance.
诱导性调节性T细胞(iTreg)和Th17细胞促进黏膜稳态。我们使用结肠炎的T细胞转移模型,比较在将初始CD4(+)CD45RB(hi)T细胞转移到Rag1(-/-)C57BL/6或BALB/c小鼠(典型的Th1/M1倾向型和Th2/M2倾向型品系)后,iTreg和Th17细胞原位发育的能力。我们发现,与BALB/c品系相比,C57BL/6小鼠中Foxp3(+)iTreg细胞和Th17细胞的频率和数量显著降低。患有结肠炎的C57BL/6小鼠对天然调节性T细胞免疫疗法也具有抗性。用IL-4加IL-13或M2a而非M1巨噬细胞预处理C57BL/6Rag1(-/-)小鼠,可显著增加iTreg和Th17细胞的生成。重要的是,M2a转移,无论是作为预处理还是在已患结肠炎的小鼠中,都能使天然调节性T细胞成功进行免疫治疗。M2a巨噬细胞还减少了失去Foxp3表达的致病性iTreg细胞的生成,表明它们稳定了Foxp3的表达。因此,极化的M2a巨噬细胞驱动iTreg-Th17细胞轴的定向协调扩张,可作为细胞转移免疫治疗中的治疗佐剂来重建黏膜耐受性。