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通过转移广谱肿瘤反应性 γδT 细胞受体来引导 αβ T 细胞对抗癌细胞。

Redirecting αβ T cells against cancer cells by transfer of a broadly tumor-reactive γδT-cell receptor.

机构信息

Department of Hematology, University Medical Center (UMC) Utrecht, Utrecht, The Netherlands.

出版信息

Blood. 2011 Jul 7;118(1):50-9. doi: 10.1182/blood-2010-12-325993. Epub 2011 May 12.

Abstract

Major limitations of currently investigated αβT cells redirected against cancer by transfer of tumor-specific αβTCR arise from their low affinity, MHC restriction, and risk to mediate self-reactivity after pairing with endogenous α or βTCR chains. Therefore, the ability of a defined γ9δ2TCR to redirect αβT cells selectively against tumor cells was tested and its molecular interaction with a variety of targets investigated. Functional analysis revealed that a γ9δ2TCR efficiently reprograms both CD4(+) and CD8(+) αβT cells against a broad panel of cancer cells while ignoring normal cells, and substantially reduces but does not completely abrogate alloreactivity. γ9δ2TCR-transduced αβT cells reduced colony formation of progenitor cells of primary acute myeloid leukemia blasts and inhibited leukemia growth in a humanized mouse model. Thereby, metabolites of a dysregulated mevalonate pathway are targeted and the additional application of widely used biphosphonates is crucial for in vivo efficacy most likely because of its modulating effect on cytokine secretion of γ9δ2TCR-transduced αβT cells. Expression of NKG2D ligands and F1-ATPase contributed to the activity of γ9δ2TCR-transduced αβT cells but were not mandatory. In summary, γ9δ2 TCRs are an attractive alternative to broadly redirect αβT cells against cancer cells with both an improved efficacy and safety profile compared with currently used αβTCRs.

摘要

目前通过转移肿瘤特异性 TCR 对癌症进行靶向的 αβT 细胞存在的主要局限性源于其亲和力低、MHC 限制以及与内源性 α 或 βTCR 链配对后介导自身反应的风险。因此,测试了一种定义明确的 γ9δ2TCR 将 αβT 细胞选择性重新定向到肿瘤细胞的能力,并研究了其与多种靶标的分子相互作用。功能分析表明,γ9δ2TCR 能够有效地对广泛的癌细胞重新编程 CD4(+)和 CD8(+)αβT 细胞,而忽略正常细胞,并且大大降低但不能完全消除同种异体反应性。γ9δ2TCR 转导的 αβT 细胞减少了原代急性髓系白血病母细胞集落形成细胞的集落形成,并抑制了人源化小鼠模型中的白血病生长。由此,靶向失调的甲羟戊酸途径的代谢物,并且广泛使用的双膦酸盐的额外应用对于体内疗效至关重要,这很可能是因为它对 γ9δ2TCR 转导的 αβT 细胞的细胞因子分泌具有调节作用。NKG2D 配体和 F1-ATP 酶的表达有助于 γ9δ2TCR 转导的 αβT 细胞的活性,但不是必需的。总之,与目前使用的 TCR 相比,γ9δ2TCR 是一种有吸引力的替代方法,可以更有效地靶向 αβT 细胞对抗癌细胞,同时具有改善的疗效和安全性。

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