Bone marrow subendosteal microenvironment harbours functionally distinct haemosupportive stromal cell populations

被引:84
作者
Balduino, A
Hurtado, S
Frazao, P
Takiya, CM
Alves, LM
Nasciutti, LE
El-Cheikh, MC
Borojevic, R
机构
[1] Hosp Univ Clementino Fraga Filho, Programa Avancado Biol Celular Aplicada Med, BR-21941970 Rio De Janeiro, Brazil
[2] Inst Ciencias Biomed, Dept Histol & Embriol, BR-21941970 Rio De Janeiro, Brazil
关键词
haemopoiesis; bone marrow; osteoblast; endosteum; mouse (BALB/c);
D O I
10.1007/s00441-004-1006-3
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
In adult animals, bone marrow is the major site of blood cell production, which is controlled by interactions between the local stroma and blood cell progenitors. The endosteal/subendosteal environment comprises bone-lining and adjacent reticular cells and sustains haemopoietic stem cell (HSC) self-renewal, proliferation and differentiation. We have questioned the specific role of each of these stroma cells in controlling HSC fate. We have isolated two distinct stroma-cell populations containing subendosteal reticulocytes (F-RET) and osteoblasts (F-OST) from periosteum-free fragments of murine femurs by a two-step collagenase-digestion procedure. Both populations produce similar extracellular matrix (collagen I, laminin, fibronectin, decorin), except for collagen IV, which is low in F-OST. They also express osteogenic markers: osteopontin, osteonectin, bone sialoprotein and alkaline phosphatase (ALP). The quantity and activity of ALP are however higher in F-OST. When co-cultured with bone marrow mononuclear cells or lineage-negative haemopoietic progenitors, F-OST stroma induces low proliferation and high maintenance of early haemopoietic progenitors, whereas F-RET stroma induces high short-term proliferation and differentiation. Analysis by reverse transcription/polymerase chain reaction has revealed higher levels of Jagged-1 expression by F-OST cells than by the F-RET population. Thus, two adjacent stroma cells (subendosteal and endosteal) play distinct roles in controlling the stem-cell capacity and fate of HSC and probably contribute distinctly to HSC niche formation.
引用
收藏
页码:255 / 266
页数:12
相关论文
共 47 条
[1]   Bone marrow stromal stem cells: Nature, biology, and potential applications [J].
Bianco, P ;
Riminucci, M ;
Gronthos, S ;
Robey, PG .
STEM CELLS, 2001, 19 (03) :180-192
[2]   Marrow stromal stem cells [J].
Bianco, P ;
Robey, PG .
JOURNAL OF CLINICAL INVESTIGATION, 2000, 105 (12) :1663-1668
[3]   Multipotential cells in the bone marrow stroma: Regulation in the context of organ physiology [J].
Bianco, P ;
Riminucci, N ;
Kuznetsov, S ;
Robey, PG .
CRITICAL REVIEWS IN EUKARYOTIC GENE EXPRESSION, 1999, 9 (02) :159-173
[4]   Interleukin-3 supports expansion of long-term multilineage repopulating activity after multiple stem cell divisions in vitro [J].
Bryder, D ;
Jacobsen, SEW .
BLOOD, 2000, 96 (05) :1748-1755
[5]   Osteoblastic cells regulate the haematopoietic stem cell niche [J].
Calvi, LM ;
Adams, GB ;
Weibrecht, KW ;
Weber, JM ;
Olson, DP ;
Knight, MC ;
Martin, RP ;
Schipani, E ;
Divieti, P ;
Bringhurst, FR ;
Milner, LA ;
Kronenberg, HM ;
Scadden, DT .
NATURE, 2003, 425 (6960) :841-846
[6]   Early ontogeny of the human marrow from long bones: An immunohistochemical study of hematopoiesis and its microenvironment [J].
Charbord, P ;
Tavian, M ;
Humeau, L ;
Peault, B .
BLOOD, 1996, 87 (10) :4109-4119
[7]   Development and aging of primitive hematopoietic stem cells in BALB cBy mice [J].
Chen, JC ;
Astle, CM ;
Harrison, DE .
EXPERIMENTAL HEMATOLOGY, 1999, 27 (05) :928-935
[8]   Hematopoietic senescence is postponed and hematopoietic stem cell function is enhanced by dietary restriction [J].
Chen, JC ;
Astle, CM ;
Harrison, DE .
EXPERIMENTAL HEMATOLOGY, 2003, 31 (11) :1097-1103
[9]   Origin and differentiation of human and murine stroma [J].
Dennis, JE ;
Charbord, P .
STEM CELLS, 2002, 20 (03) :205-214
[10]  
Dexter T M, 1976, Methods Cell Biol, V14, P387, DOI 10.1016/S0091-679X(08)60498-7