Tissue-Specific Macrophage Responses to Remote Injury Impact the Outcome of Subsequent Local Immune Challenge

Autor: Kevin R. King, Ralph Weissleder, Sylvie Breton, Yuan Sun, David Rohde, Partha Dutta, Maximilian J. Schloss, Peter Libby, Atsushi Anzai, Fanny Herisson, David M Calcagno, Mikael J. Pittet, Matthias Nahrendorf, Christopher Garris, Katrien Vandoorne, Gabriel Courties, Michael J. Whalen, Anil V. Nair, Vanessa Frodermann, Filip K. Swirski, Kamila Naxerova, Maarten Hulsmans, Yoshiko Iwamoto, Friedrich Felix Hoyer, David L. Williams, Gregory R. Wojtkiewicz, Dennis Brown
Rok vydání: 2019
Předmět:
0301 basic medicine
Disease Susceptibility/immunology
Myocardial Infarction
Cell Count
Systemic inflammation
Health Services Accessibility
Mice
0302 clinical medicine
Ischemia
Gene expression
Immunology and Allergy
Gene Regulatory Networks
Myocardial infarction
Muscle Cells/immunology/metabolism
Kidney
ErbB Receptors/metabolism
Myocardial Infarction/etiology/metabolism
Pneumonia/etiology/metabolism/pathology
3. Good health
ErbB Receptors
Infectious Diseases
medicine.anatomical_structure
Nephrology
Organ Specificity
030220 oncology & carcinogenesis
Organ Specificity/genetics/immunology
Disease Susceptibility
medicine.symptom
medicine.medical_specialty
Macrophages/immunology/metabolism
Immunology
MEDLINE
Biology
Lung injury
Article
Sepsis
03 medical and health sciences
Immune system
Macrophages
Alveolar

medicine
Animals
Intensive care medicine
Ischemia/etiology/metabolism
Muscle Cells
Lung
business.industry
Gene Expression Profiling
Macrophages
Pneumonia
medicine.disease
030104 developmental biology
Gene Expression Regulation
Alveolar/immunology/metabolism
business
Biomarkers
Zdroj: Immunity
Immunity, Vol. 51, No 5 (2019) pp. 899-914.e7
ISSN: 1074-7613
DOI: 10.1016/j.immuni.2019.10.010
Popis: Myocardial infarction, stroke, and sepsis trigger systemic inflammation and organism-wide complications that are difficult to manage. Here, we examined the contribution of macrophages residing in vital organs to the systemic response after these injuries. We generated a comprehensive catalog of changes in macrophage number, origin, and gene expression in the heart, brain, liver, kidney, and lung of mice with myocardial infarction, stroke, or sepsis. Predominantly fueled by heightened local proliferation, tissue macrophage numbers increased systemically. Macrophages in the same organ responded similarly to different injuries by altering expression of tissue-specific gene sets. Preceding myocardial infarction improved survival of subsequent pneumonia due to enhanced bacterial clearance, which was caused by IFNɣ priming of alveolar macrophages. Conversely, EGF receptor signaling in macrophages exacerbated inflammatory lung injury. Our data suggest that local injury activates macrophages in remote organs and that targeting macrophages could improve resilience against systemic complications following myocardial infarction, stroke, and sepsis.
Databáze: OpenAIRE