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单细胞测序在宫颈癌研究中的进展

英文原题:Advancements in single-cell sequencing for cervical cancer research.

查看英文原题

Advancements in single-cell sequencing for cervical cancer research.

PubMed 2025/11/06(内容时间) Mol Cell Biochem Q2 · IF 4.7(JCR 2025)

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中文摘要

单细胞测序彻底改变了我们对宫颈癌(CC)的认识,揭示了前所未有的细胞异质性、肿瘤微环境(TME)动态以及进展和治疗耐药背后的分子机制。这些技术已鉴定出不同的分子亚型(缺氧型、增殖型和免疫反应型)和上皮状态(细胞角蛋白⁺、免疫交互型和衰老型),同时揭示了HPV驱动的致癌机制,包括病毒整合热点(如8q24.21)和免疫逃逸策略(如SPP1⁺ TAM和GALNT3介导的免疫抑制)。代谢重编程进一步将肿瘤分层为空间组织化的Warburg效应和OXPHOS主导的生态位,每种生态位均与独特的免疫浸润模式相关。TME表现出耗竭型PD-1⁺LAG3⁺TIM3⁺ T细胞、免疫抑制性基质细胞(MYH9⁺ CAF、PODXL⁺ EC)与稀有但强效的效应细胞群(FGFBP2⁺ NK细胞、CXCL13⁺ TRM)之间复杂的相互作用。

尽管取得了这些进展,临床转化仍面临挑战,包括耐药机制(NFKB1突变、BCL10⁺ Treg抑制)以及关键靶点(PCLAF⁺ TAEpi、MYH9⁺ CAF)抑制剂的缺乏。有前景的治疗策略包括表观遗传调控(SALL4)、唾液酸化抑制(GALNT3/12)以及免疫-基质联合靶向(PD-1 + LAG3/TIM3、NRG1-ERBB3阻断)。未来工作必须优先考虑新靶点(DKK2、ELF3)的功能验证、空间多组学以解析CAF-免疫-代谢串扰,以及整合单细胞分类器的生物标志物驱动临床试验。通过将单细胞见解与机制和转化研究相结合,该领域有望克服基质介导的耐药,开启宫颈癌精准免疫治疗的新时代。

展开英文摘要原文

Single-cell sequencing has revolutionized our understanding of cervical cancer (CC), revealing unprecedented cellular heterogeneity, tumor microenvironment (TME) dynamics, and molecular mechanisms underlying progression and therapy resistance. These technologies have identified distinct molecular subtypes (hypoxic, proliferative, and immunoreactive) and epithelial states (cytokeratin⁺, immune-interacting, and senescent), while uncovering HPV-driven oncogenic mechanisms, including viral integration hotspots (e. g. , 8q24. 21) and immune evasion strategies (e. g. , SPP1⁺ TAMs and GALNT3-mediated immunosuppression). Metabolic reprogramming further stratifies tumors into spatially organized Warburg effect and OXPHOS-dominant niches, each associated with unique immune infiltration patterns.

The TME exhibits a complex interplay between exhausted PD-1⁺LAG3⁺TIM3⁺ T cells, immunosuppressive stromal cells (MYH9⁺ CAFs, PODXL⁺ ECs), and rare but potent effector populations (FGFBP2⁺ NK cells, CXCL13⁺ TRMs). Despite these advances, clinical translation faces challenges, including resistance mechanisms (NFKB1 mutations, BCL10⁺ Treg suppression) and a lack of inhibitors for key targets (PCLAF⁺ TAEpis, MYH9⁺ CAFs).

Promising therapeutic strategies include epigenetic modulation (SALL4), sialylation inhibition (GALNT3/12), and immune-stromal co-targeting (PD-1 + LAG3/TIM3, NRG1-ERBB3 blockade). Future efforts must prioritize functional validation of novel targets (DKK2, ELF3), spatial multi-omics to resolve CAF-immune-metabolic crosstalk, and biomarker-driven clinical trials integrating single-cell classifiers.

By bridging single-cell insights with mechanistic and translational studies, the field can overcome stromal-mediated resistance and usher in an era of precision immunotherapy for CC.

论文信息

作者
Pu C、Xing B、Wang S、Liu Z、Zhao Y
第一作者单位
Cancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China.China
通讯作者单位
Cancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China. yingchaozhao@icloud.com.China
文献类型
综述
期刊
Molecular and cellular biochemistry2026 Feb
原文标识
PubMed 41199110 · DOI 10.1007/s11010-025-05407-8