Nicolaos Georges, Crauste-Manciet Sylvie, Farinotti Robert, Brossard Denis
Laboratoire de Pharmacotechnie, Faculté des Sciences Pharmaceutiques et Biologiques, Paris 5, 4 Avenue de l'Observatoire, Paris 75006, France.
Int J Pharm. 2003 Sep 16;263(1-2):165-71. doi: 10.1016/s0378-5173(03)00365-x.
Absolute bioavailability of cefpodoxime proxetil is both limited by its low solubility in aqueous solution and its intraluminal hydrolysis. The oil-in-water submicron emulsion was proven to be effective in protecting the prodrug from the enzymatic attack in rabbit intestinal washings. The aim of the study was to perform a pharmacokinetic study in conscious rats to confirm o/w submicron superiority in comparison to other oral formulations (hydro-alcoholic solution, suspension and coarse emulsion). The pharmacokinetic study was performed in conscious rats implanted with permanent aortic catheters. A parenteral solution of cefpodoxime was injected via this catheter, and oral formulations were administered orally. The cefpodoxime plasma level was performed by a HPLC validated method. The pharmacokinetic parameters, t1/2, Cmax, tmax, AUC and absolute bioavailability (F) were determined with a non-compartmental analysis. The results show a significant increase of F for submicron emulsion (97.4%) between the other oral formulations. No significant difference of F was found between the other oral formulations, even with the coarse o/w emulsion. The o/w submicron emulsion made the enhancement of the absolute bioavailability of cefpodoxime proxetil possible. This benefit could be explained by the low droplet size of the submicron emulsion which improve the absorption process of the prodrug.
头孢泊肟酯的绝对生物利用度受到其在水溶液中低溶解度及其肠腔内水解的限制。水包油亚微米乳剂已被证明能有效保护前体药物免受兔肠道灌洗液中酶的攻击。本研究的目的是在清醒大鼠中进行药代动力学研究,以确认与其他口服制剂(水醇溶液、混悬液和粗乳剂)相比,水包油亚微米乳剂的优越性。药代动力学研究在植入永久性主动脉导管的清醒大鼠中进行。通过该导管注射头孢泊肟的肠胃外溶液,并口服给予口服制剂。采用经过高效液相色谱法验证的方法测定头孢泊肟的血浆水平。通过非房室分析确定药代动力学参数t1/2、Cmax、tmax、AUC和绝对生物利用度(F)。结果显示,与其他口服制剂相比,亚微米乳剂的F显著增加(97.4%)。即使是粗水包油乳剂,其他口服制剂之间的F也没有显著差异。水包油亚微米乳剂使提高头孢泊肟酯的绝对生物利用度成为可能。这种益处可以通过亚微米乳剂的小液滴尺寸来解释,其改善了前体药物的吸收过程。