纵向血浆代谢组学指导食管鳞状细胞癌化疗免疫治疗的动态风险评估与饮食调节
Longitudinal Plasma Metabolomics Guides Dynamic Risk Assessment and Dietary Modulation for Esophageal Squamous Cell Cancer Chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Hypoxia inhibits the iMo/cDC2/CD8+ TRMs immune axis in the tumor microenvironment of human esophageal cancer.
Hypoxia inhibits the iMo/cDC2/CD8+ TRMs immune axis in the tumor microenvironment of human esophageal cancer.
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本研究揭示了 CD8⁺ TRM 的重要抗肿瘤作用,并初步探索了人 ESCA 肿瘤微环境中 iMo/cDC2/CD8⁺ TRM 免疫轴的调控。
食管癌与慢性炎症和免疫失调有关,但其免疫状态及调控机制仍需研究。
研究对未经治疗患者的肿瘤及邻近组织进行质谱流式、单细胞RNA测序、多重荧光染色和流式分析。
研究描绘食管癌免疫图谱,发现CD8组织驻留记忆T细胞与疾病进展密切相关,且该亚群具有与分化及功能相关的异质性。晚期肿瘤微环境中,表达高水平颗粒酶B及免疫检查点的肿瘤内驻留记忆T细胞明显减少。该亚群是在肿瘤微环境中预先活化的效应细胞。由中间型单核细胞分化而来的常规树突细胞2型对维持其增殖至关重要。初步结果提示,缺氧可促进中间型单核细胞凋亡并阻碍树突细胞成熟,降低驻留记忆T细胞增殖能力,进而促进肿瘤进展。
CD8组织驻留记忆T细胞在食管癌中具有重要抗肿瘤作用,研究初步揭示中间型单核细胞/树突细胞/CD8驻留记忆T细胞免疫轴的调节机制。
Esophageal cancer (ESCA) is a form of malignant tumor associated with chronic inflammation and immune dysregulation. However, the specific immune status and key mechanisms of immune regulation in this disease require further exploration.
To investigate the features of the human ESCA tumor immune microenvironment and its possible regulation, we performed mass cytometry by time of flight, single-cell RNA sequencing, multicolor fluorescence staining of tissue, and flow cytometry analyses on tumor and paracancerous tissue from treatment-na ve patients.
We depicted the immune landscape of the ESCA and revealed that CD8 + (tissue-resident memory CD8 + T cells (CD8 + TRMs) were closely related to disease progression. We also revealed the heterogeneity of CD8 + TRMs in the ESCA tumor microenvironment (TME), which was associated with their differentiation and function. Moreover, the subset of CD8 + TRMs in tumor (called tTRMs) that expressed high levels of granzyme B and immune checkpoints was markedly decreased in the TME of advanced ESCA. We showed that tTRMs are tumor effector cells preactivated in the TME. We then demonstrated that conventional dendritic cells (cDC2s) derived from intermediate monocytes (iMos) are essential for maintaining the proliferation of CD8 + TRMs in the TME. Our preliminary study showed that hypoxia can promote the apoptosis of iMos and impede the maturation of cDC2s, which in turn reduces the proliferative capacity of CD8 + TRMs, thereby contributing to the progression of cancer.
Our study revealed the essential antitumor roles of CD8 + TRMs and preliminarily explored the regulation of the iMo/cDC2/CD8 + TRM immune axis in the human ESCA TME.
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