Bone marrow-derived mesenchymal stem cells facilitate engineering of long-lasting functional vasculature

被引:430
作者
Au, Patrick [1 ,2 ]
Tam, Joshua [1 ,2 ]
Fukumura, Dai [1 ]
Jain, Rakesh K. [1 ]
机构
[1] Harvard Univ, Sch Med, Massachusetts Gen Hosp, Dept Radiat Oncol,Edwin L Steele Lab, Boston, MA 02114 USA
[2] Harvard Univ, MIT, Div Hlth Sci & Technol, Cambridge, MA 02139 USA
关键词
D O I
10.1182/blood-2007-10-118273
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Vascular tissue engineering requires a ready source of endothelial cells and perivascular cells. Here, we evaluated human bone marrow-derived mesenchymal stem cells (hMSCs) for use as vascular progenitor cells in tissue engineering and regenerative medicine. hMSCs expressed a panel of smooth muscle markers in vitro including the cardiac/smooth muscle-specific transcription coactivator, myocardin. Cell-cell contact between endothelial cells and hMSCs up-regulated the transcription of myocardin. hMSCs efficiently stabilized nascent blood vessels in vivo by functioning as perivascular precursor cells. The engineered blood vessels derived from human umbilical cord vein endothelial cells and hMSCs remained stable and functional for more than 130 days in vivo. On the other hand, we could not detect differentiation of hMSCs to endothelial cells in vitro, and hMSCs by themselves could not form conduit for blood flow in vivo. Similar to normal perivascular cells, hMSC-derived perivascular cells contracted in response to endothelin-1 in vivo. In conclusion, hMSCs are perivascular cell precursors and may serve as an attractive source of cells for use in vascular tissue engineering and for the study of perivascular cell differentiation.
引用
收藏
页码:4551 / 4558
页数:8
相关论文
共 30 条
[1]   AN ACTIVATED FORM OF TRANSFORMING GROWTH FACTOR-BETA IS PRODUCED BY COCULTURES OF ENDOTHELIAL-CELLS AND PERICYTES [J].
ANTONELLIORLIDGE, A ;
SAUNDERS, KB ;
SMITH, SR ;
DAMORE, PA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1989, 86 (12) :4544-4548
[2]   Differential in vivo potential of endothelial progenitor cells from human umbilical cord blood and adult peripheral blood to form functional long-lasting vessels [J].
Au, Patrick ;
Daheron, Laurence M. ;
Duda, Dan G. ;
Cohen, Kenneth S. ;
Tyrrell, James A. ;
Lanning, Ryan M. ;
Fukumura, Dai ;
Scadden, David T. ;
Jain, Rakesh K. .
BLOOD, 2008, 111 (03) :1302-1305
[3]   In vivo measurement of gene expression, angiogenesis and physiological function in tumors using multiphoton laser scanning microscopy [J].
Brown, EB ;
Campbell, RB ;
Tsuzuki, Y ;
Xu, L ;
Carmeliet, P ;
Fukumura, D ;
Jain, RK .
NATURE MEDICINE, 2001, 7 (07) :864-868
[4]   Developmental biology - One cell, two fates [J].
Carmeliet, P .
NATURE, 2000, 408 (6808) :43-45
[5]   Mesenchymal progenitor cells differentiate into an endothelial phenotype, enhance vascular density, and improve heart function in a rat cellular cardiomyoplasty model [J].
Davani, S ;
Marandin, A ;
Mersin, N ;
Royer, B ;
Kantelip, B ;
Hervé, P ;
Etievent, JP ;
Kantelip, JP .
CIRCULATION, 2003, 108 (10) :253-258
[6]   Matrix elasticity directs stem cell lineage specification [J].
Engler, Adam J. ;
Sen, Shamik ;
Sweeney, H. Lee ;
Discher, Dennis E. .
CELL, 2006, 126 (04) :677-689
[7]   Catheter-based stem cell and gene therapy for refractory myocardial ischemia [J].
Fuchs S. ;
Battler A. ;
Kornowski R. .
Nature Clinical Practice Cardiovascular Medicine, 2007, 4 (Suppl 1) :S89-S95
[8]   From the laboratory bench to the patients bedside: An update on clinical trials with mesenchymal stem cells [J].
Giordano, Antonio ;
Galderisi, Umberto ;
Marino, Ignazio R. .
JOURNAL OF CELLULAR PHYSIOLOGY, 2007, 211 (01) :27-35
[9]   Evidence supporting paracrine hypothesis for Akt-modified mesenchymal stem cell-mediated cardiac protection and functional improvement [J].
Gnecchi, Massimiliano ;
He, Huamei ;
Noiseux, Nicolas ;
Liang, Olin D. ;
Zhang, Lunan ;
Morello, Fulvio ;
Mu, Hui ;
Melo, Luis G. ;
Pratt, Richard E. ;
Ingwall, Joanne S. ;
Dzau, Victor J. .
FASEB JOURNAL, 2006, 20 (06) :661-669
[10]   PDGF, TGF-β, and heterotypic cell-cell interactions mediate endothelial cell-induced recruitment of 10T1/2 cells and their differentiation to a smooth muscle fate [J].
Hirschi, KK ;
Rohovsky, SA ;
D'Amore, PA .
JOURNAL OF CELL BIOLOGY, 1998, 141 (03) :805-814