Engrafted parenchymal brain macrophages differ from microglia in transcriptome, chromatin landscape and response to challenge

Irradiation depletes brain microglia cells and induces replenishment of the pool by bone marrow (BM)-derived macrophage. Here the authors show, using mouse BM chimera, that BM-derived macrophages establish long-term residency in the brain, but remain distinct from resident microglia in their transcr...

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Main Authors: Anat Shemer, Jonathan Grozovski, Tuan Leng Tay, Jenhan Tao, Alon Volaski, Patrick Süß, Alberto Ardura-Fabregat, Mor Gross-Vered, Jung-Seok Kim, Eyal David, Louise Chappell-Maor, Lars Thielecke, Christopher K. Glass, Kerstin Cornils, Marco Prinz, Steffen Jung
Format: Article
Language:English
Published: Nature Portfolio 2018-12-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-018-07548-5
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author Anat Shemer
Jonathan Grozovski
Tuan Leng Tay
Jenhan Tao
Alon Volaski
Patrick Süß
Alberto Ardura-Fabregat
Mor Gross-Vered
Jung-Seok Kim
Eyal David
Louise Chappell-Maor
Lars Thielecke
Christopher K. Glass
Kerstin Cornils
Marco Prinz
Steffen Jung
author_facet Anat Shemer
Jonathan Grozovski
Tuan Leng Tay
Jenhan Tao
Alon Volaski
Patrick Süß
Alberto Ardura-Fabregat
Mor Gross-Vered
Jung-Seok Kim
Eyal David
Louise Chappell-Maor
Lars Thielecke
Christopher K. Glass
Kerstin Cornils
Marco Prinz
Steffen Jung
author_sort Anat Shemer
collection DOAJ
description Irradiation depletes brain microglia cells and induces replenishment of the pool by bone marrow (BM)-derived macrophage. Here the authors show, using mouse BM chimera, that BM-derived macrophages establish long-term residency in the brain, but remain distinct from resident microglia in their transcriptome and gene accessibility landscape.
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spelling doaj.art-9f28b09877e64569b86de53bc87671682022-12-21T21:27:23ZengNature PortfolioNature Communications2041-17232018-12-019111610.1038/s41467-018-07548-5Engrafted parenchymal brain macrophages differ from microglia in transcriptome, chromatin landscape and response to challengeAnat Shemer0Jonathan Grozovski1Tuan Leng Tay2Jenhan Tao3Alon Volaski4Patrick Süß5Alberto Ardura-Fabregat6Mor Gross-Vered7Jung-Seok Kim8Eyal David9Louise Chappell-Maor10Lars Thielecke11Christopher K. Glass12Kerstin Cornils13Marco Prinz14Steffen Jung15Department of Immunology, Weizmann Institute of ScienceDepartment of Immunology, Weizmann Institute of ScienceCluster of Excellence BrainLinks-BrainTools, University of FreiburgDepartment of Cellular and Molecular Medicine, University of California, San DiegoDepartment of Immunology, Weizmann Institute of ScienceInstitute of Neuropathology, Medical Faculty, University of FreiburgInstitute of Neuropathology, Medical Faculty, University of FreiburgDepartment of Immunology, Weizmann Institute of ScienceDepartment of Immunology, Weizmann Institute of ScienceDepartment of Immunology, Weizmann Institute of ScienceDepartment of Immunology, Weizmann Institute of ScienceInstitute for Medical Informatics and Biometry, Faculty of Medicine Carl Gustav Carus, Technische Universität DresdenDepartment of Cellular and Molecular Medicine, University of California, San DiegoUniversity Medical Center Hamburg-Eppendorf, Department of Pediatric Hematology and Oncology, Division of Pediatric Stem Cell Transplantation and Immunology and Research Institute, Children’s Cancer Center HamburgInstitute of Neuropathology, Medical Faculty, University of FreiburgDepartment of Immunology, Weizmann Institute of ScienceIrradiation depletes brain microglia cells and induces replenishment of the pool by bone marrow (BM)-derived macrophage. Here the authors show, using mouse BM chimera, that BM-derived macrophages establish long-term residency in the brain, but remain distinct from resident microglia in their transcriptome and gene accessibility landscape.https://doi.org/10.1038/s41467-018-07548-5
spellingShingle Anat Shemer
Jonathan Grozovski
Tuan Leng Tay
Jenhan Tao
Alon Volaski
Patrick Süß
Alberto Ardura-Fabregat
Mor Gross-Vered
Jung-Seok Kim
Eyal David
Louise Chappell-Maor
Lars Thielecke
Christopher K. Glass
Kerstin Cornils
Marco Prinz
Steffen Jung
Engrafted parenchymal brain macrophages differ from microglia in transcriptome, chromatin landscape and response to challenge
Nature Communications
title Engrafted parenchymal brain macrophages differ from microglia in transcriptome, chromatin landscape and response to challenge
title_full Engrafted parenchymal brain macrophages differ from microglia in transcriptome, chromatin landscape and response to challenge
title_fullStr Engrafted parenchymal brain macrophages differ from microglia in transcriptome, chromatin landscape and response to challenge
title_full_unstemmed Engrafted parenchymal brain macrophages differ from microglia in transcriptome, chromatin landscape and response to challenge
title_short Engrafted parenchymal brain macrophages differ from microglia in transcriptome, chromatin landscape and response to challenge
title_sort engrafted parenchymal brain macrophages differ from microglia in transcriptome chromatin landscape and response to challenge
url https://doi.org/10.1038/s41467-018-07548-5
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