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首页> 外文期刊>International Journal of Pharmaceutics >A novel bi-layer ascending release osmotic pump tablet: In vitro investigation and in vivo investigation in pharmacokinetic study and IVIVC evaluation
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A novel bi-layer ascending release osmotic pump tablet: In vitro investigation and in vivo investigation in pharmacokinetic study and IVIVC evaluation

机译:新型双层升压渗透泵片:药代动力学研究和IVIVC评估的体外研究和体内研究

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摘要

This study was aimed to develop an ascending release push-pull osmotic pump (APOP) system with a novel mechanism and an easy manufacture process. Theoretical analysis showed that the key to obtain the non-zero order drug release was to break the balance between the drug suspension release rate in the drug layer and the swelling rate of the core, and an ascending drug release rate was achieved when the former was slower than the latter. A polymer (Polyox WSR N-12K) was introduced as a suspension agent in drug layer to slow down the hydration rate of drug layer. Influence of the composition of drug layer (PEO category, total amount, drug loading and fraction of NaCl), push layer (NaCl amount), and also the level of coating weight gain on the drug release profiles was investigated. Observation of hydration state was estimated by taking photos, and also was confirmed by the theories. Paliperidone was delivered successfully by APOP at an ascending release rate up to 20 h in vitro. The in vivo plasma concentration of paliperidone in beagle dogs increased gradually up to 19 h. The APOP with an easy manufacture process was a promising strategy to deliver drug at an ascending rate.
机译:这项研究旨在开发一种具有新颖机制和易于制造过程的上升释放推拉式渗透泵(APOP)系统。理论分析表明,获得非零阶药物释放的关键是打破药物层中药物混悬剂释放速率与药心溶胀速率之间的平衡,当前者为零时,药物释放速率得以提高。比后者慢。将聚合物(Polyox WSR N-12K)作为悬浮剂引入药物层中以减慢药物层的水合速率。研究了药物层的组成(PEO类别,总量,载药量和NaCl含量),推动层(NaCl量)以及包衣增重水平对药物释放曲线的影响。水合状态的观察是通过拍照来估计的,并且也得到了理论的证实。帕潘立酮通过APOP以高达20小时的体外释放速率成功释放。比格犬体内帕潘立酮的体内血浆浓度逐渐增加,直至19 h。易于制造的APOP是一种有希望的策略,可以使药物以递增的速度传递。

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