PO.CL01.12 · 临床研究

整合空间与单细胞图谱分析揭示一个预先存在的、治疗耐药的亚克隆驱动管腔型乳腺癌的早期局部复发

Integrated spatial and single-cell profiling uncovers a pre-existing, treatment-resistant subclone that drives early local relapse in luminal breast cancer

海报缩略图:整合空间与单细胞图谱分析揭示一个预先存在的、治疗耐药的亚克隆驱动管腔型乳腺癌的早期局部复发
编号 1210 展板 11 时间 4/19 02:00–05:00 区域 Section 47 主讲 Kazutaka Otsuji, MD;PhD
分会场 Spatial Proteomics and Transcriptomics 1
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作者与单位 Authors & Affiliations

Kazutaka Otsuji1, Tomo Osako2, Yoko Takahashi3, Chikako Shibata4, Sumito Saeki4, Asumi Iesato1, Tetsuo Noda5, Kengo Takeuchi2, Takayuki Ueno3, Reo Maruyama4

1NEXT-Ganken Program, Japanese Foundation for Cancer Research, Koto-ku, Tokyo, Japan,2Division of Pathology, Cancer Institute, Japanese Foundation for Cancer Research, Koto-ku, Tokyo, Japan,3Breast Oncology Center, Cancer Institute Hospital of JFCR, Japanese Foundation for Cancer Research, Koto-ku, Tokyo, Japan,4Division of Cancer Epigenomics, Cancer Institute, Japanese Foundation for Cancer Research, Koto-ku, Tokyo, Japan,5Director's room, Japanese Foundation for Cancer Research, Koto-ku, Tokyo, Japan

摘要 Abstract

中文摘要
背景 激素受体(HR)阳性乳腺癌在辅助内分泌治疗期间的早期局部复发虽不常见,但可能反映了具有内在耐药性的预先存在亚克隆群体的选择。虽然内分泌耐药已与异常的细胞周期激活和雌激素信号减弱相关联,但肿瘤内耐药亚克隆的空间组织和转录演变仍未得到充分阐明。 方法 我们使用10x Visium和Xenium空间转录组平台,对配对的原发和早期局部复发肿瘤标本进行多模态图谱分析。此外,对切除前从复发病灶获取的诊断性空芯针活检进行了单细胞(sc)RNA测序。对Visium数据应用空间inferCNV,以无偏方式描绘克隆结构并识别推定的恶性亚克隆。通过差异表达和通路富集分析表征克隆特异性转录程序。将来自复发scRNA-seq簇的基因特征通过计算投影到匹配的空间转录组数据上,以高空间分辨率绘制亚克隆特异性转录表型。对原发肿瘤的Xenium分析用于评估与耐药和应答克隆相关的局部微环境特征。 结果 空间inferCNV揭示了原发肿瘤与复发肿瘤之间显著的克隆重塑:一个具有独特拷贝数特征的次要原发肿瘤亚克隆不成比例地扩增,并在复发时成为主导恶性群体。scRNA-seq表明,对应于该保守克隆的转录簇表现出E2F靶点和G2/M检查点活性增加,同时雌激素应答信号减弱,与雌激素非依赖性增殖表型一致。对原发肿瘤Xenium数据的单细胞分辨率分析显示,富集耐药克隆的区域与由治疗应答亚克隆主导的区域相比,T淋巴细胞密度较低,提示早期空间分隔和微环境差异,这可能促进了内分泌治疗下的选择性存活。 结论 这项对一例罕见快速复发HR阳性乳腺癌病例的整合空间与单细胞分析表明,一个转录上独特的、雌激素非依赖性、E2F驱动的亚克隆已嵌入原发肿瘤内,随后播散引起早期局部复发。这些发现凸显了多模态转录组学揭示临床隐匿性耐药亚克隆的能力,并为识别尽管接受标准辅助内分泌治疗仍存在早期复发风险的患者提供了框架。
查看英文原文 English abstract
Background Early local relapse during adjuvant endocrine therapy in hormone receptor (HR)-positive breast cancer, although uncommon, may reflect selection of pre-existing subclonal populations with intrinsic resistance. While endocrine resistance has been linked to aberrant cell-cycle activation and attenuated estrogen signaling, the spatial organization and transcriptional evolution of resistant subclones within tumors remain insufficiently resolved. Methods We performed multimodal profiling of paired primary and early local-relapse tumor specimens using the 10x Visium and Xenium spatial transcriptomics platforms. Additionally, a diagnostic core-needle biopsy obtained from the relapse lesion before resection underwent single-cell (sc) RNA sequencing. Spatial inferCNV was applied to Visium data to delineate clonal architecture and identify putative malignant subclones in an unbiased manner. Clone-specific transcriptional programs were characterized through differential expression and pathway enrichment analyses. Gene signatures derived from relapse scRNA-seq clusters were computationally projected onto the matched spatial transcriptomics data to map subclone-specific transcriptional phenotypes with high spatial resolution. Xenium profiling of the primary tumor was used to evaluate local microenvironmental features associated with resistant and responsive clones. Results Spatial inferCNV revealed marked clonal remodeling between the primary and relapse tumors: a minor primary-tumor subclone with distinct copy-number features expanded disproportionately and became the dominant malignant population at relapse. scRNA-seq demonstrated that transcriptional clusters corresponding to this conserved clone exhibited increased E2F target and G2/M checkpoint activity, concomitant with reduced estrogen-responsive signaling, consistent with an estrogen-independent proliferative phenotype. Single-cell resolution analysis of Xenium data from the primary tumor revealed that regions enriched for the resistant clone exhibited lower T-lymphocyte density compared to areas dominated by treatment-responsive subclones, suggesting early spatial segregation and microenvironmental differences that may have facilitated selective survival under endocrine therapy. Conclusions This integrated spatial and single-cell analysis of a rare rapid-relapse HR-positive breast cancer case demonstrates that a transcriptionally distinct, estrogen-independent, E2F-driven subclone was already embedded within the primary tumor and later seeded early local recurrence. These findings highlight the power of multimodal transcriptomics to uncover clinically occult resistant subclones and provide a framework for identifying patients at risk of early relapse despite standard adjuvant endocrine therapy.
利益披露 Disclosure
K. Otsuji, None.. T. Osako, None.. Y. Takahashi, None.. C. Shibata, None.. S. Saeki, None.. A. Iesato, None.. T. Noda, None.. K. Takeuchi, None.. T. Ueno, None.. R. Maruyama, None.

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