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首页> 外文期刊>Pharmacological reports: PR >Structure, stability, and antiplatelet activity of O-acyl derivatives of salicylic acid and lipophilic esters of acethylsalicylate.
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Structure, stability, and antiplatelet activity of O-acyl derivatives of salicylic acid and lipophilic esters of acethylsalicylate.

机译:水杨酸的O-酰基衍生物和乙酰水杨酸酯的亲脂性酯的结构,稳定性和抗血小板活性。

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The anti-thrombotic activity of acetylsalicylic acid (ASA) has been shown to be due to specific irreversible acetylation of blood platelet cyclooxygenase. The aim of our study was to investigate the associations between the antiplatelet activities of derivatives of both ASA and salicylic acid (SA), as well as the structure, stability, and molecular properties of these compounds. Homologous series of O-acyl derivatives of salicylic acid (propionyl-, butyrylsalicylic acids, PSA, BSA) and lipophilic dodecyl (C12)-, hexadecyl (C16)-, and cholesteryl acetylsalicylates were synthesized and tested for structure-activity relationships. The molecular properties (heat of formation, molecular surface area, dipole moment) of ASAand SAderivatives obtained by theoretical calculations changed with the increasing length of the acyl or alkyl residue. The inhibition of whole blood platelet aggregation and the reduction in thromboxane (TX) generation by O-acyl derivatives were concentration-dependent and decreased along with increasing the length of acyl chain. These effects correlated with the extent of platelet reactivity and P-selectin expression inhibition in collagen-activated platelets. In contrast to ASA and O-acyl derivatives of SA, none of the lipophilic ASA derivatives had a significant inhibitory effect on platelet aggregation. In conclusion, all SA and ASA derivatives studied under in vitro conditions showed much lower antiplatelet activities than ASA itself, despite their higher affinity to plasma proteins or membrane components and their equivalent ability to acetylate protein free amino groups.We suggest the significance of the carboxylic group, dipole moment, geometry, and size of these pharmaceuticals in their ability to bind to the active site of cyclooxygenase and their antiplatelet efficacy.
机译:乙酰水杨酸(ASA)的抗血栓形成活性已被证明是由于血小板环氧化酶的特定不可逆乙酰化作用所致。我们研究的目的是研究ASA和水杨酸(SA)衍生物的抗血小板活性之间的联系,以及这些化合物的结构,稳定性和分子性质。合成了水杨酸的同系列O-酰基衍生物(丙酰基-,丁酰基水杨酸,PSA,BSA)和亲脂性十二烷基(C12)-,十六烷基(C16)-和胆甾醇基乙酰水杨酸酯,并测试其结构活性关系。通过理论计算获得的ASA和SA衍生物的分子性质(形成热,分子表面积,偶极矩)随酰基或烷基残基长度的增加而变化。 O-酰基衍生物对全血小板聚集的抑制作用和血栓烷(TX)生成的减少是浓度依赖性的,并且随着酰基链长度的增加而降低。这些作用与胶原活化的血小板中血小板反应性和P-选择蛋白表达抑制的程度有关。与ASA和SA的O-酰基衍生物相反,亲脂性ASA衍生物对血小板聚集均无明显抑制作用。总之,尽管它们对血浆蛋白或膜成分具有更高的亲和力和乙酰化游离蛋白氨基的同等能力,但在体外条件下研究的所有SA和ASA衍生物均显示出比ASA本身低得多的抗血小板活性。这些药物与环加氧酶活性位点结合的能力及其抗血小板功效方面,这些药物的类别,偶极矩,几何形状和大小均不相同。

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