首页> 外文期刊>Drug development and industrial pharmacy >Controlled release camptothecin tablets based on pluronic and poly(acrylic acid) copolymer. Effect of fabrication technique on drug stability, tablet structure, and release mode.
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Controlled release camptothecin tablets based on pluronic and poly(acrylic acid) copolymer. Effect of fabrication technique on drug stability, tablet structure, and release mode.

机译:基于普鲁尼克和聚(丙烯酸)共聚物的喜树碱控释片。制造工艺对药物稳定性,片剂结构和释放方式的影响。

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摘要

Poly(ethylene oxide)-b-poly(propylene oxide)-b-(polyethylene oxide)-g-poly(acrylic acid), a graft-comb copolymer of Pluronic 127 and poly(acrylic acid) (Pluronic-PAA), was explored as an excipient for tablet dosage form of camptothecin (CPT). The tablets were prepared by either direct compression of the drug-polymer physical blend, suspension in ethanol followed by evaporation, or compression after kneading and characterized with respect to their physical structures, drug stability, and release behavior. Porosity and water uptake rate were strongly dependent on the fabrication procedure, ranking in the order: direct compression of physical blend > compression after suspension/evaporation in ethanol > compression after kneading. Tablets prepared by compression of physical blends swelled in water with a rapid surface gel layer formation that impeded swelling and disintegration of the tablets core. These tablets were able to sustain the CPT release for a period of time longer than those observed with the tablets made by either suspension/evaporation or kneading, which disintegrated within a few minutes. Despite the tablet disintegration, the CPT release was impeded for at least 6 hr, which was attributed to the ability of the Pluronic-PAA copolymers to form micellar aggregates at the hydrated surface of the particles. Physical mixing did not alter the fraction of CPT being in the pharmaceutically active lactone form, whilst the preparation of the tablets by the other two methods caused a significant reduction in the lactone form content. Tablets prepared from the physical blends demonstrated CPT release rates increasing with the pH due to the PAA ionization leading to the increase in the rate and extent of the tablet swelling. The results obtained demonstrate the potential of the Pluronic-PAA copolymers for the oral administration of chemotherapeutic agents.
机译:聚环氧乙烷-b-聚环氧丙烷-b-聚环氧乙烷-g-聚丙烯酸(Pluronic 127和聚丙烯酸(Pluronic-PAA)的接枝梳状共聚物)为用作喜树碱(CPT)片剂剂型的赋形剂。通过直接压制药物-聚合物物理混合物,在乙醇中悬浮,随后蒸发或捏合后压制来制备片剂,并就其物理结构,药物稳定性和释放行为进行表征。孔隙率和吸水率在很大程度上取决于制造程序,其顺序为:物理共混物的直接压缩>在乙醇中悬浮/蒸发后的压缩>捏合后的压缩。通过压缩物理混合物制备的片剂在水中溶胀,形成了快速的表面凝胶层,从而阻止了片剂核心的溶胀和崩解。与通过悬浮/蒸发或捏合制得的片剂在几分钟内崩解的片剂相比,这些片剂能够维持CPT释放更长的时间。尽管片剂崩解,CPT释放仍受阻至少6个小时,这归因于Pluronic-PAA共聚物在颗粒的水合表面形成胶束聚集体的能力。物理混合不会改变具有药物活性内酯形式的CPT的比例,而通过其他两种方法制备片剂会导致内酯形式含量的显着降低。由物理共混物制备的片剂表明,由于PAA离子化,CPT释放速率随pH的增加而增加,导致片剂溶胀的速率和程度增加。获得的结果证明了Pluronic-PAA共聚物对于口服化学治疗剂具有潜力。

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