Background: Monocyte-to-macrophage differentiation involves major biochemical and structural changes. In order to elucidate the role of gene regulatory changes during this process, we used high-throughput sequencing to analyze the complete transcriptome and epigenome of human monocytes that were differentiated in vitro by addition of colony-stimulating factor 1 in serum-free medium. Results: Numerous mRNAs and miRNAs were significantly up-or down-regulated. More than 100 discrete DNA regions, most often far away from transcription start sites, were rapidly demethylated by the ten eleven translocation enzymes, became nucleosome-free and gained histone marks indicative of active enhancers. These regions were unique for macrophages and associa...
AbstractThe molecular basis of cellular memory is a fascinating topic that progressed with great str...
Macrophages are key inflammatory immune cells that display dynamic phenotypes and functions in respo...
Monocytes/macrophages are key players in all phases of physiological and pathological inflammation. ...
Background Monocyte-to-macrophage differentiation involves major biochemical and structural changes....
Background: Macrophages and their precursors monocytes play a key role in inflammation and chronic i...
Monocytes and macrophages are key players in tissue homeostasis and immune responses. Epigenetic pro...
Monocyte differentiation into macrophages represents a cornerstone process for host defense. Concomi...
Cellular differentiation is orchestrated by lineage-specific transcription factors and associated wi...
Background Monocytes and macrophages play essential role in innate immunity. Understanding the under...
The differentiation of human blood monocytes (MO), the post-mitotic precursors of macrophages (MAC) ...
Comprehensive analysis of the gene expression profiles associated with human monocyte-to-macrophage ...
Comprehensive analysis of the gene expression profiles associated with human monocyte-to-macrophage ...
Comprehensive analysis of the gene expression profiles associated with human monocyte-to-macrophage ...
The activation of monocytes and their trans-differentiation into macrophages are critical processes ...
Macrophages are key inflammatory immune cells that display dynamic phenotypes and functions in respo...
AbstractThe molecular basis of cellular memory is a fascinating topic that progressed with great str...
Macrophages are key inflammatory immune cells that display dynamic phenotypes and functions in respo...
Monocytes/macrophages are key players in all phases of physiological and pathological inflammation. ...
Background Monocyte-to-macrophage differentiation involves major biochemical and structural changes....
Background: Macrophages and their precursors monocytes play a key role in inflammation and chronic i...
Monocytes and macrophages are key players in tissue homeostasis and immune responses. Epigenetic pro...
Monocyte differentiation into macrophages represents a cornerstone process for host defense. Concomi...
Cellular differentiation is orchestrated by lineage-specific transcription factors and associated wi...
Background Monocytes and macrophages play essential role in innate immunity. Understanding the under...
The differentiation of human blood monocytes (MO), the post-mitotic precursors of macrophages (MAC) ...
Comprehensive analysis of the gene expression profiles associated with human monocyte-to-macrophage ...
Comprehensive analysis of the gene expression profiles associated with human monocyte-to-macrophage ...
Comprehensive analysis of the gene expression profiles associated with human monocyte-to-macrophage ...
The activation of monocytes and their trans-differentiation into macrophages are critical processes ...
Macrophages are key inflammatory immune cells that display dynamic phenotypes and functions in respo...
AbstractThe molecular basis of cellular memory is a fascinating topic that progressed with great str...
Macrophages are key inflammatory immune cells that display dynamic phenotypes and functions in respo...
Monocytes/macrophages are key players in all phases of physiological and pathological inflammation. ...