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In vivo Liver Endocytosis Followed by Purification of Liver Cells by Liver Perfusion
Published on: November 10, 2011
Fetal liver endothelium regulates the seeding of tissue-resident macrophages
Pia Rantakari1, Norma Jäppinen1, Emmi Lokka1
1MediCity Research Laboratory, University of Turku, Turku, FI-20520, Finland.
Abstract:
Macrophages are required for normal embryogenesis, tissue homeostasis and immunity against microorganisms and tumours. Adult tissue-resident macrophages largely originate from long-lived, self-renewing embryonic precursors and not from haematopoietic stem-cell activity in the bone marrow. Although fate-mapping studies have uncovered a great amount of detail on the origin and kinetics of fetal macrophage development in the yolk sac and liver, the molecules that govern the tissue-specific migration of these cells remain completely unknown. Here we show that an endothelium-specific molecule, plasmalemma vesicle-associated protein (PLVAP), regulates the seeding of fetal monocyte-derived macrophages to tissues in mice. We found that PLVAP-deficient mice have completely normal levels of both yolk-sac- and bone-marrow-derived macrophages, but that fetal liver monocyte-derived macrophage populations were practically missing from tissues. Adult PLVAP-deficient mice show major alterations in macrophage-dependent iron recycling and mammary branching morphogenesis. PLVAP forms diaphragms in the fenestrae of liver sinusoidal endothelium during embryogenesis, interacts with chemoattractants and adhesion molecules and regulates the egress of fetal liver monocytes to the systemic vasculature. Thus, PLVAP selectively controls the exit of macrophage precursors from the fetal liver and, to our knowledge, is the first molecule identified in any organ as regulating the migratory events during embryonic macrophage ontogeny.
Insights
Plasmalemma vesicle-associated protein (PLVAP) is crucial for embryonic macrophage development. This molecule regulates the exit of macrophage precursors from the fetal liver, impacting tissue colonization and adult health.
Area of Science:
- Immunology
- Developmental Biology
- Cell Biology
Background:
- Macrophages are essential for embryogenesis, tissue homeostasis, and immunity.
- Adult tissue-resident macrophages primarily originate from embryonic precursors, not bone marrow stem cells.
- Molecules governing fetal macrophage tissue migration remain largely unknown.
Purpose of the Study:
- To identify molecules regulating the tissue-specific migration of fetal macrophage precursors.
- To investigate the role of plasmalemma vesicle-associated protein (PLVAP) in embryonic macrophage development and tissue seeding.
Main Methods:
- Utilized PLVAP-deficient mice for functional studies.
- Employed fate-mapping studies to track macrophage origins and kinetics.
- Analyzed macrophage populations in various tissues during embryogenesis and adulthood.
Main Results:
- PLVAP deficiency resulted in a near absence of fetal liver monocyte-derived macrophages in tissues.
- Yolk sac and bone marrow-derived macrophage populations remained normal in PLVAP-deficient mice.
- Adult PLVAP-deficient mice exhibited impaired iron recycling and mammary gland development.
Conclusions:
- Plasmalemma vesicle-associated protein (PLVAP) selectively controls the egress of macrophage precursors from the fetal liver.
- PLVAP is the first identified molecule regulating migratory events in embryonic macrophage ontogeny.
- PLVAP's role in fetal liver monocyte exit impacts tissue colonization and subsequent physiological functions.
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