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Design, synthesis and in vitro kinetic study of tranexamic acid prodrugs for the treatment of bleeding conditions

机译:氨甲环酸前药治疗出血性疾病的设计,合成和体外动力学研究

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Based on density functional theory (DFT) calculations for the acid-catalyzed hydrolysis of several maleamic acid amide derivatives four tranexamic acid prodrugs were designed. The DFT results on the acid catalyzed hydrolysis revealed that the reaction rate-limiting step is determined on the nature of the amine leaving group. When the amine leaving group was a primary amine or tranexamic acid moiety, the tetrahedral intermediate collapse was the rate-limiting step, whereas in the cases by which the amine leaving group was aciclovir or cefuroxime the rate-limiting step was the tetrahedral intermediate formation. The linear correlation between the calculated DFT and experimental rates for N-methylmaleamic acids 1-7 provided a credible basis for designing tranexamic acid prodrugs that have the potential to release the parent drug in a sustained release fashion. For example, based on the calculated B3LYP/6-31G(d,p) rates the predicted t1/2 (a time needed for 50 % of the prodrug to be converted into drug) values for tranexamic acid prodrugs ProD 1-ProD 4 at pH 2 were 556 h [50.5 h as calculated by B3LYP/311+G(d,p)] and 6.2 h as calculated by GGA: MPW1K), 253 h, 70 s and 1.7 h, respectively. Kinetic study on the interconversion of the newly synthesized tranexamic acid prodrug ProD 1 revealed that the t1/2 for its conversion to the parent drug was largely affected by the pH of the medium. The experimental t1/2 values in 1 N HCl, buffer pH 2 and buffer pH 5 were 54 min, 23.9 and 270 h, respectively. Graphical Abstract: [Figure not available: see fulltext.]
机译:基于密度泛函理论(DFT)计算,对几种马来酰胺酰胺衍生物进行酸催化水解,设计了四种氨甲环酸前药。酸催化水解的DFT结果表明,反应速率限制步骤取决于胺离去基团的性质。当胺离去基团是伯胺或氨甲环酸部分时,四面体中间体塌陷是限速步骤,而在胺离去基团是阿昔洛韦或头孢呋辛的情况下,限速步骤是四面体中间体的形成。 N-甲基马来酰胺酸1-7的DFT计算值与实验速率之间的线性相关性为设计可能具有以持续释放方式释放母体药物的氨甲环酸前药提供了可靠的基础。例如,基于计算得出的B3LYP / 6-31G(d,p)率,氨甲环酸前药ProD 1-ProD 4的预测t1 / 2(将50%的前药转化为药物所需的时间)值为pH 2分别为556 h [B3LYP / 311 + G(d,p)计算的50.5 h]和GGA:MPW1K计算的6.2 h,分别为253 h,70 s和1.7 h。对新合成的氨甲环酸前药ProD 1相互转化的动力学研究表明,转化为母体药物的t1 / 2受培养基pH的影响很大。在1 N HCl,pH 2缓冲液和pH 5缓冲液中的实验t1 / 2值分别为54分钟,23.9和270小时。图形摘要:[该图不可用:请参见全文。]

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