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Aspirin hydrolysis in human and experimental animal plasma and the effect of metal cations on hydrolase activities

机译:阿司匹林在人和实验动物血浆中的水解以及金属阳离子对水解酶活性的影响

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The hydrolyzing properties of plasma esterases for aspirin were investigated in human plasma and plasma from experimental animals. The observed rates of aspirin hydrolysis were in the following order: rabbit > human > monkey > rat > mouse > dog > minipig. In human, monkey, and dog plasma, aspirin was hydrolyzed by their major hydrolases, paraoxonase (PON), butyrylcholinesterase (BChE), and albumin. In rabbit, mouse, and rat plasma, carboxylesterase (CES) was determined to be the enzyme responsible for aspirin hydrolysis, and in mouse and rat plasma, especially the latter, hydrolase activity was increased by the addition of ethopropazine, a specific inhibitor of BChE. Interestingly, divalent cations affected the plasma activity by enhancing or inhibiting the hydrolase activity of plasma BChE. The addition of 2 mM calcium increased the hydrolysis of aspirin in human, monkey, and dog plasma by 2.7-, 1.9-, and 2.3-fold, respectively. Magnesium showed a similar but lesser effect. Increasing concentrations of calcium and magnesium resulted in a two-phase stimulatory effect on aspirin hydrolysis in human plasma. In contrast, the addition of zinc had an inhibitory effect on plasma BChE activity. It is postulated that calcium and magnesium bind to BChE and thereby change the conformation of the enzyme to a more appropriate position for aspirin hydrolysis.
机译:在人血浆和实验动物血浆中研究了血浆酯酶对阿司匹林的水解特性。观察到的阿司匹林水解速率如下:兔子>人>猴子>大鼠>小鼠>狗>小型猪。在人,猴和狗的血浆中,阿司匹林被其主要水解酶,对氧磷酶(PON),丁酰胆碱酯酶(BChE)和白蛋白水解。在兔,小鼠和大鼠的血浆中,确定了羧酸酯酶(CES)是负责阿司匹林水解的酶,而在小鼠和大鼠的血浆中,尤其是后者,通过添加BChE的特异性抑制剂Ethopropazine增加了水解酶的活性。 。有趣的是,二价阳离子通过增强或抑制血浆BChE的水解酶活性来影响血浆活性。添加2 mM钙可使阿司匹林在人,猴和狗血浆中的水解分别增加2.7倍,1.9倍和2.3倍。镁表现出相似但较小的作用。钙和镁的浓度增加对人血浆中的阿司匹林水解产生两相刺激作用。相反,锌的添加对血浆BChE活性具有抑制作用。推测钙和镁与BChE结合,从而将酶的构象改变到更适合阿司匹林水解的位置。

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