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Colistimethate Acidic Hydrolysis Revisited: Arrhenius Equation Modeling Using UPLC-QToF MS

机译:Colistimethate酸性水解重新审议:使用UPLC-QTOF MS的Arrhenius方程建模

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摘要

Colistimethate (CMS), the prodrug of polymyxin E (colistin), is an antibiotic widely used as a last-line therapy against multidrug resistant Gram-negative bacteria, but little is known about its pharmacokinetics as its administration has stopped as a result of high neuro- and nephro-toxicity. The measurement of CMS levels in patients’ biological fluids is of great importance in order to find the optimal dose regimen reducing the drug toxicity. Until now, CMS assay methods are based on the indirect determination after its hydrolysis to colistin (CS). Herein, the aim is to find the optimal conditions for the complete hydrolysis of CMS to CS. The reaction was studied at accelerated conditions: 40 °C, 50 °C, and 60 °C, and the results were evaluated by assessing the Arrhenius equation and computation employing the Tenua software. A validated analytical methodology based on ultra-performance liquid chromatography (UPLC) coupled to a hybrid quadrupole time of flight (QToF) instrument is developed for the simultaneous measurement of CMS and CS. The current methodology resulted in complete hydrolysis, in contrast with the previously reported one.
机译:Colistimethate(CMS),多粘蛋白E(Colistin)的前药是广泛用作针对多药抗革兰阴性细菌的最后疗法的抗生素,但由于其给药由于高度而达到其药代动力学而言毫无少神经和肾脏毒性。患者的生物流体中CMS水平的测量非常重要,以发现降低药物毒性的最佳剂量方案。到目前为止,CMS测定方法基于将水解后的间接测定基于水解菌(CS)。这里,目的是找到CMS完全水解的最佳条件。在加速条件下研究了反应:40℃,50℃和60℃,并通过评估采用Tenua软件的Arhenius方程和计算来评估结果。基于超性能液相色谱(UPLC)的验证的分析方法耦合到杂交四极其飞行时间(QTOF)仪器(QTOF)仪器,用于同时测量CMS和CS。目前的方法导致完全水解,相反,与先前报道的一个相反。

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