研究概要
我们的研究结果首次系统描述了曲妥珠单抗治疗后TME重塑的特征,并确定SPP1+ TAMs是曲妥珠单抗耐药的潜在驱动因素。
中文摘要
基于曲妥珠单抗的HER2靶向治疗仍是HER2阳性乳腺癌的基石治疗。然而,其临床疗效受到肿瘤微环境(TME)的显著调控。我们对临床样本的单细胞测序分析显示,接受基于曲妥珠单抗的新辅助治疗后影像学反应不佳的患者,表现为TIGIT + NK细胞显著富集且免疫检查点高表达、CD8 + T细胞耗竭以及免疫抑制性调节性T细胞(Tregs)增多。进一步利用细胞间通讯、空间转录组学和多色免疫荧光分析表明,SPP1 + 肿瘤相关巨噬细胞(SPP1 + TAMs)富集与影像学反应不佳患者肿瘤中NK细胞和T细胞功能失调状态相关。功能验证研究揭示,SPP1 + TAMs主动诱导NK细胞和CD8 + T细胞的耗竭表型,从而损害曲妥珠单抗依赖的抗体依赖性细胞介导的细胞毒性(ADCC)和适应性免疫应答。使用人源化NCG小鼠模型的体内实验进一步证实了SPP1 + TAMs对NK细胞功能的抑制。值得注意的是,SPP1 TAMs水平升高的HER2阳性乳腺癌患者既表现出曲妥珠单抗新辅助治疗疗效降低,也表现出长期生存前景变差。总之,我们的发现首次系统性地刻画了曲妥珠单抗治疗后的TME重塑,确定SPP1 + TAMs是曲妥珠单抗耐药的潜在驱动因素。这项工作推进了我们对曲妥珠单抗耐药微环境机制的理解,并提出了靶向TAM介导的免疫抑制的新治疗策略。
展开英文摘要原文
Trastuzumab-based HER2-targeted therapy remains the cornerstone treatment for HER2-positive breast cancer. However, its clinical efficacy is significantly modulated by the tumor microenvironment (TME). Our single-cell sequencing analysis of clinical samples revealed that patients with poor radiologic response after trastuzumab-based neoadjuvant therapy presented significant enrichment of TIGIT + NK cells with high immune checkpoint expression, exhausted CD8 + T cells, and immunosuppressive regulatory T cells (Tregs). Further analyses leveraging cell-cell communication, spatial transcriptomics, and multiplex immunofluorescence showed that SPP1 + tumor-associated macrophages (SPP1 + TAMs) enrichment was associated with dysfunctional NK- and T-cell states in tumors from patients with poor radiologic response. Functional validation studies revealed that SPP1 + TAMs actively induced exhaustion phenotypes in both NK cells and CD8 + T cells, thereby impairing trastuzumab-dependent antibody-dependent cellular cytotoxicity (ADCC) and adaptive immune responses. In vivo experiments using humanized NCG murine models further confirmed the SPP1 + TAMs-mediated suppression of NK cell function. Significantly, HER2-positive breast cancer patients with elevated SPP1 TAMs levels experienced both reduced efficacy of trastuzumab neoadjuvant therapy and diminished long-term survival prospects. In summary, our findings provide the first systematic characterization of TME remodeling following trastuzumab therapy, identifying SPP1 + TAMs as a potential driver of trastuzumab resistance. This work advances our understanding of microenvironmental mechanisms underlying trastuzumab resistance and suggests new therapeutic strategies targeting TAM-mediated immunosuppression.
论文信息
- 作者
- Wang D、Li G、Lu Y、Du R、He X、Sun J、Li D、Wang S
- 第一作者单位
- State Key Laboratory of Holistic Integrative Management of Gastrointestinal Cancers, Biotechnology Center, School of Pharmacy, Fourth Military Medical University, Xi'an, People's Republic of China.China
- 通讯作者单位
- State Key Laboratory of Holistic Integrative Management of Gastrointestinal Cancers, Biotechnology Center, School of Pharmacy, Fourth Military Medical University, Xi'an, People's Republic of China. zhangcun@fmmu.edu.cn.China
- 期刊
- Cell communication and signaling : CCS2026 Jul 17