为肝细胞癌武装 GPC3 CAR-T 细胞:多少才足够,下一步是什么?
Armouring GPC3 CAR T cells for hepatocellular carcinoma: how much is enough and what comes next?
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Atovaquone enhances antitumor efficacy of TCR-T therapy by augmentation of ROS-induced ferroptosis in hepatocellular carcinoma.
Atovaquone enhances antitumor efficacy of TCR-T therapy by augmentation of ROS-induced ferroptosis in hepatocellular carcinoma.
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T细胞受体(TCR)工程化T细胞疗法近年来作为一种有前景的过继性免疫治疗策略用于肿瘤治疗,但因肿瘤免疫逃逸导致疗效不佳而受到限制。铁死亡靶向诱导剂的引入提供了一种潜在解决方案,因为它们能增强T细胞诱导铁死亡的能力并对肿瘤微环境施加影响。阿托伐醌(ATO)是一种有前景的药物候选物,具有靶向铁死亡的潜力,能有效引发活性氧(ROS)的过度生成和积累。
在本研究中,我们在体外和体内评估了ATO联合TCR-T细胞治疗肝细胞癌(HCC)的有效性。乳酸脱氢酶和细胞因子检测结果表明,ATO增强了AFP特异性TCR-T细胞介导的细胞毒性,并在体外促进了IFN-的释放。
此外,在已建立的HCC异种移植小鼠模型中,低剂量ATO联合TCR-T细胞的联合治疗在抑制肿瘤生长方面表现出更高的疗效,且无明显不良反应,与单药治疗所达到的结果相当。RNA-seq数据揭示,与TCR-T细胞组相比,联合治疗组中铁死亡相关通路显著激活。在机制上,ATO与TCR-T细胞的协同作用增强了TCR-T细胞释放IFN-,同时升高了HepG2细胞内和线粒体ROS水平,扩大了不稳定铁池,并损害了线粒体膜的完整性。这种多方面的相互作用最终增强了肿瘤内的铁死亡,主要由过量的ROS诱导。
总之,在HCC中联合使用ATO和TCR-T细胞表现出对铁死亡的高度易感性。这种增加的易感性导致肿瘤生长受到抑制,并刺激了抗肿瘤免疫反应。这些发现表明,将atovaquone重新用于过继性细胞疗法联合治疗,有望改善HCC的治疗效果。
T-cell receptor (TCR) engineered T-cell therapy has recently emerged as a promising adoptive immunotherapy approach for tumor treatment, yet hindered by tumor immune evasion resulting in poor therapeutic efficacy. The introduction of ferroptosis-targeted inducers offers a potential solution, as they empower T cells to induce ferroptosis and exert influence over the tumor microenvironment.
Atovaquone (ATO) stands as a prospective pharmaceutical candidate with the potential to target ferroptosis, effectively provoking an excessive generation and accumulation of reactive oxygen species (ROS). In this study, we evaluated the effectiveness of a combination therapy comprising ATO and TCR-T cells against hepatocellular carcinoma (HCC), both in vitro and in vivo. The results of lactate dehydrogenase and cytokine assays demonstrated that ATO enhanced cytotoxicity mediated by AFP-specific TCR-T cells and promoted the release of IFN- in vitro.
Additionally, in an established HCC xenograft mouse model, the combined therapy with low-dose ATO and TCR-T cells exhibited heightened efficacy in suppressing tumor growth, with no apparent adverse effects, comparable to the results achieved through monotherapy. The RNA-seq data unveiled a significant activation of the ferroptosis-related pathway in the combination therapy group in comparison to the TCR-T cells group.
Mechanistically, the synergy between ATO and TCR-T cells augmented the release of IFN- by TCR-T cells, while concurrently elevating the intracellular and mitochondrial levels of ROS, expanding the labile iron pool, and impairing the integrity of the mitochondrial membrane in HepG2 cells.
This multifaceted interaction culminated in the potentiation of ferroptosis within the tumor, primarily induced by an excess of ROS. In summary, the co-administration of ATO and TCR-T cells in HCC exhibited heightened vulnerability to ferroptosis. This heightened susceptibility led to the inhibition of tumor growth and the stimulation of an anti-tumor immune response.
These findings suggest that repurposing atovaquone for adoptive cell therapy combination therapy holds the potential to enhance treatment outcomes in HCC.
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