Department of Clinical and Experimental Medicine, University of Piemonte Orientale A. Avogadro, Novara, Italy.
Steroids. 2012 Feb;77(3):260-8. doi: 10.1016/j.steroids.2011.12.010. Epub 2011 Dec 13.
Dehydroepiandrosterone (DHEA) and its sulfated form, DHEA-S, are the most abundant steroids circulating in human blood. DHEA stimulates endothelial cells to release high amounts of nitric oxide in the circulation. Nitric oxide activates guanylyl cyclase in platelets thus decreasing the responsiveness of these cells to physiological agonists. However, the impact of DHEA-S and DHEA on platelet function and their possible role in modulating the response of human platelets to physiological agonists were not yet investigated. Here, DHEA-S, but not DHEA, inhibited in vitro thrombin-dependent platelet aggregation in a dose-dependent manner. DHEA-S exerted this effect by decreasing thrombin-dependent dense granule secretion, and so impairing the positive feed-back loop provided by ADP. Furthermore, DHEA-S inhibited thrombin-dependent activation of Akt, ERK1/2, and p38 MAP kinase. Although both DHEA-S and DHEA directly activated in platelets the inhibitory cGMP/PGK/VASP pathway, these events were not responsible for the inhibitory action of DHEA-S in platelets. In addition DHEA-S acted in synergism with nitric oxide in inhibiting platelet aggregation. In conclusion DHEA-S inhibited platelet activation caused by a mild stimulus without completely hampering platelet functionality and thus DHEA-S may participate in the physiological mechanisms that maintain circulating platelets in a resting state. The role played by DHEA-S could be relevant mainly when the functionality of the vascular endothelium is compromised.
脱氢表雄酮(DHEA)及其硫酸酯形式 DHEA-S 是循环血液中含量最丰富的甾体激素。DHEA 可刺激内皮细胞在循环中释放大量一氧化氮。一氧化氮激活血小板中的鸟苷酸环化酶,从而降低这些细胞对生理激动剂的反应性。然而,DHEA-S 和 DHEA 对血小板功能的影响及其在调节人血小板对生理激动剂反应中的可能作用尚未被研究。在这里,DHEA-S 而非 DHEA 可剂量依赖性地抑制体外凝血酶依赖性血小板聚集。DHEA-S 通过减少凝血酶依赖性致密颗粒分泌来发挥此作用,从而破坏 ADP 提供的正反馈环。此外,DHEA-S 抑制凝血酶依赖性 Akt、ERK1/2 和 p38 MAP 激酶的激活。尽管 DHEA-S 和 DHEA 均可直接在血小板中激活抑制性 cGMP/PGK/VASP 通路,但这些事件不是 DHEA-S 在血小板中抑制作用的原因。此外,DHEA-S 与一氧化氮协同作用抑制血小板聚集。总之,DHEA-S 可抑制轻度刺激引起的血小板激活,而不会完全阻碍血小板的功能,因此 DHEA-S 可能参与维持循环血小板处于静止状态的生理机制。DHEA-S 所起的作用主要与血管内皮功能受损时相关。