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RBM10 通过抑制 PD-1 表达来抑制免疫逃逸,从而抑制胰腺癌的发展

英文原题:RBM10 inhibits pancreatic cancer development by suppressing immune escape through PD-1 expression.

查看英文原题

RBM10 inhibits pancreatic cancer development by suppressing immune escape through PD-1 expression.

PubMed 2025/07/04(内容时间) J Cancer Q2 · IF 3.4(JCR 2025)

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中文摘要

RNA结合基序蛋白10(RBM10)在胰腺导管腺癌(PAAD)中发挥作用,但其确切的内在机制仍不清楚。本研究探讨RBM10在胰腺癌进展和免疫调节中的作用。通过Western blotting、RT-qPCR和免疫组化评估PAAD患者胰腺组织中RBM10的表达,结果显示胰腺癌组织中RBM10水平低于癌旁非癌组织。这一发现与体外实验一致,在体外实验中,胰腺癌细胞中RBM10敲低增强了集落形成、迁移和增殖,这与P-JAK1、P-JAK2和P-STAT3水平升高相关。生物信息学鉴定了RBM10相关通路和免疫变化。

此外,体外实验中癌细胞中RBM10缺失增加了NK 细胞中PD-1的表达,降低了其杀肿瘤能力。然而,使用JAK通路抑制剂AZD1480处理恢复了NK细胞对癌细胞的细胞毒性。

最后,RBM10高表达与胰腺癌患者良好预后相关,表明RBM10通过JAK-STAT介导的NK细胞中PD-1表达调控抑制肿瘤免疫逃逸,从而抑制胰腺癌进展。这一发现为胰腺癌管理中新型精准靶向疗法的开发提供了潜力。

展开英文摘要原文

RNA-binding motif protein-10 (RBM10) plays a role in pancreatic adenocarcinoma (PAAD), though its precise underlying mechanism remains unclear. The current study investigates the role of RBM10 in pancreatic cancer progression and immune regulation. RBM10 expression in pancreatic tissues from PAAD patient was assessed using Western blotting, RT-qPCR, and immunohistochemistry, revealing lower levels in pancreatic cancerous tissues compared to adjacent non-cancerous tissues.

This finding aligns with in vitro experiments where RBM10 knockdown in pancreatic cancer cells enhanced colony formation, migration, and proliferation, which correlated with increased P-JAK1, P JAK2, and P-STAT3 levels. Bioinformatics identified RBM10-related pathways and immune changes.

Moreover, RBM10 deficiency in cancer cells increased PD-1 expression in natural killer cells in vitro , reducing their tumour-killing ability.

However, treatment with the JAK pathway inhibitor AZD1480 restored NK cell cytotoxicity against cancer cells.

Finally, high RBM10 expression was associated with a favourable prognosis in pancreatic cancer patients, suggesting that RBM10 inhibits pancreatic cancer progression by suppressing tumour immune escape through JAK-STAT-mediated regulation of PD-1 expression in NK cells. This finding offers potential for the development of novel precision-targeted therapies in the management of pancreatic cancer.

论文信息

作者
Gao X、Zhang X、Huang J、Tan Z、Yang J、Yuan L、Wang P、Chen F
单位
Department of Pathology, Tongren Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.China
期刊
Journal of Cancer2025
原文标识
PubMed 40740233 · DOI 10.7150/jca.111459