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An essential role for Akt1 in dendritic cell function and tumor immunotherapy

机译:Akt1在树突状细胞功能和肿瘤免疫治疗中的重要作用

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Current dendritic cell (DC) vaccine preparations involving ex vivo differentiation and maturation produce short-lived, transiently active DCs that may curtail T-cell responses in vivo. We demonstrate that Akt1, downregulation of which decreases DC lifespan, is critical for proinflammatory signal-mediated DC survival and maturation. Lipopolysaccharide or CD40 signaling stabilizes Akt1, promoting both activation and Bcl-2-dependent survival of DCs. Expression of a potent allele encoding a lipid raft-targeted Akt1, M(F)-DeltaAkt, is sufficient for maturation and survival of murine bone marrow-derived DCs in vivo. M(F)-DeltaAkt-transduced DCs enhanced T-cell proliferation, activation and long-term memory responses, enabling eradication of large pre-established lymphomas and aggressive B16 melanomas. Human myeloid DCs expressing constitutively active M(F)-DeltahAkt also survived significantly longer and promoted antigen-specific T-cell responses. Thus, Akt1 is a critical regulator of DC lifespan, and its manipulation in DCs can improve the clinical efficacy of DC-based tumor vaccines.
机译:当前涉及离体分化和成熟的树突状细胞(DC)疫苗制剂可产生短暂的,短暂活跃的DC,这些DC可能会抑制体内T细胞反应。我们证明Akt1,其下调减少DC寿命,是促炎信号介导的DC生存和成熟的关键。脂多糖或CD40信号稳定Akt1,促进DC的激活和Bcl-2依赖的生存。编码针对脂筏的Akt1的有效等位基因(M(F)-DeltaAkt)的表达足以在体内成熟和存活小鼠骨髓来源的DC。 M(F)-DeltaAkt转导的DC增强T细胞增殖,激活和长期记忆反应,从而能够根除大量预先建立的淋巴瘤和侵袭性B16黑色素瘤。表达组成性活性M(F)-DeltahAkt的人类髓样DC也存活得更长,并促进了抗原特异性T细胞应答。因此,Akt1是DC寿命的关键调节剂,其在DC中的操作可提高基于DC的肿瘤疫苗的临床疗效。

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