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:Human ILC3 Exert TRAIL-Mediated Cytotoxicity Towards Cancer Cells.
Human ILC3 Exert TRAIL-Mediated Cytotoxicity Towards Cancer Cells.
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3型辅助性固有淋巴细胞(ILC3s)是产生细胞因子的淋巴细胞,能够对组织稳态紊乱和感染期间释放的应激信号作出反应。激活后,ILC3s分泌IL-22和IL-17,并协调针对胞外病原体的免疫应答。它们在癌症中的作用仍鲜有探索。为确定其抗癌效应潜力,我们将细胞因子激活的人ILC3s与不同来源的癌细胞共培养。ILC3s能够直接对肿瘤细胞作出反应,导致IFN-γ产生增强。在遭遇肿瘤细胞后,ILC3s维持转录因子RORγt的表达,表明ILC3s保持了其身份特征。ILC3s能够通过激活靶细胞中的Caspase-8,直接杀死表达细胞死亡受体TRAILR2的肝细胞癌和黑色素瘤肿瘤细胞。
此外,肝脏来源的细胞因子激活的ILC3s也表达TRAIL,并能够消除肝母细胞瘤细胞。总之,我们的数据揭示,ILC3s可以通过直接识别肿瘤细胞参与抗肿瘤免疫应答,导致IFN-γ释放和TRAIL依赖性细胞毒性。
因此,ILC3s可能是组织中抗肿瘤免疫的辅助参与者,作为针对转化或转移细胞的首要应答者,这可能被进一步开发用于癌症治疗。
Group 3 helper Innate Lymphoid Cells (ILC3s) are cytokine-producing lymphocytes that respond to stress signals released during disturbed tissue homeostasis and infection. Upon activation, ILC3s secrete IL-22 and IL-17, and orchestrate immune responses against extracellular pathogens. Their role in cancer remains poorly explored. To determine their anti-cancer effector potential, we co-cultured cytokine-activated human ILC3s with cancer cells of different origins.
ILC3s were able to directly respond to tumor cells, resulting in enhanced IFN-γ production. Upon tumor cell encounter, ILC3s maintained expression of the transcription factor RORγt, indicating that ILC3s preserved their identity. ILC3s were able to directly kill both hepatocellular carcinoma and melanoma tumor cells expressing cell-death receptor TRAILR2, through the activation of Caspase-8 in target cells.
Moreover, liver-derived cytokine-activated ILC3s also expressed TRAIL and were able to eliminate hepatoblastoma cells.
Together, our data reveal that ILC3s can participate in anti-tumor immune response through direct recognition of tumor cells resulting in IFN-γ release and TRAIL-dependent cytotoxicity.
Thus, ILC3s might be ancillary players of anti-tumor immunity in tissues, acting as primary responders against transformed or metastasizing cells, which might be further exploited for therapies against cancer.
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