A Single-Cell Atlas of the Tumor and Immune Ecosystem of Human Breast Cancer
Author(s) -
Johanna Wagner,
Maria Anna Rapsomaniki,
Stéphane Chevrier,
Tobias Anzeneder,
Claus Langwieder,
A Dykgers,
Martin Rees,
Annette Ramaswamy,
Simone Muenst,
Savas D. Soysal,
Alice K. Jacobs,
Jonas Windhager,
Karīna Siliņa,
Maries van den Broek,
Konstantin J. Dedes,
María Rodríguez Martínez,
William P. Weber,
Bernd Bodenmiller
Publication year - 2019
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2019.03.005
Subject(s) - biology , atlas (anatomy) , breast cancer , human breast , immune system , ecosystem , cancer , ecology , computational biology , immunology , genetics , anatomy
Breast cancer is a heterogeneous disease. Tumor cells and associated healthy cells form ecosystems that determine disease progression and response to therapy. To characterize features of breast cancer ecosystems and their associations with clinical data, we analyzed 144 human breast tumor and 50 non-tumor tissue samples using mass cytometry. The expression of 73 proteins in 26 million cells was evaluated using tumor and immune cell-centric antibody panels. Tumors displayed individuality in tumor cell composition, including phenotypic abnormalities and phenotype dominance. Relationship analyses between tumor and immune cells revealed characteristics of ecosystems related to immunosuppression and poor prognosis. High frequencies of PD-L1 + tumor-associated macrophages and exhausted T cells were found in high-grade ER + and ER - tumors. This large-scale, single-cell atlas deepens our understanding of breast tumor ecosystems and suggests that ecosystem-based patient classification will facilitate identification of individuals for precision medicine approaches targeting the tumor and its immunoenvironment.
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