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首页> 外文期刊>Journal of Medicinal Chemistry >Design, Synthesis, Structure?Function Relationship, Bioconversion, and Pharmacokinetic Evaluation of Ertapenem Prodrugs
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Design, Synthesis, Structure?Function Relationship, Bioconversion, and Pharmacokinetic Evaluation of Ertapenem Prodrugs

机译:厄他培南前药的设计,合成,结构-功能关系,生物转化和药代动力学评估

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Described here are synthesis and biological evaluations of diversified groups of over 57 ertapenem prodrugs which include alkyl, methylenedioxy, carbonate, cyclic carbonate, carbamate esters, and esters containing active transport groups (e.g., carboxyl, amino acid, fatty acids, cholesterol) and macrocyclic lactones linking the two carboxyl groups. Many of the prodrugs were rapidly hydrolyzed in rat plasma but not in human plasma and were stable in simulated gastrointestinal fluid. The diethyl ester prodrug showed the best total absorption (>30%) by intredeudenal dosing in dogs, which could potentially be improved by formulation development. However, its slow rate of the hydrolysis to ertapenem also led to the presence of large amounts of circulating monoester metabolites, which pose significant development challenges. This study also suggests that the size of susbtituents at C-2 of carbapenem (e.g., benzoic acid of ertapenem) has significant impact on the absorption and the hydrolysis of the prodrugs.
机译:这里描述的是超过57种厄他培南前药的多样化基团的合成和生物学评估,这些药物包括烷基,亚甲二氧基,碳酸酯,环状碳酸酯,氨基甲酸酯以及含有活性转运基团(例如羧基,氨基酸,脂肪酸,胆固醇)和大环酯的酯连接两个羧基的内酯。许多前药在大鼠血浆中迅速水解,但在人血浆中却不水解,并且在模拟胃肠道液中稳定。通过犬内注射给药,二乙酯前药显示出最佳的总吸收(> 30%),这可能通过制剂开发而得到改善。然而,其缓慢水解为厄他培南的速率也导致大量循环单酯代谢物的存在,这构成了显着的开发挑战。该研究还表明,碳青霉烯的C-2处的替代物的大小(例如,厄他培南的苯甲酸)对前药的吸收和水解具有重要影响。

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