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Epigenetic Mechanisms in Monocytes/Macrophages Regulate Inflammation in  Cardiometabolic and Vascular Disease | Arteriosclerosis, Thrombosis, and  Vascular Biology
Epigenetic Mechanisms in Monocytes/Macrophages Regulate Inflammation in Cardiometabolic and Vascular Disease | Arteriosclerosis, Thrombosis, and Vascular Biology

Epigenetic Mechanisms in Monocytes/Macrophages Regulate Inflammation in  Cardiometabolic and Vascular Disease | Arteriosclerosis, Thrombosis, and  Vascular Biology
Epigenetic Mechanisms in Monocytes/Macrophages Regulate Inflammation in Cardiometabolic and Vascular Disease | Arteriosclerosis, Thrombosis, and Vascular Biology

Endothelial cells instruct macrophages on how to Rspond to lung injury |  Nature Immunology
Endothelial cells instruct macrophages on how to Rspond to lung injury | Nature Immunology

Metabolic–epigenetic crosstalk in macrophage activation | Epigenomics
Metabolic–epigenetic crosstalk in macrophage activation | Epigenomics

Epigenetic regulation of macrophages: from homeostasis maintenance to host  defense | Cellular & Molecular Immunology
Epigenetic regulation of macrophages: from homeostasis maintenance to host defense | Cellular & Molecular Immunology

Epigenetic Control of Macrophage Polarisation and Soluble Mediator Gene  Expression during Inflammation
Epigenetic Control of Macrophage Polarisation and Soluble Mediator Gene Expression during Inflammation

Palmitate-TLR4 Signaling Regulates Epigenetic Modifications in Macrophages  and Impairs Diabetic Wound Healing - Journal of Vascular Surgery
Palmitate-TLR4 Signaling Regulates Epigenetic Modifications in Macrophages and Impairs Diabetic Wound Healing - Journal of Vascular Surgery

Frontiers | The Impact of Type 1 Interferons on Alveolar Macrophage  Tolerance and Implications for Host Susceptibility to Secondary Bacterial  Pneumonia | Immunology
Frontiers | The Impact of Type 1 Interferons on Alveolar Macrophage Tolerance and Implications for Host Susceptibility to Secondary Bacterial Pneumonia | Immunology

miR-155 and miR-146a share common regulatory events during macrophage... |  Download Scientific Diagram
miR-155 and miR-146a share common regulatory events during macrophage... | Download Scientific Diagram

Transcriptional repression in macrophages—basic mechanisms and alterations  in metabolic inflammatory diseases - Treuter - 2017 - FEBS Letters - Wiley  Online Library
Transcriptional repression in macrophages—basic mechanisms and alterations in metabolic inflammatory diseases - Treuter - 2017 - FEBS Letters - Wiley Online Library

β-Glucan Reverses the Epigenetic State of LPS-Induced Immunological  Tolerance - ScienceDirect
β-Glucan Reverses the Epigenetic State of LPS-Induced Immunological Tolerance - ScienceDirect

Epigenetic Mechanisms in Monocytes/Macrophages Regulate Inflammation in  Cardiometabolic and Vascular Disease | Arteriosclerosis, Thrombosis, and  Vascular Biology
Epigenetic Mechanisms in Monocytes/Macrophages Regulate Inflammation in Cardiometabolic and Vascular Disease | Arteriosclerosis, Thrombosis, and Vascular Biology

Epigenetic Regulation of Monocyte and Macrophage Function | Antioxidants &  Redox Signaling
Epigenetic Regulation of Monocyte and Macrophage Function | Antioxidants & Redox Signaling

Epigenetic regulation of macrophages: from homeostasis maintenance to host  defense | Cellular & Molecular Immunology
Epigenetic regulation of macrophages: from homeostasis maintenance to host defense | Cellular & Molecular Immunology

Epigenetic regulation of macrophages: from homeostasis maintenance to host  defense | Cellular & Molecular Immunology
Epigenetic regulation of macrophages: from homeostasis maintenance to host defense | Cellular & Molecular Immunology

Requirement for the histone deacetylase Hdac3 for the inflammatory gene  expression program in macrophages | PNAS
Requirement for the histone deacetylase Hdac3 for the inflammatory gene expression program in macrophages | PNAS

Epigenetic Regulation of TLR4 in Diabetic Macrophages Modulates  Immunometabolism and Wound Repair | The Journal of Immunology
Epigenetic Regulation of TLR4 in Diabetic Macrophages Modulates Immunometabolism and Wound Repair | The Journal of Immunology

Chronic heavy drinking drives distinct transcriptional and epigenetic  changes in splenic macrophages - EBioMedicine
Chronic heavy drinking drives distinct transcriptional and epigenetic changes in splenic macrophages - EBioMedicine

Metabolic–epigenetic crosstalk in macrophage activation | Epigenomics
Metabolic–epigenetic crosstalk in macrophage activation | Epigenomics

The altered patterns of histone modifications in the regulation of... |  Download Scientific Diagram
The altered patterns of histone modifications in the regulation of... | Download Scientific Diagram

Global Modulation in DNA Epigenetics during Pro-Inflammatory Macrophage  Activation | bioRxiv
Global Modulation in DNA Epigenetics during Pro-Inflammatory Macrophage Activation | bioRxiv

Targeting Macrophage Histone H3 Modification as a Leishmania Strategy to  Dampen the NF-κB/NLRP3-Mediated Inflammatory Response - ScienceDirect
Targeting Macrophage Histone H3 Modification as a Leishmania Strategy to Dampen the NF-κB/NLRP3-Mediated Inflammatory Response - ScienceDirect

Leishmania donovani Subverts Host Immune Response by Epigenetic  Reprogramming of Macrophage M(Lipopolysaccharides + IFN-γ)/M(IL-10)  Polarization | The Journal of Immunology
Leishmania donovani Subverts Host Immune Response by Epigenetic Reprogramming of Macrophage M(Lipopolysaccharides + IFN-γ)/M(IL-10) Polarization | The Journal of Immunology

Frontiers | LPS-Challenged Macrophages Release Microvesicles Coated With  Histones | Immunology
Frontiers | LPS-Challenged Macrophages Release Microvesicles Coated With Histones | Immunology

Epigenetic Mechanisms in Monocytes/Macrophages Regulate Inflammation in  Cardiometabolic and Vascular Disease | Arteriosclerosis, Thrombosis, and  Vascular Biology
Epigenetic Mechanisms in Monocytes/Macrophages Regulate Inflammation in Cardiometabolic and Vascular Disease | Arteriosclerosis, Thrombosis, and Vascular Biology

Human monocyte-to-macrophage differentiation involves highly localized gain  and loss of DNA methylation at transcription factor binding sites |  Epigenetics & Chromatin | Full Text
Human monocyte-to-macrophage differentiation involves highly localized gain and loss of DNA methylation at transcription factor binding sites | Epigenetics & Chromatin | Full Text