Tissue-resident macrophages are heterogeneous as a consequence of anatomical niche–specific functions. Many populations self-renew independently of bone marrow in the adult, but the molecular mechanisms of this are poorly understood. We determined a transcriptional profile for the major self-renewing population of peritoneal macrophages in mice. These cells specifically expressed the transcription factor Gata6. Selective deficiency of Gata6 in myeloid cells caused substantial alterations in the transcriptome of peritoneal macrophages. Gata6 deficiency also resulted in dysregulated peritoneal macrophage proliferative renewal during homeostasis and in response to inflammation, which was associated with delays in the resolution of inflammation...
Inflammation generally leads to recruitment of monocyte-derived macrophages. What regulates the fate...
Tissue-resident macrophages form an essential part of the first line of defense in all tissues of th...
The zinc finger transcription factor GATA-2 has been implicated in the regula-tion of hematopoietic ...
Tissue-resident macrophages are heterogeneous as a consequence of anatomical niche–specific function...
Implicated in both tissue damage and repair, resi-dent macrophages regulate numerous homeo-static, d...
Tissue resident macrophages are a highly heterogeneous cell type present in every mammalian tissue, ...
Peritoneal macrophages are one of the most studied macrophage populations in the body, yet the compo...
Tissue-resident macrophages take residence in tissues during early embryogenesis, developing indepen...
International audienceThe transcription factor Gata6 regulates proliferation and differentiation of ...
Macrophages not only are prominent effector cells of the immune system that are critical in inflamma...
Macrophages have been at the heart of immune research for over a century and are an integral compone...
Most tissue-resident macrophages (Mφs) are believed to be derived prenatally and are assumed to main...
SummaryMacrophages reside in essentially all tissues of the body and play key roles in innate and ad...
Arterial macrophages have different developmental origins, but the association of macrophage ontogen...
SummaryTissue-resident macrophages are highly heterogeneous in terms of their functions and phenotyp...
Inflammation generally leads to recruitment of monocyte-derived macrophages. What regulates the fate...
Tissue-resident macrophages form an essential part of the first line of defense in all tissues of th...
The zinc finger transcription factor GATA-2 has been implicated in the regula-tion of hematopoietic ...
Tissue-resident macrophages are heterogeneous as a consequence of anatomical niche–specific function...
Implicated in both tissue damage and repair, resi-dent macrophages regulate numerous homeo-static, d...
Tissue resident macrophages are a highly heterogeneous cell type present in every mammalian tissue, ...
Peritoneal macrophages are one of the most studied macrophage populations in the body, yet the compo...
Tissue-resident macrophages take residence in tissues during early embryogenesis, developing indepen...
International audienceThe transcription factor Gata6 regulates proliferation and differentiation of ...
Macrophages not only are prominent effector cells of the immune system that are critical in inflamma...
Macrophages have been at the heart of immune research for over a century and are an integral compone...
Most tissue-resident macrophages (Mφs) are believed to be derived prenatally and are assumed to main...
SummaryMacrophages reside in essentially all tissues of the body and play key roles in innate and ad...
Arterial macrophages have different developmental origins, but the association of macrophage ontogen...
SummaryTissue-resident macrophages are highly heterogeneous in terms of their functions and phenotyp...
Inflammation generally leads to recruitment of monocyte-derived macrophages. What regulates the fate...
Tissue-resident macrophages form an essential part of the first line of defense in all tissues of th...
The zinc finger transcription factor GATA-2 has been implicated in the regula-tion of hematopoietic ...