PO.CL01.12 · 临床研究
MONSTAR-SCREEN-3空间图谱:泛癌TME原型及临床相关的肿瘤-免疫生态系统
The MONSTAR-SCREEN-3 Spatial Atlas: Pan-cancer TME archetypes and clinically relevant tumor-immune ecosystems
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:SCRUM-Japan MONSTAR-SCREEN联盟是一项全国性分子分析计划,涵盖除肺癌和血液系统恶性肿瘤外的所有实体瘤。新一代MONSTAR-SCREEN-3(M3)项目纳入空间转录组学,通过整合新型模态解码支配治疗应答的肿瘤微环境(TME)结构,实现"量子飞跃"。本研究呈现来自初始M3数据集的基础性泛癌空间图谱。
方法:MONSTAR-3纳入约3,200例病例,正在对符合条件的标本进行空间分析。其中,分析了21种实体瘤类型的331份FFPE肿瘤。空间分析在标准化NCCE-GxD工作流程内使用Xenium 5K平台(NCCE组织制备,GxD Xenium处理;约10周流程)。细胞类型采用跨四条流程的共识框架进行注释。恶性上皮细胞通过整合空间背景、转录特征及病理学家指导的审查,与良性上皮相区分。我们量化了恶性程序异质性,并识别出与临床变量相关的共享及独特空间生态位。
结果:我们生成了包含约2000万个细胞的高置信度空间图谱。在21种肿瘤类型中,TME组织为保守的泛癌空间生态系统原型,可分层预后和治疗应答。恶性程序的空间异质性与晚期疾病相关。我们还界定了15个保守的泛癌细胞生态位(元聚类,metacluster),各具独特的组成和空间结构。其中,出现了两种肿瘤-基质界面原型:MC9,一种固有免疫丰富的界面;MC5,一种淋巴细胞为主的界面。MC9生态位在晚期肿瘤中显著富集,随TNM分期升高其流行率增加,其衍生特征在既往队列(如TCGA)中与不良预后相关。相反,B细胞为主(MC10)及B细胞/CD4+ T细胞丰富(MC14)的生态位与良好结局相关。这些淋巴细胞为主的结构进一步解析为简单聚集体、初级滤泡和提示TLS形成的次级滤泡。次级滤泡特征在一个独立的免疫治疗队列中与改善的预后和应答相关。
结论:本研究呈现了最大规模的泛癌空间转录组图谱之一,并确立了M3的一个基础组成部分。我们提供了一个用于分析空间转录组学及保守的、临床可操作的空间生态系统的稳健框架。该资源为SCRUM-Japan框架内空间驱动的患者分层、下一代生物标志物开发及加速精准肿瘤学铺平了道路。
查看英文原文 English abstract
Background: The SCRUM-Japan MONSTAR-SCREEN consortium is a nationwide molecular profiling initiative spanning all solid tumors except lung cancer and hematologic malignancies. The next-generation MONSTAR-SCREEN-3 (M3) project incorporates spatial transcriptomics to achieve a "quantum leap" by integrating novel modalities to decode the tumor microenvironment (TME) architecture governing therapeutic response. This study presents the foundational pan-cancer spatial atlas from the initial M3 dataset.
Methods: MONSTAR-3 enrolls ~3,200 cases, and spatial analysis is being performed on eligible specimens. Among these, 331 FFPE tumors across 21 solid types were analyzed. Spatial profiling used the Xenium 5K platform within a standardized NCCE-GxD workflow (NCCE tissue preparation, GxD Xenium processing; ~10-week pipeline). Cell types were annotated using a consensus framework across four pipelines. Malignant epithelial cells were distinguished from benign epithelium through integrated spatial context, transcriptional features, and pathologist-guided review. We quantified malignant program heterogeneity and identified shared and distinct spatial niches linked to clinical variables.
Results: We generated a high-confidence spatial atlas comprising ~20 million cells. Across 21 tumor types, TME was organized into conserved, pan-cancer spatial ecosystem archetypes that stratified prognosis and therapeutic response. Spatial heterogeneity in malignant programs correlated with advanced disease. We also defined 15 conserved pan-cancer cellular niches (metaclusters), each with distinct compositions and spatial architectures. Among these, two tumor-stromal interface archetypes emerged: MC9, an innate-immune-rich interface, and MC5, a lymphocyte-dominant interface. The MC9 niche was significantly enriched in the advanced-stage tumors, showed increasing prevalence with higher TNM stages, and its derived signatures were associated with poor prognosis in legacy cohorts (e.g., TCGA). Conversely, B-cell-dominant (MC10) and B-cell/CD4+ T-cell-rich (MC14) niches were associated with favorable outcomes. These lymphocyte-dominant structures were further resolved into simple aggregates, primary follicles, and secondary follicles indicative of TLS formation. Secondary follicle signatures correlated with improved prognosis and response in an independent immunotherapy-treated cohort.
Conclusions: This study presents one of the largest pan-cancer spatial transcriptomic atlases and establishes a foundational component of the M3. We provide a robust framework for analyzing spatial transcriptomics and conserved, clinically actionable spatial ecosystems. This resource paves the way for spatially-driven patient stratification, next-generation biomarker development, and accelerated precision oncology within the SCRUM-Japan framework.
利益披露 Disclosure
M. Imai,
Exact Science Other, honoraia..
CARIS Other, honoraia.
E. Seo,
GxD Inc Employment.
Geninus Inc. Employment.
J. Hyeon,
GxD.Inc Employment.
Geninus Inc. Employment.
S. Sakashita, None..
Y. Nakamura, None..
T. Hashimoto, None..
S. Kobayashi, None..
J. Yuda, None..
R. Yamashita, None..
T. Shibuki, None.
T. Fujisawa,
Amelieff Other, honoraia.
AstraZeneca Other, honoraia.
MSD Other, honoraia.
M. Amisaki,
GxD.Inc Employment.
VLP Therapeutics Other, Lecture fee.
K. Matsuda,
Chugai Pharmaceutical Other, honoraia..
Kyowa Hakkou Kirin Other, honoraia..
S. Kageyama, None..
M. Nagamine, None.
W. Park,
GxD Inc g., Board of Directors, non-salaried role).
Geninus Inc. g., Board of Directors, non-salaried role).
T. Yoshino,
Chugai Pharmaceutical Other, honoraia.
MSD K.K. Other, honoraia.
Merck Biopharma Other, honoraia.
Ono Pharmaceutical Other, honoraia.
Takeda Pharmaceutical Other, honoraia.