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Identification Of Erythromyeloid Progenitors And Their Progeny In The Mouse Embryo By Flow Cytometry
Published on: July 17, 2017
Identification Of Erythromyeloid Progenitors And Their Progeny In The Mouse Embryo By Flow Cytometry
Lorea Iturri1, Javier Saenz Coronilla2, Yvan Lallemand2
1Department of Developmental and Stem Cell Biology, CNRS UMR3738, Department of Immunology, Institut Pasteur; Cellule Pasteur UPMC, University Pierre et Marie Curie.
Abstract:
Macrophages are professional phagocytes from the innate arm of the immune system. In steady-state, sessile macrophages are found in adult tissues where they act as front line sentinels of infection and tissue damage. While other immune cells are continuously renewed from hematopoietic stem and progenitor cells (HSPC) located in the bone marrow, a lineage of macrophages, known as resident macrophages, have been shown to be self-maintained in tissues without input from bone marrow HSPCs. This lineage is exemplified by microglia in the brain, Kupffer cells in the liver and Langerhans cells in the epidermis among others. The intestinal and colon lamina propria are the only adult tissues devoid of HSPC-independent resident macrophages. Recent investigations have identified that resident macrophages originate from the extra-embryonic yolk sac hematopoiesis from progenitor(s) distinct from fetal hematopoietic stem cells (HSC). Among yolk sac definitive hematopoiesis, erythromyeloid progenitors (EMP) give rise both to erythroid and myeloid cells, in particular resident macrophages. EMP are only generated within the yolk sac between E8.5 and E10.5 days of development and they migrate to the fetal liver as early as circulation is connected, where they expand and differentiate until at least E16.5. Their progeny includes erythrocytes, macrophages, neutrophils and mast cells but only EMP-derived macrophages persist until adulthood in tissues. The transient nature of EMP emergence and the temporal overlap with HSC generation renders the analysis of these progenitors difficult. We have established a tamoxifen-inducible fate mapping protocol based on expression of the macrophage cytokine receptor Csf1r promoter to characterize EMP and EMP-derived cells in vivo by flow cytometry.
Insights
Resident macrophages, crucial for innate immunity, self-maintain in tissues. These cells originate from early yolk sac erythromyeloid progenitors (EMP), not bone marrow stem cells, persisting into adulthood.
Area of Science:
- Immunology
- Developmental Biology
- Hematopoiesis
Background:
- Resident macrophages are tissue-specific immune cells vital for innate immunity.
- Unlike most immune cells, they self-maintain and do not require continuous bone marrow stem cell input.
- Resident macrophages originate from early embryonic hematopoiesis, distinct from adult hematopoietic stem cells.
Purpose of the Study:
- To investigate the embryonic origins of resident macrophages.
- To characterize erythromyeloid progenitors (EMP) and their role in resident macrophage development.
- To develop a method for studying these transient embryonic progenitors.
Main Methods:
- Established a tamoxifen-inducible fate mapping system.
- Utilized the Csf1r promoter for lineage tracing.
- Employed flow cytometry for in vivo cell characterization.
Main Results:
- Identified that resident macrophages originate from yolk sac erythromyeloid progenitors (EMP).
- Demonstrated that EMP emerge transiently during embryonic development (E8.5-E10.5).
- Showed EMP-derived macrophages persist in tissues into adulthood.
Conclusions:
- Resident macrophages are established by a distinct embryonic lineage originating from the yolk sac.
- Understanding EMP is key to comprehending the development and maintenance of tissue-resident macrophages.
- The developed fate mapping strategy allows for in-depth analysis of these critical immune cells.

