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?
英文原题:Tumor neoantigen gene C7orf50 remodels the immune microenvironment by recruiting tumor-associated macrophages to promote hepatocellular carcinoma progression and lung metastasis.
C7orf50 是 HCC 进展和肺转移的关键介质,通过 NF- B/PAI-1 通路和 AEG-1 发挥作用。
背景:肝细胞癌(HCC)是全球健康挑战,死亡率高,晚期疾病和肺转移患者尤其如此。基于特异性新抗原的T细胞受体(TCR)T细胞疗法是HCC的一种新兴治疗方式,具有潜在应用价值。然而,患者预后仍然不佳,凸显了开发新靶点和策略的必要性。 方法:我们开展全面研究,考察C7orf50及其新抗原在HCC中的作用。通过体内外实验评估其对HCC进展和转移的功能影响,并进一步探究C7orf50促进癌症转移和重塑肿瘤免疫环境的机制。利用外显子组和转录组测序鉴定C7orf50相关新抗原,并评估其用于TCR-T治疗的潜力。 结果:体外实验显示,C7orf50过表达增强HCC细胞增殖、迁移和侵袭,而敲低则抑制这些过程。体内实验中,C7orf50促进肿瘤生长和肺转移;在HCC患者中,C7orf50表达与临床结局较差显著相关。我们进一步证明,C7orf50可通过结合AEG-1并促进其核转位激活NF-κB/PAI-1通路,从而募集肿瘤相关巨噬细胞。同时,我们发现针对C7orf50相关新抗原的TCR-T细胞可明显杀伤HCC细胞,显示其在细胞治疗中的重要潜力。 结论:C7orf50是HCC进展和肺转移的关键介质,通过NF-κB/PAI-1通路及AEG-1发挥作用。C7orf50、PAI-1和CD68表达水平均可作为独立预后标志物。C7orf50相关新抗原在TCR-T疗法中具有较大应用潜力。这些发现为开发靶向C7orf50的疗法奠定基础,并凸显其用于HCC精准医学和免疫治疗的前景。
BACKGROUND: Hepatocellular carcinoma (HCC) is a global health challenge with high mortality rates, particularly in patients with advanced disease and lung metastasis. T-cell receptor (TCR)-T cell therapy based on specific neoantigens, is an emerging treatment with potential for HCC. However, the prognosis of patients remains poor, underscoring the need for novel targets and strategies. METHODS: We conducted a comprehensive study to investigate the role of C7orf50 and its neoantigens in HCC. We evaluated the functional impact on HCC progression and metastasis in vitro and in vivo , and further explored the mechanism by which C7orf50 promotes cancer metastasis and remodels tumor immune environment. Using exome and transcriptome sequencing, we identified neoantigens associated with C7orf50 and assessed their potential in TCR-T therapy. RESULTS: Our in vitro experiments revealed that C7orf50 overexpression enhances HCC cell proliferation, migration, and invasion, while knockdown inhibits these processes. In vivo , C7orf50 promoted tumor growth and lung metastasis, with a significant correlation between C7orf50 expression and poor clinical outcomes in patients with HCC. We further demonstrated that C7orf50 activates the NF- B/PAI-1 pathway by binding to AEG-1 and facilitating its nuclear translocation, thereby promoting tumor-associated macrophage recruitment. Meanwhile, we found that TCR-T from C7orf50 -related neoantigen could obviously realize the killing effect on HCC cells, revealing its great role in cell therapy. CONCLUSION: C7orf50 is a critical mediator of HCC progression and lung metastasis, acting through the NF- B/PAI-1 pathway and AEG-1. Its expression levels, along with those of PAI-1 and CD68, serve as independent prognostic markers. And C7orf50 -related neoantigen shows great application potential in TCR-T therapy. These findings provide a foundation for developing C7orf50 -targeted therapies and highlight its potential in precision medicine and immunotherapy for HCC.
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