PO.CL01.14 · 临床研究
MERFISH 2.0实现高灵敏度、可定制的空间转录组学,用于解析人类癌症中的免疫和肿瘤程序
MERFISH 2.0 enables high-sensitivity, customizable spatial transcriptomics for resolving immune and tumor programs in human cancers
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
基于成像、具有单细胞分辨率的高重数空间转录组学,极大地推进了我们对异质性肿瘤生态系统如何在人类肿瘤微环境(TME)中塑造免疫结构与功能、靶点表达以及细胞-细胞界面动态的理解。通过直接在完整的人体组织中测量基因表达,空间转录组学为免疫细胞身份、空间组织以及支配抗肿瘤活性或免疫抑制的分子程序提供了详尽的见解。原位解析转录本能够精确刻画免疫细胞状态、空间相互作用以及支撑抗肿瘤反应和情境依赖性细胞表型的调控回路。当前空间转录组学方法的一个关键局限在于在复杂且异质的人类肿瘤中灵敏检测转录本的能力,尤其是在研究需要聚焦探究特定通路或细胞程序时。MERFISH 2.0凭借增强的化学体系和精简的样本处理流程克服了这些限制,在冰冻组织和FFPE组织中均可实现显著更高的转录本检测效率,能够对多达1,000个基因的panel进行稳健的分析。基于灵敏度和流程性能的这些改进,MERFISH 2.0还提供了在预设计panel(PdP)中添加多达100个自定义基因的灵活性,使研究人员能够根据特定假设、肿瘤内在生物学或新兴临床特征来定制实验。在本研究中,MERFISH 2.0被应用于人类肿瘤标本,采用一个以免疫肿瘤学为焦点的815基因PdP,并补充了经筛选的自定义基因内容,以捕捉多种肿瘤类型和疾病分期中的关键生物学过程。在MERSCOPE® Ultra™载玻片上的实施生成了高分辨率空间图谱,解析了特定细胞群体的分布、目标表面和胞内标志物的定位,以及完整组织环境中免疫浸润、基质结构和肿瘤内在转录程序的复杂组织。以定制基因集扩充MERFISH 2.0 panel的能力进一步拓展了其在剖析影响通路参与和功能活性的TME分子特征与空间模式方面的效用。通过将增强的灵敏度与可定制的panel设计相整合,MERFISH 2.0提供了一个强大的平台,用于解析免疫功能和肿瘤行为的空间决定因素,支持机制发现并为下一代精准医学策略的开发提供信息。
查看英文原文 English abstract
High-plex, imaging-based spatial transcriptomics with single-cell resolution has substantially advanced our understanding of how heterogeneous tumor ecosystems shape immune architecture and function, target expression, and cell-cell interface dynamics within the human tumor microenvironment (TME). By measuring gene expression directly in intact human tissues, spatial transcriptomics provides detailed insights into immune-cell identity, spatial organization, and molecular programs that govern antitumor activity or immune suppression. Resolving transcripts in situ enables precise delineation of immune-cell states, spatial interactions, and regulatory circuits underlying antitumor responses and context-dependent cellular phenotypes. A key limitation of current spatial transcriptomics approaches is the ability to sensitively detect transcripts across complex and heterogeneous human tumors, particularly when studies require focused interrogation of specific pathways or cellular programs. MERFISH 2.0 overcomes these constraints with an enhanced chemistry and streamlined sample-processing workflow that delivers substantially higher transcript detection efficiency in both frozen and FFPE tissue, enabling robust profiling of panels up to 1,000 genes. Building on these improvements in sensitivity and workflow performance, MERFISH 2.0 also provides the flexibility to add up to 100 custom genes to Pre-designed Panels (PdP), enabling researchers to tailor experiments to specific hypotheses, tumor-intrinsic biology, or emerging clinical signatures. In this study, MERFISH 2.0 was applied to human tumor specimens using an 815-gene PdP with an immune-oncology focus, supplemented with custom gene content selected to capture key biological processes across diverse tumor types and disease stages. Implementation on MERSCOPE® Ultra™ slides generated high-resolution spatial maps that resolved the distribution of specific cell populations, the localization of surface and intracellular markers of interest, and the complex organization of immune infiltrates, stromal architecture, and tumor-intrinsic transcriptional programs within intact tissue environments. The ability to augment MERFISH 2.0 panels with tailored gene sets further expands its utility for dissecting molecular features and spatial patterns of the TME that influence pathway engagement and functional activity. By integrating enhanced sensitivity with customizable panel design, MERFISH 2.0 provides a powerful platform for resolving spatial determinants of immune function and tumor behavior, supporting mechanistic discovery and informing the development of next-generation precision medicine strategies.
利益披露 Disclosure
R. Chen, None..
B. Wang, None..
B. Yang, None..
M. Ray, None..
J. He, None..
T. Wiggin, None..
L. Maziashvili, None..
A. Genshaft, None..
P. Reinhold, None..
A. Vasaturo, None..
J. He, None.