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1.
Dev Cell ; 25(4): 333-49, 2013 May 28.
Article in English | MEDLINE | ID: mdl-23725762

ABSTRACT

A dysfunctional bone marrow (BM) microenvironment is thought to contribute to the development of hematologic diseases. However, functional replacement of pathologic BM microenvironment through BM transplantation has not been possible. Furthermore, the study of hematopoietic inductive BM microenvironment is hampered by the lack of a functional nonhematopoietic reconstitution system. Here, we show that a deficiency of SH2-containing inositol-5'-phosphatase-1 (SHIP) in a nonhematopoietic host microenvironment enables its functional reconstitution by wild-type donor cells. This microenvironment reconstitution normalizes hematopoiesis in peripheral blood and BM and alleviates pathology of spleen and lung in the SHIP-deficient recipients. SHIP-deficient BM contains a significantly smaller population of multipotent stromal cells with distinct properties, which may contribute to the reconstitution by wild-type cells. We further demonstrate that it is the nonhematopoietic donor cells that are responsible for the reconstitution. Thus, we have established a nonhematopoietic BM microenvironment reconstitution system to functionally study specific cell types in hematopoietic niches.


Subject(s)
Cellular Microenvironment , Hematopoiesis , Phosphoric Monoester Hydrolases/deficiency , Adipogenesis , Animals , Apoptosis , B-Lymphocytes/metabolism , Bone Marrow Cells/enzymology , Bone Marrow Cells/metabolism , Bone Marrow Transplantation/methods , Cell Lineage , Femur/metabolism , Femur/pathology , Inositol Polyphosphate 5-Phosphatases , Laser Scanning Cytometry , Leukocyte Common Antigens/metabolism , Lung/metabolism , Lung/pathology , Mesenchymal Stem Cells/metabolism , Mice , Mice, Inbred C57BL , Mice, Knockout , Myeloid Cells/metabolism , Phosphoric Monoester Hydrolases/genetics , Phosphoric Monoester Hydrolases/metabolism , Spleen/enzymology , Spleen/pathology
2.
Nat Cell Biol ; 15(5): 533-43, 2013 May.
Article in English | MEDLINE | ID: mdl-23624405

ABSTRACT

The existence of a haematopoietic stem cell niche as a spatially confined regulatory entity relies on the notion that haematopoietic stem and progenitor cells (HSPCs) are strategically positioned in unique bone marrow microenvironments with defined anatomical and functional features. Here, we employ a powerful imaging cytometry platform to perform a comprehensive quantitative analysis of HSPC distribution in bone marrow cavities of femoral bones. We find that HSPCs preferentially localize in endosteal zones, where most closely interact with sinusoidal and non-sinusoidal bone marrow microvessels, which form a distinctive circulatory system. In situ tissue analysis reveals that HSPCs exhibit a hypoxic profile, defined by strong retention of pimonidazole and expression of HIF-1α, regardless of localization throughout the bone marrow, adjacency to vascular structures or cell-cycle status. These studies argue that the characteristic hypoxic state of HSPCs is not solely the result of a minimally oxygenated niche but may be partially regulated by cell-specific mechanisms.


Subject(s)
Bone Marrow/metabolism , Cellular Microenvironment , Hematopoietic Stem Cells/cytology , Image Processing, Computer-Assisted/methods , Animals , Bone Marrow/blood supply , Cell Cycle , Cell Hypoxia , Colony-Forming Units Assay , Femur/cytology , Flow Cytometry/methods , Hematopoietic Stem Cells/metabolism , Hypoxia-Inducible Factor 1, alpha Subunit/metabolism , Ki-67 Antigen/metabolism , Mice , Mice, Inbred C57BL , Microscopy, Fluorescence , Nitroimidazoles/pharmacology , Spleen/cytology , Spleen/metabolism , Stem Cell Factor/metabolism
3.
J Immunol ; 190(3): 1094-102, 2013 Feb 01.
Article in English | MEDLINE | ID: mdl-23264658

ABSTRACT

Progenitor B cells reside in complex bone marrow (BM) microenvironments where they receive signals for growth and maturation. We reported previously that the CXCL12-focal adhesion kinase (FAK)-VLA4 pathway plays an important role in progenitor B cell adhesion and migration. In this study, we have conditionally targeted in B cells FAK, and found that the numbers of progenitor pro-B, pre-B, and immature B cells are reduced by 30-40% in B cell-specific FAK knockout mice. When cultured in methylcellulose with IL-7 ± CXCL12, Fak-deleted pro-B cells yield significantly fewer cells and colonies. Using in situ quantitative imaging cytometry, we establish that in longitudinal femoral BM sections, pro-B cells are preferentially localized in close proximity to the endosteum of the metaphyses and the diaphysis. Fak deletion disrupts the nonrandom distribution of pro-B cells and induces the mobilization of pro-B cells to the periphery in vivo. These effects of Fak deletion on pro-B cell mobilization and localization in BM are amplified under inflammatory stress, that is, after immunization with nitrophenol-conjugated chicken γ-globulin in alum. Collectively, these studies suggest the importance of FAK in regulating pro-B cell homeostasis and maintenance of their spatial distribution in BM niches.


Subject(s)
B-Lymphocytes/cytology , Bone Marrow/ultrastructure , Focal Adhesion Kinase 1/physiology , Hematopoietic Stem Cells/enzymology , Lymphopoiesis/physiology , Animals , Apoptosis , B-Lymphocytes/transplantation , Bone Marrow/immunology , Cells, Cultured/cytology , Cells, Cultured/drug effects , Cellular Microenvironment , Chemokine CXCL12/physiology , Chemotaxis, Leukocyte/physiology , Colony-Forming Units Assay , Female , Focal Adhesion Kinase 1/deficiency , Focal Adhesion Kinase 1/genetics , Hematopoietic Stem Cell Mobilization , Hematopoietic Stem Cells/cytology , Hematopoietic Stem Cells/drug effects , Homeostasis , Integrin alpha4beta1/physiology , Interleukin-7/pharmacology , Lymphopenia/etiology , Male , Mice , Mice, Inbred C57BL , Mice, Knockout
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