表型
乳腺癌
生物
质量细胞仪
背景(考古学)
基因组学
癌症
计算生物学
细胞
间质细胞
转录组
基因组
癌症研究
遗传学
基因
基因表达
古生物学
作者
H. Raza Ali,Hartland W. Jackson,Vito Riccardo Tomaso Zanotelli,Esther Danenberg,Jana Fischer,Helen Bardwell,Elena Provenzano,H. Raza Ali,M. Al Sa’d,Shahar Alon,Samuel Aparício,Giorgia Battistoni,Shankar Balasubramanian,Robert Becker,Bernd Bodenmiller,E. S. Boyden,Dario Bressan,Alejandra Bruna,B. Marcel,Carlos Caldas
出处
期刊:Nature cancer
[Nature Portfolio]
日期:2020-02-17
卷期号:1 (2): 163-175
被引量:261
标识
DOI:10.1038/s43018-020-0026-6
摘要
Genomic alterations shape cell phenotypes and the structure of tumor ecosystems in poorly defined ways. To investigate these relationships, we used imaging mass cytometry to quantify the expression of 37 proteins with subcellular spatial resolution in 483 tumors from the METABRIC cohort. Single-cell analysis revealed cell phenotypes spanning epithelial, stromal and immune types. Distinct combinations of cell phenotypes and cell–cell interactions were associated with genomic subtypes of breast cancer. Epithelial luminal cell phenotypes separated into those predominantly impacted by mutations and those affected by copy number aberrations. Several features of tumor ecosystems, including cellular neighborhoods, were linked to prognosis, illustrating their clinical relevance. In summary, systematic analysis of single-cell phenotypic and spatial correlates of genomic alterations in cancer revealed how genomes shape both the composition and architecture of breast tumor ecosystems and will enable greater understanding of the phenotypic impact of genomic alterations. Bodenmiller and colleagues pair imaging mass cytometry with data from the METABRIC cohort to define single-cell phenotypic and genomic features of breast cancer with spatial context, finding associations with breast cancer subtypes and prognosis.
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