Autologous bone marrow cell therapy and metabolic intervention in ischemia-induced angiogenesis in the diabetic mouse hindlimb

被引:33
作者
Sica, Vincenzo
Williams-Ignarro, Sharon
de Nigris, Filomena
D'Armiento, Francesco P.
Lerman, Lilach O.
Balestrieri, Maria Luisa
Maione, Ciro
Palagiano, Antonio
Rossiello, Luigi
Ignarro, Louis J.
Napoli, Claudio [1 ]
机构
[1] Univ Naples 2, Dept Gen Pathol, Div Clin Pathol, Sch Med 1, I-80138 Naples, Italy
[2] Univ Naples 2, Sch Med 1, Excellence Res Ctr Cardiovasc Dis, I-80138 Naples, Italy
[3] Univ Naples Federico II, Sch Med 2, Dept Biomorphol Sci, Naples, Italy
[4] Mayo Coll Med, Div Hypertens, Rochester, MN USA
[5] Univ Calif Los Angeles, David Geffen Sch Med, Div Anesthesiol, Los Angeles, CA USA
[6] Univ Calif Los Angeles, David Geffen Sch Med, Dept Mol Pharmacol, Los Angeles, CA USA
关键词
bone marrow cell; diabetes; ischemic hindlimb; peripheral arterial disease; L-arginine; antioxidants; nitric oxide;
D O I
10.4161/cc.5.24.3568
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Peripheral arterial disease (PAD) is a major health problem especially when associated to diabetes. Administration of autologous bone marrow cells (BMC) is emerging as a novel intervention to induce therapeutic angiogenesis in experimental ischemic limb models and in patients with PAD. Since tissue ischemia and diabetes are associated with an overwhelming generation of oxygen radicals and detrimental effects due to formation of glycosylation end-products, metabolic intervention with antioxidants and L-arginine can confer beneficial effects beyond those achieved by BMC alone. The effects of cotreatment with intravenous BMCs and metabolic vascular protection (1.0% vitamin E, 0.05% vitamin C, and 6% L-arginine) were examined in the ischemic hindlimb of diabetic and non diabetic mice. BMC therapy increased blood flow and capillary densities and Ki67 proliferative marker, and decreased interstitial fibrosis. This effect was amplified by metabolic cotreatment, an intervention inducing vascular protection, at least in part, through the nitric oxide pathway, reduction of systemic oxidative stress, and macrophage activation.
引用
收藏
页码:2903 / 2908
页数:6
相关论文
共 48 条
[1]  
Aronow Wilbert S, 2005, Cardiol Rev, V13, P61, DOI 10.1097/01.crd.0000126082.86717.12
[2]   Monocyte activation in angiogenesis and collateral growth in the rabbit hindlimb [J].
Arras, M ;
Ito, WD ;
Scholz, D ;
Winkler, B ;
Schaper, J ;
Schaper, W .
JOURNAL OF CLINICAL INVESTIGATION, 1998, 101 (01) :40-50
[3]   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
[4]  
Baumgartner I, 2000, Curr Cardiol Rep, V2, P24
[5]   New concepts in reactive oxygen species and cardiovascular reperfusion physiology [J].
Becker, LB .
CARDIOVASCULAR RESEARCH, 2004, 61 (03) :461-470
[6]  
Boak L., 2004, Current Vascular Pharmacology, V2, P45, DOI 10.2174/1570161043476546
[7]   Hyperhomocyst(e)inemia impairs angiogenesis in a murine model of limb ischemia [J].
Bosch-Marcé, M ;
Pola, R ;
Wecker, AB ;
Silver, M ;
Weber, A ;
Luedemann, C ;
Curry, C ;
Murayama, T ;
Kearney, M ;
Yoon, YS ;
Malinow, MR ;
Asahara, T ;
Isner, JM ;
Losordo, DW .
VASCULAR MEDICINE, 2005, 10 (01) :15-22
[8]  
Bucala R, 1992, Adv Pharmacol, V23, P1
[9]   Hyperglycemia-induced reactive oxygen species and impaired endothelial progenitor cell function [J].
Callaghan, MJ ;
Ceradini, DJ ;
Gurtner, GC .
ANTIOXIDANTS & REDOX SIGNALING, 2005, 7 (11-12) :1476-1482
[10]   Update on therapeutic neovascularization [J].
Cao, YH ;
Hong, A ;
Schulten, H ;
Post, MJ .
CARDIOVASCULAR RESEARCH, 2005, 65 (03) :639-648