RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Single-cell and spatial transcriptomics reveals an anti-tumor neutrophil subgroup in microwave thermochemotherapy-treated lip cancer.
Single-cell and spatial transcriptomics reveals an anti-tumor neutrophil subgroup in microwave thermochemotherapy-treated lip cancer.
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微波热化疗(MTC)已应用于治疗唇鳞状细胞癌(LSCC),但对其治疗机制和分子生物学的深入理解仍需加强。为解决这一问题,我们采用单细胞转录组学(scRNA-seq)和空间转录组学(ST)来突出肿瘤相关中性粒细胞(TANs)在肿瘤浸润免疫细胞中的关键作用及其对MTC的治疗反应。具有抗肿瘤活性的MNDA+ TANs(N1表型)被发现通过MTC大量浸润,并受益于血液灌注增加,这些TANs的特征是细胞毒性增强、缺氧改善以及IL1B上调,通过IL1B-IL1R激活T&NK细胞和成纤维细胞。在MTC下这种高度抗肿瘤免疫原性和缺氧逆转的微环境中,积聚在肿瘤前沿(TF)的成纤维细胞可以通过CXCL2-CXCR2招募N1-TANs,并通过CXCL12-CXCR4清除N2-TANs(促肿瘤表型),从而导致N1-TANs的聚集和细胞外基质(ECM)沉积。
此外,我们构建了一个N1-TANs标志物MX2,它与LSCC患者更好的预后正相关,并采用深度学习技术从苏木精-伊红(H&E)染色图像中预测MX2的表达,以便方便地指导临床实践中的决策。
总之,我们的研究结果表明,响应MTC形成的N1-TANs/成纤维细胞防御墙有效对抗LSCC。
Microwave thermochemotherapy (MTC) has been applied to treat lip squamous cell carcinoma (LSCC), but a deeper understanding of its therapeutic mechanisms and molecular biology is needed. To address this, we used single-cell transcriptomics (scRNA-seq) and spatial transcriptomics (ST) to highlight the pivotal role of tumor-associated neutrophils (TANs) among tumor-infiltrating immune cells and their therapeutic response to MTC.
MNDA + TANs with anti-tumor activity (N1-phenotype) are found to be abundantly infiltrated by MTC with benefit of increased blood perfusion, and these TANs are characterized by enhanced cytotoxicity, ameliorated hypoxia, and upregulated IL1B, activating T&NK cells and fibroblasts via IL1B-IL1R.
In this highly anti-tumor immunogenic and hypoxia-reversed microenvironment under MTC, fibroblasts accumulated in the tumor front (TF) can recruit N1-TANs via CXCL2-CXCR2 and clear N2-TANs (pro-tumor phenotype) via CXCL12-CXCR4, which results in the aggregation of N1-TANs and extracellular matrix (ECM) deposition.
In addition, we construct an N1-TANs marker, MX2, which positively correlates with better prognosis in LSCC patients, and employ deep learning techniques to predict expression of MX2 from hematoxylin-eosin (H&E)-stained images so as to conveniently guide decision making in clinical practice. Collectively, our findings demonstrate that the N1-TANs/fibroblasts defense wall formed in response to MTC effectively combat LSCC.
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