← 返回

结直肠癌干细胞通过受 Stathmin1 抑制的同型细胞入细胞结构产生 NK 细胞抗性

英文原题:Colorectal cancer stem cells develop NK cell resistance via homotypic cell-in-cell structures suppressed by Stathmin1.

查看英文原题

Colorectal cancer stem cells develop NK cell resistance via homotypic cell-in-cell structures suppressed by Stathmin1.

PubMed 2025/03/18(内容时间) Theranostics Q1 · IF 14.9(JCR 2025)

分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。

中文摘要

将携带mCherry荧光蛋白的结直肠癌干细胞(CRCSC)在无血清培养基中扩增为球状体,并与表达Venus荧光蛋白的亲本癌细胞或CFSE标记的免疫细胞(T细胞、M1/M2巨噬细胞、中性粒细胞和NK细胞)共培养,或用靶向EGFR或PD-L1的抗体处理,以评估CIC结构形成。敲低或过表达可能参与CIC形成的基因并评估其影响;再通过分析福尔马林固定、石蜡包埋的人结直肠癌(CRC)样本,验证体外发现的临床相关性。

CRCSC倾向于在CIC结构中充当外层细胞,并主要与亲本CRC细胞形成同型CIC。抗PD-L1抗体处理后CIC形成频率增加。CIC外层CRCSC及从同型CIC释放的CRCSC均对NK-92MI细胞的细胞毒作用更耐受。恢复CRCSC中Stathmin1(STMN1)表达可降低同型CIC频率、改变其外层细胞命运并提高细胞对NK-92MI细胞毒作用的易感性,而敲低RAC1无此效应。在CRC患者中,CIC结构与肿瘤分化差、STMN1阴性及预后不良相关。

CSC在CRC CIC结构形成中发挥关键作用。CIC形成部分依赖STMN1低表达,并可在NK细胞毒作用下赋予细胞生存优势。靶向该通路可能显著提升CRC免疫治疗疗效。

展开英文摘要原文

Rationale: Advances in cancer therapies have significantly improved patient survival; however, tumors enriched in cancer stem cells (CSCs) have poor treatment responses. CSCs are a key source of tumor heterogeneity, contributing to therapeutic resistance and unfavorable patient outcomes. In the tumor microenvironment (TME), cell-in-cell (CIC) structures, where one cell engulfs another, have been identified as markers of poor prognosis. Despite their clinical relevance, the mechanisms underlying CIC formation across different tumor cell subpopulations remain largely unknown. Elucidating these processes could provide novel insights and therapeutic opportunities to address aggressive, treatment-resistant cancers. Method: Fluorescent mCherry-carrying colorectal cancer stem cells (CRCSCs) were expanded as spheroids in serum-free media and cocultured with either parental cancer cell-expressing Venus fluorescent protein or CFSE dye-stained immune cells (T cells, M1/M2 macrophages, neutrophils, and NK cells) or treated with EGFR- or PD-L1-targeting antibodies to assess the formation of CIC structures. Genes potentially crucial for the formation of CIC structures were knocked down or overexpressed, and their effects on CIC formation were evaluated.

The clinical relevance of the in vitro findings was confirmed through analysis of formalin-fixed, paraffin-embedded (FFPE) human colorectal cancer (CRC) specimens. Results: CRCSCs have a strong predilection for serving as the outer cell in a CIC structure and forming homotypic CIC structures predominantly with parental CRC cells. The frequency of CIC structure formation increased when the cells were exposed to anti-PD-L1 antibody treatment. Both the outer CRCSC in a CIC structure and CRCSCs released from a homotypic CIC structure showed enhanced resistance to the cytotoxicity of NK-92MI cells.

Restoration of Stathmin1 (STMN1) expression but not RAC1 knockdown in CRCSCs reduced the homotypic CIC frequency, disrupted the outer cell fate in CIC structures, and increased cell susceptibility to NK-92MI cytotoxicity. In CRC patients, CIC structures are associated with poor tumor differentiation, negative STMN1 expression, and poor prognosis.

Conclusion: CSCs play a crucial role in informing CIC structures in CRC. CIC structure formation partially depends on low STMN1 expression and confers a survival advantage under NK cytotoxicity. Targeting this pathway may significantly improve immunotherapy's efficacy for CRC patients.

论文信息

作者
Lin YY、Lan HY、Teng HW、Wang YP、Lin WC、Hwang WL
第一作者单位
Department of Pathology, Fu Jen Catholic University Hospital, Fu Jen Catholic University, New Taipei City 24352, Taiwan.Taiwan
通讯作者单位
Department of Biotechnology and Laboratory Science in Medicine, National Yang Ming Chiao Tung University, Taipei 112, Taiwan.Taiwan
期刊
Theranostics2025
原文标识
PubMed 40225568 · DOI 10.7150/thno.110379