Department of Inorganic and Analytical Chemistry, Medical University of Warsaw, Faculty of Pharmacy, Banacha 1, Warsaw 02-097, Poland.
Department of Environmental Health Science, Medical University of Warsaw, Faculty of Pharmacy, Banacha 1,Warsaw 02-097, Poland.
Molecules. 2014 Jun 6;19(6):7543-56. doi: 10.3390/molecules19067543.
The development and characterization of novel macromolecular conjugates of ampicillin using branched biodegradable polymers has been described in this study. The conjugates have been prepared coupling the β-lactam antibiotic with branched polymer matrices based on the natural oligopeptide core. The cyto- and genotoxicity of the synthesized polymers were evaluated with a bacterial luminescence test, two protozoan assays and Salmonella typhimurium TA1535. The presence of a newly formed covalent bond between the drug and the polymer matrices was confirmed by 1H-NMR and FTIR studies. A drug content (15.6 and 10.2 mole %) in the macromolecular conjugates has been determined. The obtained macromolecular products have been subjected to further in vitro release studies. The total percentage of ampicillin released after 21 days of incubation was nearly 60% and 14% and this resulted from the different physicochemical properties of the polymeric matrices. This is the first report on the application of branched biodegradable polymeric matrices for the covalent conjugation of ampicillin. The obtained results showed that the synthesized macromolecular drug-conjugates might slowly release the active drug molecule and improve the pharmacokinetics of ampicillin.
本研究描述了使用支化可生物降解聚合物制备氨苄青霉素新型大分子缀合物的方法。这些缀合物是通过将β-内酰胺抗生素与基于天然寡肽核心的支化聚合物基质偶联而制备的。通过细菌发光试验、两种原生动物测定法和鼠伤寒沙门氏菌 TA1535 评估了合成聚合物的细胞毒性和遗传毒性。通过 1H-NMR 和 FTIR 研究证实了药物与聚合物基质之间新形成的共价键的存在。在大分子缀合物中测定了药物含量(15.6 和 10.2 摩尔%)。获得的大分子产物已进行进一步的体外释放研究。孵育 21 天后,氨苄青霉素的总释放百分比接近 60%和 14%,这是由于聚合物基质的不同物理化学性质所致。这是首次报道将支化可生物降解聚合物基质应用于氨苄青霉素的共价缀合。所得结果表明,合成的大分子药物缀合物可能会缓慢释放活性药物分子并改善氨苄青霉素的药代动力学。