Single-cell spatial immune landscapes of primary and metastatic brain tumours

被引:0
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作者
Elham Karimi
Miranda W. Yu
Sarah M. Maritan
Lucas J. M. Perus
Morteza Rezanejad
Mark Sorin
Matthew Dankner
Parvaneh Fallah
Samuel Doré
Dongmei Zuo
Benoit Fiset
Daan J. Kloosterman
LeeAnn Ramsay
Yuhong Wei
Stephanie Lam
Roa Alsajjan
Ian R. Watson
Gloria Roldan Urgoiti
Morag Park
Dieta Brandsma
Donna L. Senger
Jennifer A. Chan
Leila Akkari
Kevin Petrecca
Marie-Christine Guiot
Peter M. Siegel
Daniela F. Quail
Logan A. Walsh
机构
[1] McGill University,Rosalind and Morris Goodman Cancer Institute
[2] McGill University,Department of Physiology, Faculty of Medicine
[3] McGill University,Department of Medicine, Division of Experimental Medicine
[4] University of Toronto,Departments of Psychology and Computer Science
[5] McGill University,Department of Human Genetics, Faculty of Medicine
[6] McGill University,Gerald Bronfman Department of Oncology
[7] Netherlands Cancer Institute,Division of Tumor Biology and Immunology, Oncode Institute
[8] McGill University,Department of Diagnostic Radiology, Faculty of Medicine
[9] King Saud University College of Medicine,Department of Medicine, Division of Neurology
[10] McGill University,Department of Neurology and Neurosurgery, Faculty of Medicine
[11] McGill University,Department of Biochemistry, Faculty of Medicine
[12] University of Calgary,Department of Oncology
[13] University of Calgary,Arnie Charbonneau Cancer Institute
[14] Antoni van Leeuwenhoek Hospital,Department of Neuro
[15] Jewish General Hospital,Oncology, Netherlands Cancer Institute
[16] University of Calgary,Lady Davis Institute for Medical Research
[17] McGill University Health Centre,Department of Pathology and Laboratory Medicine
[18] McGill University,Montreal Neurological Institute
[19] McGill University,Hospital
来源
Nature | 2023年 / 614卷
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摘要
Single-cell technologies have enabled the characterization of the tumour microenvironment at unprecedented depth and have revealed vast cellular diversity among tumour cells and their niche. Anti-tumour immunity relies on cell–cell relationships within the tumour microenvironment1,2, yet many single-cell studies lack spatial context and rely on dissociated tissues3. Here we applied imaging mass cytometry to characterize the immunological landscape of 139 high-grade glioma and 46 brain metastasis tumours from patients. Single-cell analysis of more than 1.1 million cells across 389 high-dimensional histopathology images enabled the spatial resolution of immune lineages and activation states, revealing differences in immune landscapes between primary tumours and brain metastases from diverse solid cancers. These analyses revealed cellular neighbourhoods associated with survival in patients with glioblastoma, which we leveraged to identify a unique population of myeloperoxidase (MPO)-positive macrophages associated with long-term survival. Our findings provide insight into the biology of primary and metastatic brain tumours, reinforcing the value of integrating spatial resolution to single-cell datasets to dissect the microenvironmental contexture of cancer.
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页码:555 / 563
页数:8
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