Cooper Matthew L, Choi Jaebok, Karpova Darja, Vij Kiran, Ritchey Julie, Schroeder Mark A, DiPersio John F
Division of Oncology, Department of Medicine, Washington University School of Medicine, St. Louis, MO 63110.
Division of Oncology, Department of Medicine, Washington University School of Medicine, St. Louis, MO 63110
J Immunol. 2017 May 1;198(9):3746-3754. doi: 10.4049/jimmunol.1502399. Epub 2017 Mar 22.
Azacitidine (AzaC) mitigates graft-versus-host disease (GvHD) in both murine preclinical transplant models and in human clinical trials while maintaining a robust graft-versus-leukemia effect. Previous studies have failed to investigate the role of natural regulatory T cells (nTregs) on the mitigation of GvHD by AzaC, instead focusing on the generation of suppressive Tregs (CD4CD25FOXP3) through the in vivo conversion of alloreactive donor T effectors (Teffs; CD4CD25FOXP3) and the direct antiproliferative effects of AzaC on allogeneic T cells. Using B6. mice in which Tregs can be specifically ablated through administration of diphtheria toxin, we demonstrate that natural Tregs are required in the donor graft for AzaC to optimally protect against GvHD and that nTregs, unlike Teffs (CD3FOXP3), are resistant to the antiproliferative effects of AzaC. Gene expression analysis identified the potent cell cycle inhibitor, p21, was significantly upregulated in Teffs but not nTregs after treatment with AzaC. Furthermore, we demonstrate that Teffs deficient in p21 are less sensitive to the antiproliferative effects of AzaC. These results demonstrate that nTregs are essential for AzaC to fully protect against GvHD and have important clinical implications for future clinical trials testing AzaC as a novel method of GvHD prophylaxis in man.
阿扎胞苷(AzaC)在小鼠临床前移植模型和人类临床试验中均可减轻移植物抗宿主病(GvHD),同时维持强大的移植物抗白血病效应。以往的研究未能探究天然调节性T细胞(nTregs)在AzaC减轻GvHD中的作用,而是侧重于通过同种异体反应性供体T效应细胞(Teffs;CD4CD25FOXP3)的体内转化产生抑制性Tregs(CD4CD25FOXP3)以及AzaC对同种异体T细胞的直接抗增殖作用。利用可通过给予白喉毒素特异性清除Tregs的B6小鼠,我们证明供体移植物中需要天然Tregs才能使AzaC最佳地预防GvHD,并且与Teffs(CD3FOXP3)不同,nTregs对AzaC 的抗增殖作用具有抗性。基因表达分析表明,强效细胞周期抑制剂p21在用AzaC处理后的Teffs中显著上调,但在nTregs中未上调。此外,我们证明缺乏p21的Teffs对AzaC的抗增殖作用不太敏感。这些结果表明,nTregs对于AzaC充分预防GvHD至关重要,并且对于未来将AzaC作为人类GvHD预防新方法的临床试验具有重要的临床意义。