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首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >All-trans retinoic acid and rapamycin synergize with transforming growth factor-β1 to induce regulatory T cells but confer different migratory capacities
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All-trans retinoic acid and rapamycin synergize with transforming growth factor-β1 to induce regulatory T cells but confer different migratory capacities

机译:全反式维甲酸和雷帕霉素与转化生长因子-β1协同诱导调节性T细胞,但赋予不同的迁移能力

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摘要

Tregs play important roles in maintaining immune homeostasis, and thus, therapies based on Treg are promising candidates for the treatment for a variety of immune-mediated disorders. These therapies, however, face the significant challenge of obtaining adequate numbers of Tregs from peripheral blood that maintains suppressive function following extensive expansion. Inducing Tregs from non-Tregs offers a viable alternative. Different methods to induce Tregs have been proposed and involve mainly treating cells with TGF-β-iTreg. However, use of TGFβalone is not sufficient to induce stable Tregs. ATRA or rapa has been shown to synergize with TGF-βto induce stable Tregs. Whereas TGF-βplus RA-iTregs have been well-de-scribed in the literature, the phenotype, function, and migratory characteristics of TGF-βplus rapa-iTreg have yet to be elucidated. Herein, we describe the phenotype and function of mouse rapa-iTreg and reveal that these cells differ in their in vivo homing capacity when compared with mouse RA-iTreg and mouse TGF-βiTreg. This difference in migratory activity significantly affects the therapeutic capacity of each subset in a mouse model of colitis. We also describe the characteristics of iTreg generated in the presence of TGF-β, RA, and rapa.
机译:Treg在维持免疫稳态方面起着重要作用,因此,基于Treg的疗法有望成为治疗多种免疫介导疾病的候选药物。但是,这些疗法面临着巨大的挑战,即要从外周血中获得足够数量的Treg,并在广泛扩展后保持抑制功能。从非Tregs诱导Tregs提供了一种可行的选择。已经提出了多种诱导Treg的方法,这些方法主要涉及用TGF-β-iTreg处理细胞。然而,单独使用TGFβ不足以诱导稳定的Treg。已显示ATRA或rapa与TGF-β协同作用以诱导稳定的Treg。尽管在文献中已对TGF-β加RA-iTreg进行了充分描述,但尚未阐明TGF-β加rapa-iTreg的表型,功能和迁移特性。在本文中,我们描述了小鼠rapa-iTreg的表型和功能,并揭示了与小鼠RA-iTreg和小鼠TGF-βiTreg相比,这些细胞的体内归巢能力有所不同。迁徙活动的这种差异会显着影响结肠炎小鼠模型中每个子集的治疗能力。我们还描述了在TGF-β,RA和rapa的存在下产生的iTreg的特征。

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