Zatta A, Pandolfo L, Caparrotta L, Prosdocimi M, Dejana E, Del Maschio A
Fidia Research Laboratories, Abano Terme, Italy.
Arterioscler Thromb. 1993 May;13(5):696-701. doi: 10.1161/01.atv.13.5.696.
Platelet activation by the stable endoperoxide analogue U46619 is mediated largely by ADP released from platelet-dense granules. Polymorphonuclear leukocytes (PMNs) endowed with ecto-ADPase activity may operate as antiaggregatory cells in platelet aggregation induced by U46619. Unstimulated PMNs were effective in reducing aggregation when platelets were stimulated by threshold concentrations of U46619, whereas at higher concentrations of the stimulus, PMN activation is required. Evidence that the inhibition was mediated by PMN ecto-ADPase activity was obtained by high-performance liquid chromatography analysis, indicating that PMNs were able to efficiently metabolize platelet-active ADP into AMP. Moreover, PMN-derived supernatants were able to inhibit platelet aggregation, suggesting that under this circumstance the inhibition was exerted by an uncharacterized, releasable ADPase activity. This study supports the hypothesis that, besides nitric oxide and hydrogen peroxide, ADPase activity may represent another PMN-mediated pathway capable of regulating platelet activity in areas of reduced blood flow, such as those found in conditions of myocardial ischemia.
稳定的内过氧化物类似物U46619所引发的血小板激活,很大程度上是由血小板致密颗粒释放的ADP介导的。具有胞外ADP酶活性的多形核白细胞(PMN)可能在U46619诱导的血小板聚集中作为抗聚集细胞发挥作用。当血小板受到阈值浓度的U46619刺激时,未受刺激的PMN在减少聚集方面是有效的,而在更高浓度的刺激下,则需要PMN激活。通过高效液相色谱分析获得了抑制作用是由PMN胞外ADP酶活性介导的证据,表明PMN能够有效地将血小板活性ADP代谢为AMP。此外,PMN来源的上清液能够抑制血小板聚集,这表明在这种情况下,抑制作用是由一种未明确的、可释放的ADP酶活性发挥的。本研究支持这样一种假说,即除了一氧化氮和过氧化氢外,ADP酶活性可能代表另一种PMN介导的途径,能够在血流减少的区域(如心肌缺血情况下发现的区域)调节血小板活性。