Angiogenic Effects Despite Limited Cell Survival of Bone Marrow-Derived Mesenchymal Stem Cells under Ischemia

被引:66
作者
Hoffmann, J. [1 ]
Glassford, A. J. [1 ]
Doyle, T. C. [1 ]
Robbins, R. C. [1 ]
Schrepfer, S. [1 ]
Pelletier, M. P. [1 ]
机构
[1] Stanford Univ, Sch Med, Small Anim Imaging Facil, Stanford, CA 94305 USA
关键词
myocardial infarction; stem cells; angiogenesis; STROMAL CELLS; IN-VITRO; CARDIOMYOCYTES; MODEL;
D O I
10.1055/s-0029-1240758
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
Bone marrow-derived mesenchymal stem cells (MSCs) are multipotent and secrete angiogenic factors, which could help patients with occlusive arterial diseases. We hypothesize that MSCs, in comparison to fibroblasts, survive better under hypoxic conditions in vitro and in vivo. MSCs and fibroblasts from L2G mice expressing firefly luciferase and GFP were cultured in normoxic and hypoxic conditions for 24 hours. In vitro cell viability was tested by detecting apoptosis and necrosis. MSCs released higher amounts of VEGF (281.1 +/- 62.6 pg/ml) under hypoxic conditions compared to normoxia (154.9 +/- 52.3 pg/ml, p = NS), but were less tolerant to hypoxia (45 +/- 7.9%) than fibroblasts (28.1 +/- 3.6%, p = NS). A hindlimb ischemia model was created by ligating the femoral artery of 18 FVB mice. After one week, 1 x 106 cells (MSCs, fibroblasts or saline) were injected into the limb muscles of each animal (n = 6 per group). Bioluminescence measurement to assess the viability of luciferase positive cells showed significant proliferation of MSCs on day four compared to fibroblasts (p = 0.001). Three weeks after cell delivery, the capillary to muscle fiber ratio of ischemic areas was analyzed. In the MSC group, vessel density was significantly higher than in the fibroblast or control group (0.5 +/- 0.08 and 0.3 +/- 0.03). Under hypoxia, MSCs produced more VEGF compared to normal conditions and MSC transplantation into murine ischemic limbs led to an increase in vessel density, although MSC survival was limited. This study suggests that MSC transplantation may be an effective and clinically relevant tool in the therapy of occlusive arterial diseases.
引用
收藏
页码:136 / 142
页数:7
相关论文
共 20 条
[1]
Contribution of bone marrow-derived cells to blood vessels in ischemic tissues and tumors [J].
Aghi, M ;
Chiocca, EA .
MOLECULAR THERAPY, 2005, 12 (06) :994-1005
[2]
Postnatal bone marrow stromal cells elicit a potent VEGF-dependent neoangiogenic response in vivo [J].
Al-Khaldi, A ;
Eliopoulos, N ;
Martineau, D ;
Lejeune, L ;
Lachapelle, K ;
Galipeau, J .
GENE THERAPY, 2003, 10 (08) :621-629
[3]
Hypoxia promotes murine bone-marrow-derived stromal cell migration and tube formation [J].
Annabi, B ;
Lee, YT ;
Turcotte, S ;
Naud, E ;
Desrosiers, RR ;
Champagne, M ;
Eliopoulos, N ;
Galipeau, J ;
Béliveau, R .
STEM CELLS, 2003, 21 (03) :337-347
[4]
Isolation of putative progenitor endothelial cells for angiogenesis [J].
Asahara, T ;
Murohara, T ;
Sullivan, A ;
Silver, M ;
vanderZee, R ;
Li, T ;
Witzenbichler, B ;
Schatteman, G ;
Isner, JM .
SCIENCE, 1997, 275 (5302) :964-967
[5]
Badea C., 2005, MOL IMAGING, V4, P110
[6]
Effect on left ventricular function of intracoronary transplantation of autologous bone marrow mesenchymal stem cell in patients with acute myocardial infarction [J].
Chen, SL ;
Fang, W ;
Ye, F ;
Liu, YH ;
Qian, J ;
Shan, S ;
Zhang, J ;
Zhao, RCH ;
Liao, LM ;
Lin, S ;
Sun, JP .
AMERICAN JOURNAL OF CARDIOLOGY, 2004, 94 (01) :92-95
[7]
Mesenchymal, but not hematopoietic, stem cells can be mobilized and differentiate into cardiomyocytes after myocardial infarction in mice [J].
Fukuda, K ;
Fujita, J .
KIDNEY INTERNATIONAL, 2005, 68 (05) :1940-1943
[8]
Direct cell-cell interaction of cardiomyocytes is key for bone marrow stromal cells to go into cardiac lineage in vitro [J].
Fukuhara, S ;
Tomita, S ;
Yamashiro, S ;
Morisaki, T ;
Yutani, C ;
Kitamura, S ;
Nakatani, T .
JOURNAL OF THORACIC AND CARDIOVASCULAR SURGERY, 2003, 125 (06) :1470-1480
[9]
Comparison of angiogenic potency between mesenchymal stem cells and mononuclear cells in a rat model of hindlimb ischemia [J].
Iwase, T ;
Nagaya, N ;
Fujii, T ;
Itoh, T ;
Murakami, S ;
Matsumoto, T ;
Kangawa, K ;
Kitamura, S .
CARDIOVASCULAR RESEARCH, 2005, 66 (03) :543-551
[10]
Adenoviral gene transfer with soluble vascular endothelial growth factor receptors impairs angiogenesis and perfusion in a murine model of hindlimb ischemia [J].
Jacobi, J ;
Tam, BYY ;
Wu, G ;
Hoffman, J ;
Cooke, JP ;
Kuo, CJ .
CIRCULATION, 2004, 110 (16) :2424-2429