Detection of endothelial cell-derived nitric oxide: Current trends and future directions

Harold I. Magazine
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引用次数: 54

Abstract

The vascular endothelium is a significant site of NO release that inhibits cellular adhesion and maintains a non-thrombogenic surface. Use of newly described technology suggests for the first time that the maximal release of NO induced by cNOS and iNOS activation may be quite similar, implying that it is the duration of NO release and not the concentration of NO produced from stimulated endothelial cells that accounts for the different biological activities of the enzymes. The respective roles of cNOS and iNOS must be carefully evaluated since both enzymes may have potent biological effects at local sites of production.

内皮细胞源性一氧化氮的检测:当前趋势和未来方向
血管内皮是一氧化氮释放的重要部位,它抑制细胞粘附并维持非血栓形成的表面。使用新描述的技术首次表明,由cNOS和iNOS激活诱导的NO的最大释放可能非常相似,这意味着是NO释放的持续时间,而不是受刺激的内皮细胞产生的NO浓度,导致了酶的不同生物活性。必须仔细评估cNOS和iNOS各自的作用,因为这两种酶在局部生产位点可能具有强大的生物效应。
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