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CD4?8? Dendritic Cells Prime CD4+ T Regulatory 1 Cells to Suppress Antitumor Immunity

机译:CD4?8?树突状细胞可启动CD4 + T调节性1细胞抑制抗肿瘤免疫力

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It is clear that dendritic cells (DCs) are essential for priming of T cell responses against tumors. However, the distinct roles DC subsets play in regulation of T cell responses in vivo are largely undefined. In this study, we investigated the capacity of OVA-presenting CD4?8?, CD4+8?, or CD4?8+ DCs (OVA-pulsed DC (DCOVA)) in stimulation of OVA-specific T cell responses. Our data show that each DC subset stimulated proliferation of allogeneic and autologous OVA-specific CD4+ and CD8+ T cells in vitro, but that the CD4?8? DCs did so only weakly. Both CD4+8? and CD4?8+ DCOVA induced strong tumor-specific CD4+ Th1 responses and fully protective CD8+ CTL-mediated antitumor immunity, whereas CD4?8? DCOVA, which were less mature and secreted substantial TGF-β upon coculture with TCR-transgenic OT II CD4+ T cells, induced the development of IL-10-secreting CD4+ T regulatory 1 (Tr1) cells. Transfer of these Tr1 cells, but not T cells from cocultures of CD4?8? DCOVA and IL-10?/? OT II CD4+ T cells, into CD4?8+ DCOVA-immunized animals abrogated otherwise inevitable development of antitumor immunity. Taken together, CD4?8? DCs stimulate development of IL-10-secreting CD4+ Tr1 cells that mediated immune suppression, whereas both CD4+8? and CD4?8+ DCs effectively primed animals for protective CD8+ CTL-mediated antitumor immunity.
机译:显然,树突状细胞(DC)对于引发针对肿瘤的T细胞反应至关重要。然而,DC子集在体内调节T细胞反应中所起的独特作用在很大程度上尚不清楚。在这项研究中,我们调查了OVA呈递CD4?8?,CD4 + 8?或CD4?8+ DC(OVA脉冲DC(DCOVA))刺激OVA特异性T细胞反应的能力。我们的数据表明,每个DC子集在体外都能刺激同种异体和自体OVA特异性CD4 +和CD8 + T细胞的增殖,但是CD4?8?区议会这样做的能力很弱。都是CD4 + 8吗? CD4 + 8 + DCOVA和CD4 + 8 + DCOVA诱导强烈的肿瘤特异性CD4 + Th1反应和完全保护性的CD8 + CTL介导的抗肿瘤免疫力。 DCOVA较不成熟,在与TCR转基因OT II CD4 + T细胞共培养时分泌大量TGF-β,它诱导了分泌IL-10-的CD4 + T调节性1(Tr1)细胞的发育。从CD4?8?的共培养物中转移这些Tr1细胞,但不转移T细胞。 DCOVA和IL-10? OT II CD4 + T细胞进入CD4→8 + DCOVA免疫的动物体内,否则将不可避免地发展为抗肿瘤免疫力。合在一起,CD4?8? DCs刺激介导免疫抑制的分泌IL-10-的CD4 + Tr1细胞的发育,而CD4 + 8和CD4 + 8 CD4 + 8 + DCs有效地引发了动物对CD8 + CTL介导的抗肿瘤免疫的保护作用。

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