Inhibitory Effects of Aspirin and Cilostazol on Intracellular Ca2+ Mobilization and Aggregation in Thrombin-activated Human Platelets.

IF 0.7 Q4 MEDICINE, RESEARCH & EXPERIMENTAL
Atsumi Sone, Kensaku Aki, Toshiyuki Yasui, Eiji Hosoi
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引用次数: 1

Abstract

Platelets play an important role in physiological hemostatic mechanisms. In contrast, platelet activation has been implicated in pathological conditions, such as atherosclerosis, angiogenesis, and inflammation. Thrombin is considered to be of particular pathological importance as a platelet-activating substance, and thrombin-activated platelets are detected in the blood of patients with advanced occlusive arterial disease. Ca2+ acts as a second messenger in platelet activation, and the regulation of intracellular Ca2+ concentrations ([Ca2+]i) is important for controlling platelet functions. However, changes in [Ca2+]i by antiplatelet agents remain unclear. Therefore, we herein investigated the relationship between [Ca2+]i and the intensity of platelet aggregation after a thrombin stimulation, the relationship between [Ca2+]i and the intensity of platelet aggregation by antiplatelet agents, and the effects of antiplatelet agents on thrombin-activated platelets as a surrogate platelet model for arterial occlusive disease. Fura2-loaded platelets were treated with phosphate-buffered saline or a low concentration of thrombin (0.005 U/mL), followed by antiplatelet agents (aspirin or cilostazol), and changes in [Ca2+]i and the intensity of platelet aggregation by the thrombin stimulation were measured using fluorescence spectrophotometry. Changes in [Ca2+]i and the intensity of platelet aggregation after the thrombin stimulation as well as the relationship between [Ca2+]i and the intensity of platelet aggregation by antiplatelet agents indicated that cilostazol exerted stronger antiplatelet effects than aspirin and also that antiplatelet effects may be attenuated in thrombin-activated platelets. The present results also suggest the utility of thrombin-activated platelets as a surrogate platelet model for arterial occlusive disease. These results may contribute to future drug development for antiplatelet therapy. J. Med. Invest. 70 : 94-100, February, 2023.

阿司匹林和西洛他唑对凝血酶活化的人血小板细胞内Ca2+动员和聚集的抑制作用。
血小板在生理止血机制中起重要作用。相反,血小板活化与病理条件有关,如动脉粥样硬化、血管生成和炎症。凝血酶作为一种血小板活化物质被认为具有特殊的病理意义,在晚期动脉闭塞性疾病患者的血液中检测到凝血酶活化的血小板。Ca2+作为血小板激活的第二信使,调节细胞内Ca2+浓度([Ca2+]i)对控制血小板功能很重要。然而,抗血小板药物对[Ca2+]i的影响尚不清楚。因此,我们在此研究了凝血酶刺激后[Ca2+]i与血小板聚集强度之间的关系,抗血小板药物与血小板聚集强度之间的关系,以及抗血小板药物对凝血酶活化血小板的影响,作为动脉闭塞性疾病的替代血小板模型。用磷酸盐缓冲盐水或低浓度凝血酶(0.005 U/mL)处理载富拉素的血小板,然后使用抗血小板药物(阿司匹林或西洛他唑),用荧光分光光度法测量凝血酶刺激下[Ca2+]i的变化和血小板聚集强度。凝血酶刺激后[Ca2+]i与血小板聚集强度的变化以及抗血小板药物对[Ca2+]i与血小板聚集强度的关系提示西洛他唑的抗血小板作用强于阿司匹林,且在凝血酶活化的血小板中抗血小板作用可能减弱。目前的结果还表明,凝血酶活化血小板作为动脉闭塞性疾病的替代血小板模型的效用。这些结果可能有助于未来抗血小板治疗药物的开发。中华医学杂志,30(2),2023。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
JOURNAL OF MEDICAL INVESTIGATION
JOURNAL OF MEDICAL INVESTIGATION MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
1.20
自引率
0.00%
发文量
55
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