Abadja F, Videcoq C, Alamartine E, Berthoux F, Mariat C
Laboratoire de Néphrologie, EA3065, Université Jean Monnet, Saint Etienne, France.
Transplant Proc. 2009 Oct;41(8):3367-70. doi: 10.1016/j.transproceed.2009.08.031.
Beyond the usual TH1/TH2 polarization, a reciprocal pathway between FoxP3+ regulatory T cells (Tregs) and interleukin (IL)-17-secreting effector T cells (TH-17) has recently been identified. We have investigated the effects of two immunosuppressive drugs, cyclosporine (CsA) and mycophenolic acid (MPA) on the development of Treg/TH-17 cell responses.
We compared the influence of CsA and MPA on the transcription levels of FOXP3 (Treg marker) and IL17 (TH-17 marker) in activated human peripheral blood mononuclear cells (PBMC).
After 48 hours of activation, IL17 transcription was rapidly induced, remaining stable over 96 hours, whereas only a transient increase in FOXP3 was noted, suggesting that the Treg/TH-17 cell balance was tipped toward TH-17 during PBMC activation. The addition of either CsA or MPA did not affect the level of transcription of FOXP3. MPA but not CsA was found to significantly inhibit IL17 expression by activated PBMC. This effect of MPA seemed to result from its capacity to hamper (1) the production of IL1beta by monocytes and (2) the expression of TIM-1 by CD4+ T cells, two key signals involved in human TH-17 differentiation.
Through a preferential inhibition of IL17, MPA might favorably influence the Treg/TH- 17 balance. Our results suggest that the immunosuppressive drugs used in the clinic may differentially influence lymphocyte polarization, including the newly identified TH-17 pathway.
除了常见的TH1/TH2极化外,最近发现了FoxP3 +调节性T细胞(Tregs)和分泌白细胞介素(IL)-17的效应T细胞(TH-17)之间的相互作用途径。我们研究了两种免疫抑制药物环孢素(CsA)和霉酚酸(MPA)对Treg/TH-17细胞反应发展的影响。
我们比较了CsA和MPA对活化的人外周血单核细胞(PBMC)中FOXP3(Treg标志物)和IL17(TH-17标志物)转录水平的影响。
活化48小时后,IL17转录迅速诱导,并在96小时内保持稳定,而FOXP3仅出现短暂增加,这表明在PBMC活化过程中Treg/TH-17细胞平衡倾向于TH-17。添加CsA或MPA均不影响FOXP3的转录水平。发现MPA而非CsA可显著抑制活化的PBMC表达IL17。MPA的这种作用似乎源于其抑制(1)单核细胞产生IL1β和(2)CD4 + T细胞表达TIM-1的能力,这两个是参与人类TH-17分化的关键信号。
通过优先抑制IL17,MPA可能有利地影响Treg/TH-17平衡。我们的结果表明,临床使用的免疫抑制药物可能对淋巴细胞极化产生不同影响,包括新发现的TH-17途径。