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高可塑性细胞状态在肺癌中的关键作用

英文原题:Critical role for a high-plasticity cell state in lung cancer.

查看英文原题

Critical role for a high-plasticity cell state in lung cancer.

PubMed 2026/01/21(内容时间) Nature Q1 · IF 56.1(JCR 2025)

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中文摘要

细胞可塑性——发生表型转换的能力——推动癌症进展和治疗耐药。近期研究提示,实体瘤中的可塑性集中于少数癌细胞亚群,但尚缺乏在原位研究高可塑性细胞状态(HPCS)功能的实验。

本研究开发了小鼠模型,可在自发性肺肿瘤中检测、纵向谱系追踪并消融HPCS。谱系追踪显示,HPCS细胞具有很强的状态转换能力,可在原位产生早期肿瘤性(分化)及进展期肺癌细胞状态。通过分泌型荧光素酶开展纵向谱系追踪发现,与主体癌细胞或另一种具有分化肺上皮特征的癌细胞状态相比,HPCS来源细胞具有更强增殖能力。在早期肿瘤中消融HPCS细胞可阻断良性向恶性转化;在已形成的肿瘤中,采用自杀基因或嵌合抗原受体(CAR)T细胞消融HPCS均可强效降低肿瘤负荷。

我们还证明HPCS可产生治疗耐药细胞状态,而消融HPCS可抑制对化疗和致癌蛋白靶向治疗的耐药。值得注意的是,HPCS样状态普遍存在于再生上皮及多种其他组织的癌中,揭示不同肿瘤间可塑性程序趋同。

本研究确立HPCS为一个关键枢纽,使癌细胞状态之间能够相互转换。靶向肺癌及其他癌中的HPCS,可能抑制癌症进展并根除治疗耐药。

展开英文摘要原文

Plasticity-the ability of cells to undergo phenotypic transitions-drives cancer progression and therapy resistance 1-3 . Recent studies have suggested that plasticity in solid tumours is concentrated in a minority subset of cancer cells 4-6 , yet functional studies examining this high-plasticity cell state (HPCS) in situ are lacking.

Here we develop mouse models enabling the detection, longitudinal lineage tracing and ablation of the HPCS in autochthonous lung tumours in vivo. Lineage tracing reveals that the HPCS cells possess a high capacity for cell state transitions, giving rise to both early neoplastic (differentiated) and progressed lung cancer cell states in situ.

Longitudinal lineage tracing using secreted luciferases reveals that HPCS-derived cells have a high capacity for growth compared with bulk cancer cells or another cancer cell state with features of differentiated lung epithelium. Ablation of HPCS cells in early neoplasias abrogates benign-to-malignant transition, whereas ablation in established tumours by suicide gene or chimeric antigen receptor (CAR) T cells robustly reduces tumour burden.

We further demonstrate that the HPCS gives rise to therapy-resistant cell states, whereas HPCS ablation suppresses resistance to chemotherapy and oncoprotein-targeted therapy.

Notably, an HPCS-like state is ubiquitous in regenerating epithelia and in carcinomas of multiple other tissues, revealing a convergence of plasticity programs.

Our work establishes the HPCS as a critical hub enabling reciprocal transitions between cancer cell states. Targeting the HPCS in lung cancer and in other carcinomas may suppress cancer progression and eradicate treatment resistance.

论文信息

作者
Chan JE、Pan CH、Rub J、Guzman G、Krause K、Brown E、Zhang Z、Styers H
第一作者单位
Cancer Biology and Genetics Program, Sloan Kettering Institute, Memorial Sloan Kettering Cancer Center, New York, NY, USA.United States
通讯作者单位
Cancer Biology and Genetics Program, Sloan Kettering Institute, Memorial Sloan Kettering Cancer Center, New York, NY, USA. tammelat@mskcc.org.United States
文献类型
美国 NIH 资助研究
期刊
Nature2026 Mar
原文标识
PubMed 41565826 · DOI 10.1038/s41586-025-09985-x