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Induction of M2-like macrophages in recipient NOD-scid mice by allogeneic donor CD4+CD25+ regulatory T cells

机译:同种异体供体CD4 + CD25 +调节性T细胞诱导受体NOD-scid小鼠M2样巨噬细胞

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摘要

CD4+CD25+ regulatory T cells (Tregs) play an important role in maintaining host immune tolerance via regulation of the phenotype and function of the innate and adaptive immune cells. Whether allogeneic CD4+CD25+ Tregs can regulate recipient mouse macrophages is unknown. The effect of allogeneic donor CD4+CD25+ Tregs on recipient mouse resident F4/80+macrophages was investigated using a mouse model in which allogeneic donor CD4+CD25+ Tregs were adoptively transferred into the peritoneal cavity of host NOD-scid mice. The phenotype and function of the recipient macrophages were then assayed. The peritoneal F4/80+ macrophages in the recipient mice that received the allogeneic CD4+CD25+ Tregs expressed significantly higher levels of CD23 and programmed cell death-ligand 1(PD-L1) and lower levels of CD80, CD86, CD40 and MHC II molecules compared to the mice that received either allogeneic CD4+CD25 T cells (Teffs) or no cells. The resident F4/80+ macrophages of the recipient mice injected with the allogeneic donor CD4+CD25+ Tregs displayed significantly increased phagocytosis of chicken red blood cells (cRBCs) and arginase activity together with increased IL-10 production, whereas these macrophages also showed decreased immunogenicity and nitric oxide (NO) production. Blocking arginase partially but significantly reversed the effects of CD4+CD25+ Tregs with regard to the induction of the M2 macrophages in vivo. Therefore, the allogeneic donor CD4+CD25+ Tregs can induce the M2 macrophages in recipient mice at least in part via an arginase pathway. We have provided in vivo evidence to support the unknown pathways by which allogeneic donor CD4+CD25+ Tregs regulate innate immunity in recipient mice by promoting the differentiation of M2 macrophages.
机译:CD4 + CD25 + 调节性T细胞(Tregs)通过调节先天和适应性免疫细胞的表型和功能在维持宿主免疫耐受中起着重要作用。异体CD4 + CD25 + Treg是否可以调节受体小鼠巨噬细胞尚不清楚。使用其中同种供体的小鼠模型研究了同种供体CD4 + CD25 + Treg对受体小鼠F4 / 80 + 巨噬细胞的影响将CD4 + CD25 + Tregs过继转移到宿主NOD-scid小鼠的腹膜腔中。然后测定受体巨噬细胞的表型和功能。接受同种异体CD4 + CD25 + Treg的受体小鼠的腹膜F4 / 80 + 巨噬细胞表达的CD23和程序化细胞水平明显升高与接受同种异体CD4 + CD25 - T细胞的小鼠相比,死亡配体1(PD-L1)和较低水平的CD80,CD86,CD40和MHC II分子(Teffs)或没有细胞。注射同种异体供体CD4 + CD25 + Treg的受体小鼠的常驻F4 / 80 + 巨噬细胞显示出鸡红血球的吞噬作用显着增加细胞(cRBCs)和精氨酸酶活性以及增加的IL-10产生,而这些巨噬细胞还显示出降低的免疫原性和一氧化氮(NO)产生。在体内诱导M2巨噬细胞方面,阻断精氨酸酶部分但显着逆转了CD4 + CD25 + Treg的作用。因此,同种异体供体CD4 + CD25 + Treg可以至少部分通过精氨酸酶途径诱导受体小鼠的M2巨噬细胞。我们提供了体内证据支持同种异体供体CD4 + CD25 + Treg通过促进M2巨噬细胞分化来调节先天免疫的未知途径。

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