In vivo contribution of murine mesenchymal stem cells into multiple cell-types under minimal damage conditions

被引:219
作者
Anjos-Afonso, F [1 ]
Siapati, EK [1 ]
Bonnet, D [1 ]
机构
[1] Imperial Canc Res Fund, London Res Inst, Hematopoiet Stem Cell Lab, London WC2A 3PX, England
关键词
mesenchymal; stem; eGFP; in vivo; differentiation;
D O I
10.1242/jcs.01488
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Murine mesenchymal stem cells are capable of differentiating in vitro into different lineages under stimulation with certain cytokines, growth factors and chemicals. However, the true capacitiy of these cells to contribute to different cell-types in vivo is still unclear, especially under minimal injury conditions. In this study, we describe a method of purifying murine mesenchymal stem cells from bone marrow and efficiently transducing them using a lentivirus vector expressing the eGFP reporter gene. Lentivirus-transduced mesenchymal stem cells retained their in vitro ability to differentiate into adipocytes, osteocytes and chondrocytes as well as into myocyte- and astrocyte-like cells. eGFP-mesenchymal stem cells were delivered systemically into minimally injured syngeneic mice. Tracking and tissue-specific differentiation were determined by PCR and immunohistochemistry, respectively. We found donor-derived hepatocytes, lung epithelial cells, myofibroblasts, myofibers and renal tubular cells in some of the recipient mice. Our data indicate that even in the absence of substantial injury, phenotypically defined murine mesenchymal stem cells could acquire tissue specific morphology and antigen expression and thus contribute to different tissue cell-types in vivo.
引用
收藏
页码:5655 / 5664
页数:10
相关论文
共 44 条
[1]   Fusion of bone-marrow-derived cells with Purkinje neurons, cardiomyocytes and hepatocytes [J].
Alvarez-Dolado, M ;
Pardal, R ;
Garcia-Vardugo, JM ;
Fike, JR ;
Lee, HO ;
Pfeffer, K ;
Lois, C ;
Morrison, SJ ;
Alvarez-Buylla, A .
NATURE, 2003, 425 (6961) :968-973
[2]  
ANJOSAFONSO F, 2003, BLOOD, V112, P415
[3]   Characterization of mesenchymal stem cells isolated from murine bone marrow by negative selection [J].
Baddoo, M ;
Hill, K ;
Wilkinson, R ;
Gaupp, D ;
Hughes, C ;
Kopen, GC ;
Phinney, DG .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2003, 89 (06) :1235-1249
[4]   Systemic delivery of bone marrow-derived mesenchymal stem cells to the infarcted myocardium - Feasibility, cell migration, and body distribution [J].
Barbash, IM ;
Chouraqui, P ;
Baron, J ;
Feinberg, MS ;
Etzion, S ;
Tessone, A ;
Miller, L ;
Guetta, E ;
Zipori, D ;
Kedes, LH ;
Kloner, RA ;
Leor, J .
CIRCULATION, 2003, 108 (07) :863-868
[5]   Baboon mesenchymal stem cells can be genetically modified to secrete human erythropoietin in vivo [J].
Bartholomew, A ;
Patil, S ;
Mackay, A ;
Nelson, M ;
Buyaner, D ;
Hardy, W ;
Mosca, J ;
Sturgeon, C ;
Siatskas, M ;
Mahmud, N ;
Ferrer, K ;
Deans, R ;
Moseley, A ;
Hoffman, R ;
Devine, SM .
HUMAN GENE THERAPY, 2001, 12 (12) :1527-1541
[6]   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
[7]   Marrow stromal stem cells [J].
Bianco, P ;
Robey, PG .
JOURNAL OF CLINICAL INVESTIGATION, 2000, 105 (12) :1663-1668
[8]   Significant differences among skeletal muscles in the incorporation of bone marrow-derived cells [J].
Brazelton, TR ;
Nystrom, M ;
Blau, HM .
DEVELOPMENTAL BIOLOGY, 2003, 262 (01) :64-74
[9]   Hematopoietic myelomonocytic cells are the major source of hepatocyte fusion partners [J].
Camargo, FD ;
Finegold, M ;
Goodell, MA .
JOURNAL OF CLINICAL INVESTIGATION, 2004, 113 (09) :1266-1270
[10]   Skeletal muscle repair by adult human mesenchymal stem cells from synovial membrane [J].
De Bari, C ;
Dell'Accio, F ;
Vandenabeele, F ;
Vermeesch, JR ;
Raymackcrs, JM ;
Luyten, FP .
JOURNAL OF CELL BIOLOGY, 2003, 160 (06) :909-918