Rinder C S, Student L A, Bonan J L, Rinder H M, Smith B R
Department of Anesthesiology, Yale University School of Medicine, New Haven, CT 06510.
Blood. 1993 Jul 15;82(2):505-12.
The involvement of metabolites of arachidonic acid in platelet-dense granule secretion and secondary platelet-platelet interactions is well characterized. However, their role in heterotypic interactions dependent on alpha-granule secretion is less well understood. Using platelet-surface expression of P-selectin as a marker of alpha-granule secretion, we have shown that: (1) aspirin treatment of platelets at doses that block dense granule secretion does not inhibit alpha-granule secretion to adenosine diphosphate (ADP); (2) synergism between epinephrine and ADP in the induction of P-selectin expression is similarly unaffected by aspirin; and (3) the ability of P-selectin to mediate adhesion of activated platelets to monocytes and polymorphonuclear lymphocytes in whole blood is also unchanged by aspirin treatment. To further explore the mechanisms responsible for platelet alpha-granule secretion, we have shown that inhibition of Na+/H+ exchange by either acidification of the extracellular medium or amiloride treatment blocked ADP-induced P-selectin expression. In contrast, incubation with the platelet lipoxygenase inhibitor 5,8,11-eicosatrynoic acid, by itself and with aspirin, did not decrease ADP-induced P-selectin expression. We conclude that platelet alpha-granule secretion in response to ADP is dependent on intact Na+/H+ exchange but is independent of the lipoxygenase- and cyclooxygenase-dependent metabolites of arachidonic acid.
花生四烯酸的代谢产物在血小板致密颗粒分泌及血小板-血小板二次相互作用中的参与情况已得到充分表征。然而,它们在依赖α颗粒分泌的异型相互作用中的作用却鲜为人知。以血小板表面P-选择素的表达作为α颗粒分泌的标志物,我们发现:(1)以阻断致密颗粒分泌的剂量用阿司匹林处理血小板,并不抑制其对二磷酸腺苷(ADP)的α颗粒分泌;(2)肾上腺素与ADP在诱导P-选择素表达方面的协同作用同样不受阿司匹林影响;(3)阿司匹林处理也不会改变P-选择素介导活化血小板与全血中单核细胞和多形核淋巴细胞黏附的能力。为进一步探究血小板α颗粒分泌的机制,我们发现,通过细胞外培养基酸化或用氨氯吡咪处理抑制Na+/H+交换,可阻断ADP诱导的P-选择素表达。相比之下,用血小板脂氧合酶抑制剂5,8,11-二十碳三烯酸单独处理以及与阿司匹林共同处理,均不会降低ADP诱导的P-选择素表达。我们得出结论,血小板对ADP的α颗粒分泌依赖完整的Na+/H+交换,但独立于花生四烯酸的脂氧合酶和环氧化酶依赖性代谢产物。