PO.CL05.04 · 临床研究
肿瘤IDO1通过抑制T细胞募集和效应功能驱动对过继细胞转移的耐药
Tumor IDO1 drives resistance to adoptive cell transfer by suppressing T cell recruitment and effector function
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
过继细胞转移(ACT)在黑色素瘤中已展现出强效的抗肿瘤疗效,然而在免疫抑制性肿瘤微环境中常出现治疗耐药。吲哚胺2,3-双加氧酶1(IDO1)是一种色氨酸分解代谢酶,可生成犬尿氨酸(Kyn),这是一种已知能抑制效应T细胞功能的免疫调节性代谢产物。在此,我们表明肿瘤过度表达IDO1通过T细胞排斥和细胞毒性损害的双重机制削弱ACT疗效。利用经改造过度表达IDO1的小鼠B16黑色素瘤细胞(B16IDO1),我们观察到Kyn水平升高、CXCL9/10和CCL5趋化因子表达降低以及瘤内T细胞浸润减少。在体外,表达IDO1的肿瘤细胞表现出对活化CD8 PMEL T细胞杀伤的抵抗,这一表型依赖于条件培养基中的可溶性因子,并可通过药理学IDO1抑制逆转。在体内,过继转移PMEL或TRP1 T细胞(针对酪氨酸酶相关蛋白1的CD4 T细胞)均未能控制B16IDO1肿瘤,这与浸润、功能和生存的降低相关。药理学阻断IDO1增强了T细胞浸润并改善了ACT介导的肿瘤控制。总之,这些发现确定IDO1是ACT耐药的调控因子,其机制为抑制T细胞迁移和效应活性。目前正在对患者的TIL、肿瘤和血清样本进行补充分析,以评估IDO1/Kyn水平与免疫细胞负荷之间的相关性,凸显其临床相关性。进一步的研究将这一框架扩展至人类模型,包括IDO1⁺黑色素瘤异种移植和CAR T细胞,以探索靶向IDO1-Kyn-AHR轴以增强细胞免疫治疗疗效的转化潜力。
查看英文原文 English abstract
Adoptive cell transfer (ACT) has demonstrated potent anti-tumor efficacy in melanoma, yet therapeutic resistance frequently emerges within immunosuppressive tumor microenvironments. Indoleamine 2,3 dioxygenase 1 (IDO1) is a tryptophan catabolizing enzyme that generates kynurenine (Kyn), an immunomodulatory metabolite known to suppress effector T cell function. Here, we show that tumor overexpression of IDO1 undermines ACT efficacy through dual mechanisms of T cell exclusion and cytotoxic impairment. Using murine B16 melanoma cells engineered to overexpress IDO1 (B16IDO1), we observed elevated Kyn levels, reduced CXCL9/10 and CCL5 chemokine expression, and decreased intratumoral T cell infiltration. In vitro, IDO1 expressing tumor cells exhibited resistance to killing by activated CD8 PMEL T cells, a phenotype dependent on soluble factors in conditioned media and reversible with pharmacologic IDO1 inhibition. In vivo, adoptive transfer of either PMEL or TRP1 T cells, CD4 T cells specific for tyrosinase-related protein 1, failed to control B16IDO1 tumors, correlating with decreased infiltration, function, and survival. Pharmacologic blockade of IDO1 enhanced T cell infiltration and improved ACT mediated tumor control. Together, these findings identify IDO1 as a regulator of ACT resistance by suppressing T cell trafficking and effector activity. Complementary analyses of patient TIL, tumor, and serum samples are underway to assess correlations between IDO1/Kyn levels and immune cell burden, underscoring clinical relevance. Further studies extend this framework to human models, including IDO1⁺ melanoma xenografts and CAR T cells, to explore the translational potential of targeting the IDO1-Kyn-AHR axis to enhance cellular immunotherapy efficacy.
利益披露 Disclosure
M. A. Bah, None..
P. Abrahimi, None.
J. D. Wolchok,
Ankyra Therapeutics Other, Consulting.
Apricity Stock Option, Other, Consulting.
Arsenal Biosciences Stock Option, Other, Consulting.
Ascentage Pharma Stock, Other, Consulting.
Bicara Therapeutics Other, Consulting.
Bristol Myers Squibb Stock Option, Gift, Other, consulting.
Daiichi Sankyo Other, consulting.
Imvaq Stock Option, Other, consulting.
Takeda Stock Option, Other, consulting.
Tizona Other, consulting.
Trishula Therapeutics Other, consulting.
Immunocore Other, consulting.