Kawashima S, Sugimura M, Noguchi T, Fujiwara H
Chem Pharm Bull (Tokyo). 1989 Jul;37(7):1899-903. doi: 10.1248/cpb.37.1899.
Rectal absorption of bacampicillin hydrochloride (BAPC) was found to show the best bioavailability with Witepsol H-15 as suppository base among various Witepsol bases. However, an effective plasma concentration of drug (above 0.5 micrograms/ml) was only maintained for 2 h, so sustained-release suppositories of BAPC were studied. Bacampicillin reacts with acidic polymer electrolytes such as pectic acid (Pc), chondroitin sulfate (Cd) and precipitates as its adduct with the polymer in an aqueous solution. The dissolution rate of BAPC from the adducts in a solution was slower than that of BAPC itself. The absorptions of BAPC from the suppositories containing the adducts were prolonged, but the bioavailabilities were decreased compared to that from the suppository containing BAPC alone. Similar prolonged absorption could be obtained simply by mixing Pc or Cd with BAPC in a base. Further, the absorption rate was found to be controlled by the amount of the polymer addition, and both a high plasma level and excellent bioavailability were obtained. This desirable outcome may be due to the simultaneous occurrence of rapid absorption of BAPC itself and formation of the adducts.
在各种Witepsol基质中,发现以Witepsol H-15为栓剂基质时,盐酸巴卡西林(BAPC)的直肠吸收显示出最佳的生物利用度。然而,药物的有效血浆浓度(高于0.5微克/毫升)仅维持2小时,因此对BAPC的缓释栓剂进行了研究。巴卡西林与酸性聚合物电解质如果胶酸(Pc)、硫酸软骨素(Cd)反应,并在水溶液中作为其与聚合物的加合物沉淀。BAPC从加合物在溶液中的溶解速率比BAPC本身慢。含加合物的栓剂中BAPC的吸收时间延长,但与仅含BAPC的栓剂相比,生物利用度降低。通过简单地在基质中将Pc或Cd与BAPC混合,也可以获得类似的吸收时间延长。此外,发现吸收速率受聚合物添加量的控制,并且获得了高血浆水平和优异的生物利用度。这种理想的结果可能是由于BAPC本身的快速吸收和加合物形成同时发生。