School of Pharmacy, The University of Queensland, Brisbane, QLD, 4072, Australia.
AAPS PharmSciTech. 2013 Mar;14(1):301-11. doi: 10.1208/s12249-012-9903-3. Epub 2013 Jan 11.
The controlled release of diflunisal and fluconazole from tablets made of novel polymers, poly(acrylic acid) (PAA) crosslinked with either β-cyclodextrin (βCD) or hydroxypropyl-βCD (HPβCD), was investigated and Carbopol 934P (Carbopol) was used as a highly crosslinked PAA for comparison. Diflunisal strongly associates with βCD-PAA and HPβCD-PAA polymers (Ka of 486 and 6,055 M(-1) respectively); thus, it was physically mixed into the conjugates and also precomplexed to identify whether decomplexation has any influence on release kinetics. Fluconazole has poor complexing ability (Ka of 34 M(-1) with HPβCD-PAA); thus, it was only tested as a physical mixture. Swelling and adhesion studies were conducted on all tablet combinations and adhesivity of the CD-PAA polymer tablets was maintained. Diflunisal release was much slower from HPβCD-PAA tablets than from βCD-PAA, suggesting that a higher degree of complexation retards release. The precomplexed diflunisal release was also slower than the physically mixed diflunisal of the corresponding conjugate. The release closely followed zero-order kinetics for HPβCD-PAA, but was more sigmoidal for βCD-PAA and especially Carbopol. Conversely, poorly associating fluconazole released in almost exactly the same way across both polymers and Carbopol, indicating that the release kinetics of poorly associating drugs are not influenced by the presence of cyclodextrins. In view of the varying profiles and release rates shown with diflunisal for the different polymers, the fluconazole data support the concept that adequate complexation can indeed modulate the release kinetics of drugs.
新型聚合物聚(丙烯酸)(PAA)与 β-环糊精(βCD)或羟丙基-β-环糊精(HPβCD)交联形成的片剂中双氯芬酸和氟康唑的控制释放进行了研究,并使用高交联的 PAA Carbopol 934P(Carbopol)作为对照。双氯芬酸与 βCD-PAA 和 HPβCD-PAA 聚合物强烈结合(Ka 分别为 486 和 6,055 M(-1));因此,它被物理混合到缀合物中,并预先络合以确定解络合是否对释放动力学有任何影响。氟康唑与 HPβCD-PAA 的结合能力较差(Ka 为 34 M(-1));因此,仅作为物理混合物进行了测试。对所有片剂组合进行了溶胀和粘附研究,并且保持了 CD-PAA 聚合物片剂的粘附性。与βCD-PAA 相比,HPβCD-PAA 片剂中双氯芬酸的释放速度要慢得多,这表明更高程度的络合会延迟释放。预络合的双氯芬酸释放速度也比相应缀合物的物理混合双氯芬酸慢。释放过程非常接近 HPβCD-PAA 的零级动力学,但对于βCD-PAA 尤其是 Carbopol 则更为双曲线。相反,与环糊精结合能力差的氟康唑在两种聚合物和 Carbopol 上的释放方式几乎相同,这表明与环糊精结合能力差的药物的释放动力学不受环糊精存在的影响。鉴于不同聚合物中双氯芬酸表现出不同的形态和释放速率,氟康唑数据支持这样的概念,即充分的络合确实可以调节药物的释放动力学。