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首页> 外文期刊>Journal of pharmaceutical sciences. >Kinetics of iron-mediated artemisinin degradation: Effect of solvent composition and iron salt.
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Kinetics of iron-mediated artemisinin degradation: Effect of solvent composition and iron salt.

机译:铁介导的青蒿素降解动力学:溶剂组成和铁盐的影响。

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摘要

The antimalarial endoperoxides, such as artemisinin, are postulated to exert their potent parasiticidal activity via the formation of reactive intermediates in the iron-rich infected erythrocyte. The in vitro chemical reaction profile of putative endoperoxide antimalarials and ferrous iron is often qualitatively used to assess their potential antimalarial activity and to develop a structure-reactivity relationship. This study utilized LCMS to monitor the kinetics of artemisinin degradation and product formation in the presence of iron. A second order degradation reaction (k = 18 M(-1) h(-1)) was observed from the reaction of artemisinin with ferrous sulphate in aqueous acetonitrile to produce a number of stable isomeric rearrangement products. A systematic study of the effect of a number of solvent systems and different iron salts showed pronounced changes in reaction rate and product distribution. The significant effects observed in the current study highlight the need to carefully control reaction conditions when studying peroxide antimalarial stability or attempting to develop in vitro/in vivo correlations of endoperoxide antimalarials and their reactivity with iron. (c) 2005 Wiley-Liss, Inc. and the American Pharmacists Association J Pharm Sci 94:1820-1829, 2005.
机译:假定抗疟疾过氧化物,例如青蒿素,通过在富含铁的感染红细胞中形成反应性中间体而发挥其强大的杀虫活性。推定的过氧化物内抗疟药和二价铁的体外化学反应谱常用于定性评估其潜在的抗疟药活性并建立结构-反应关系。这项研究利用LCMS监测铁存在下青蒿素降解和产物形成的动力学。从青蒿素与硫酸亚铁在乙腈水溶液中的反应中观察到第二级降解反应(k = 18 M(-1)h(-1)),观察到该反应产生了许多稳定的异构体重排产物。对多种溶剂体系和不同铁盐的影响进行的系统研究表明,反应速率和产物分布发生了明显变化。在当前研究中观察到的重大影响表明,在研究过氧化物抗疟药的稳定性或试图开发内过氧化物抗疟药及其与铁的反应性的体内/体外相关性时,需要仔细控制反应条件。 (c)2005 Wiley-Liss,Inc.和美国药剂师协会J Pharm Sci 94:1820-1829,2005。

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