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血管核苷转运体的生理作用。

Physiological roles of vascular nucleoside transporters.

作者信息

Löffler Michaela, Morote-Garcia Julio C, Eltzschig Shelley A, Coe Imogen R, Eltzschig Holger K

机构信息

Department of Anesthesiology and Intensive Care Medicine, Tübingen University Hospital, Waldhörnle Str. 22, 72072, Tübingen, Germany.

出版信息

Arterioscler Thromb Vasc Biol. 2007 May;27(5):1004-13. doi: 10.1161/ATVBAHA.106.126714. Epub 2007 Mar 1.

Abstract

Nucleoside transporters (NTs) comprise 2 widely expressed families, the equilibrative nucleoside transporters (diffusion-limited channels) and concentrative nucleoside transporters (sodium-dependent transporters). Because of their anatomic position at the blood-tissue interface, vascular NTs are in an ideal position to influence vascular nucleoside levels, particularly adenosine, which among others plays an important role in tissue protection during acute injury. For example, endothelial NTs contribute to preserving the vascular integrity during conditions of limited oxygen availability (hypoxia). Indeed, hypoxia-inducible factor-1-dependent repression of NTs results in enhanced extracellular adenosine signaling and thus attenuates hypoxia-associated increases in vascular leakage. In addition, vascular NTs also contribute to cardiac ischemic preconditioning, coronary vasodilation, and inhibition of platelet aggregation. Moreover, vascular nucleoside uptake via NTs is important for nucleoside recovery, particularly in cells lacking de novo nucleotide synthesis pathways (erythrocytes, leukocytes). Taken together, vascular NTs are critical in modulating adenosine-mediated responses during conditions such as inflammation or hypoxia.

摘要

核苷转运体(NTs)包括两个广泛表达的家族,即平衡核苷转运体(扩散限制通道)和集中核苷转运体(钠依赖性转运体)。由于它们在血组织界面的解剖位置,血管NTs处于影响血管核苷水平的理想位置,尤其是腺苷,腺苷在急性损伤期间的组织保护中起重要作用。例如,内皮NTs有助于在氧供应受限(缺氧)的情况下维持血管完整性。事实上,缺氧诱导因子-1依赖性的NTs抑制导致细胞外腺苷信号增强,从而减弱缺氧相关的血管渗漏增加。此外,血管NTs还参与心脏缺血预处理、冠状动脉舒张和血小板聚集抑制。此外,通过NTs进行的血管核苷摄取对于核苷回收很重要,特别是在缺乏从头合成核苷酸途径的细胞(红细胞、白细胞)中。综上所述,血管NTs在炎症或缺氧等情况下调节腺苷介导的反应中起关键作用。

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