前药
化学
厄他培南
水解
生物转化
药代动力学
化学合成
生物利用度
有机化学
立体化学
生物化学
药理学
抗生素
美罗培南
体外
发酵
抗生素耐药性
医学
作者
Sheo B. Singh,Diane Rindgen,Prudence Bradley,Takao Suzuki,Nengxue Wang,Hao Wu,Basheng Zhang,Li Wang,Chongmin Ji,Hongshi Yu,Richard Söll,David B. Olsen,Peter T. Meinke,Deborah A. Nicoll‐Griffith
摘要
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.
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