Ryzhov Sergey, Solenkova Nataliya V, Goldstein Anna E, Lamparter Mathias, Fleenor Todd, Young Pampee P, Greelish James P, Byrne John G, Vaughan Douglas E, Biaggioni Italo, Hatzopoulos Antonis K, Feoktistov Igor
Department of Medicine, Vanderbilt University, Nashville, Tenn, USA.
Circ Res. 2008 Feb 15;102(3):356-63. doi: 10.1161/CIRCRESAHA.107.158147. Epub 2007 Nov 21.
Intracoronary delivery of endothelial progenitor cells (EPCs) is an emerging concept for the treatment of cardiovascular disease. Enhancement of EPC adhesion to vascular endothelium could improve cell retention within targeted organs. Because extracellular adenosine is elevated at sites of ischemia and stimulates neovascularization, we examined the potential role of adenosine in augmenting EPC retention to cardiac microvascular endothelium. Stimulation of adenosine receptors in murine embryonic EPCs (eEPCs) and cardiac endothelial cells (cECs) rapidly, within minutes, increased eEPC adhesion to cECs under static and flow conditions. Similarly, adhesion of human adult culture-expanded EPCs to human cECs was increased by stimulation of adenosine receptors. Furthermore, adenosine increased eEPC retention in isolated mouse hearts perfused with eEPCs. We determined that eEPCs and cECs preferentially express functional A1 and A2B adenosine receptor subtypes, respectively, and that both subtypes are involved in the regulation of eEPC adhesion to cECs. We documented that the interaction between P-selectin and its ligand (P-selectin glycoprotein ligand-1) plays a role in adenosine-dependent eEPC adhesion to cECs and that stimulation of adenosine receptors in cECs induces rapid cell surface expression of P-selectin. Our results suggest a role for adenosine in vasculogenesis and its potential use to stimulate engraftment in cell-based therapies.
冠状动脉内递送内皮祖细胞(EPCs)是治疗心血管疾病的一个新兴概念。增强EPCs与血管内皮的黏附可以改善细胞在靶器官内的滞留。由于细胞外腺苷在缺血部位升高并刺激新生血管形成,我们研究了腺苷在增强EPCs滞留于心脏微血管内皮方面的潜在作用。在静态和流动条件下,刺激小鼠胚胎EPCs(eEPCs)和心脏内皮细胞(cECs)中的腺苷受体,在数分钟内迅速增加了eEPCs与cECs的黏附。同样,刺激腺苷受体可增加人成年培养扩增的EPCs与人cECs的黏附。此外,腺苷增加了灌注eEPCs的离体小鼠心脏中eEPCs的滞留。我们确定eEPCs和cECs分别优先表达功能性A1和A2B腺苷受体亚型,且这两种亚型均参与调节eEPCs与cECs的黏附。我们证明P-选择素与其配体(P-选择素糖蛋白配体-1)之间的相互作用在腺苷依赖性eEPCs与cECs的黏附中起作用,并且刺激cECs中的腺苷受体可诱导P-选择素在细胞表面快速表达。我们的结果表明腺苷在血管生成中起作用,并且其在基于细胞的治疗中刺激植入方面具有潜在用途。