School of Pharmacy , De Montfort University , Leicester LE1 9BH , U.K.
College of Materials Science and Engineering , North China University of Science and Technology , Tangshan 063210 , Hebei , China.
Mol Pharm. 2018 Sep 4;15(9):4257-4272. doi: 10.1021/acs.molpharmaceut.8b00670. Epub 2018 Aug 20.
The dissolution and permeation of the cocrystals, flufenamic acid-nicotinamide (FFA-NIC) and flufenamic acid-theophylline (FFA-TP), have been investigated in the presence of two polymers, polyvinylpyrrolidone (PVP) and copolymer of vinylpyrrolidone/vinyl acetate (PVP-VA), using a dissolution/permeation (D/P) system. It showed that the types and concentrations of the polymers and their interactions with the coformers had significant effects on the dissolution and permeation of the FFA cocrystals. The role of PVP as a stabilizing agent was not altered in spite of its interaction with the coformer of NIC or TP, which was supported by the proportional flux rate of FFA to the dissolution performance parameter (DPP). With an appropriate PVP concentration, the maximal flux rate of FFA could be obtained for a given FFA cocrystal. The situation was complicated in the presence of PVP-VA. The role of PVP-VA could change because of its association with the coformers, i.e., from a stabilizing agent to a solubilization agent. In addition, PVP-VA reduced the flux rate of FFA, in contrast to its DPP for FFA cocrystals. Finally, H NMR provided evidence regarding the molecular interactions between FFA, coformers, and polymers at the atomic level and gave insight into the mechanism underlying the supersaturated solution and subsequent permeation behavior of the cocrystals.
在两种聚合物——聚乙烯吡咯烷酮(PVP)和醋酸乙烯酯/乙烯基吡咯烷酮共聚物(PVP-VA)的存在下,通过溶解/渗透(D/P)系统研究了共晶化合物氟芬那酸-烟酰胺(FFA-NIC)和氟芬那酸-茶碱(FFA-TP)的溶解和渗透情况。结果表明,聚合物的类型和浓度及其与共晶形成剂的相互作用对 FFA 共晶的溶解和渗透有显著影响。尽管 PVP 与 NIC 或 TP 的共晶形成剂相互作用,但它作为稳定剂的作用并未改变,这得到了 FFA 相对于溶解性能参数(DPP)的比例通量速率的支持。在适当的 PVP 浓度下,对于给定的 FFA 共晶,可以获得 FFA 的最大通量速率。在存在 PVP-VA 的情况下,情况变得复杂。由于其与共晶形成剂的结合,PVP-VA 的作用可能会发生变化,即从稳定剂变为增溶剂。此外,PVP-VA 降低了 FFA 的通量速率,而与其对 FFA 共晶的 DPP 相反。最后,1H NMR 提供了有关 FFA、共晶形成剂和聚合物在原子水平上的分子相互作用的证据,并深入了解了共晶过饱和溶液和随后渗透行为的机制。