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聚合物辅料对热熔挤出及后续下游加工过程中共晶形成的影响。

Impact of polymeric excipient on cocrystal formation via hot-melt extrusion and subsequent downstream processing.

机构信息

Synthesis & Solid State Pharmaceutical Centre (SSPC), Department of Chemical Sciences, Bernal Institute, University of Limerick, Limerick, Ireland.

Synthesis & Solid State Pharmaceutical Centre (SSPC), Department of Chemical Sciences, Bernal Institute, University of Limerick, Limerick, Ireland.

出版信息

Int J Pharm. 2019 Jul 20;566:745-755. doi: 10.1016/j.ijpharm.2019.06.031. Epub 2019 Jun 15.

Abstract

Pharmaceutical cocrystals have gained increasing interest due to their potential to modify the physicochemical properties of drugs. Herein, a 1:1 cocrystal of ibuprofen (IBU) as a BCS class II active pharmaceutical ingredient (API) and nicotinamide as coformer was produced using a hot-melt extrusion (HME) process. The effect of process parameters such as barrel temperature and screw speed were studied. It was shown that the addition of polymeric excipient such as soluplus (Sol) decreases the cocrystallization temperature by enhancing the interaction between API and coformer. In order to study the effect of cocrystallization on the tableting properties of IBU-NIC cocrystal, 5 different formulations of pure IBU, IBU-NIC cocrystal, IBU-NIC physical mixture, IBU-NIC-Sol physical mixture and IBU-NIC-Sol cocrystal were tableted by a compaction simulator. Tabletability, compactibility and compressibility were investigated. The sample with IBU-NIC-Sol cocrystal formulation outperformed all the other formulations in terms of tabletability, compactibility and compressibility. Interestingly, this sample was even superior to the IBU-NIC cocrystal sample which verified the advantageous effect of the presence of an excipient. Moreover, dissolution test confirmed a noticeable increase in the dissolution of not only the cocrystal samples but even the physical mixtures of IBU and NIC compared with pure IBU.

摘要

由于药物共晶有可能改变药物的物理化学性质,因此它们受到了越来越多的关注。在此,使用热熔挤出(HME)工艺生产了布洛芬(IBU)作为 BCS 类 II 活性药物成分(API)和烟酰胺的 1:1 共晶。研究了工艺参数(如机筒温度和螺杆速度)的影响。结果表明,添加聚合物赋形剂(如 Soluplus)可通过增强 API 和共晶形成剂之间的相互作用来降低共晶化温度。为了研究共晶化对 IBU-NIC 共晶压片性能的影响,使用压片机模拟仪对纯 IBU、IBU-NIC 共晶、IBU-NIC 物理混合物、IBU-NIC-Sol 物理混合物和 IBU-NIC-Sol 共晶的 5 种不同配方进行了压片。考察了可压性、可压缩性和压缩性。在可压性、可压缩性和压缩性方面,含有 IBU-NIC-Sol 共晶配方的样品优于其他所有配方。有趣的是,该样品甚至优于 IBU-NIC 共晶样品,这验证了赋形剂存在的有利效果。此外,溶出度测试证实,不仅共晶样品,甚至 IBU 和 NIC 的物理混合物的溶出度都有明显增加,与纯 IBU 相比。

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