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双螺杆熔融制粒法制备加巴喷丁颗粒中热熔粘合剂对化学稳定性和可压性的影响。

Effects of thermal binders on chemical stabilities and tabletability of gabapentin granules prepared by twin-screw melt granulation.

机构信息

Division of Molecular Pharmaceutics and Drug Delivery, College of Pharmacy, The University of Texas at Austin, 2409 University Avenue, A1920, Austin, TX 78712, USA.

Division of Chemical Engineering, School of Engineering, the University of Texas at Austin, 200 E Dean Keeton St, Austin, TX 78712, USA.

出版信息

Int J Pharm. 2019 Mar 25;559:37-47. doi: 10.1016/j.ijpharm.2019.01.014. Epub 2019 Jan 17.

Abstract

The effect of thermal binders on the physicochemical properties of gabapentin, a thermally labile drug, in granules prepared using twin-screw melt granulation was investigated in this study. Hydroxypropyl cellulose (HPC), a thermoplastic high molecular-weight binder, was compared against conventional low molecular-weight semi-crystalline thermal binders PEG 8000 and Compritol. Both the chemical degradation and polymorph form change of gabapentin were analyzed. The effects of particle size and molecular weight of HPC on the properties of granules were also studied. To overcome the high melt viscosity of HPC, higher barrel temperatures and higher specific mechanical energy were required to attain suitable granules. As a result, higher levels of gabapentin degradant were observed in HPC-based formulations. However, gabapentin form change was not observed in all formulations. Smaller particle size and lower molecular weight of HPC led to faster granule growth. The tabletability of granules was insensitive to the variations in particle size and molecular weight of HPC. Gabapentin crystal size reduction, HPC size reduction, and HPC enrichment on granule surface were observed for HPC-based granules.

摘要

本研究考察了双螺杆熔融造粒中热粘合剂对热不稳定性药物加巴喷丁颗粒理化性质的影响。将羟丙纤维素(HPC)这种热塑性高分子量粘合剂与传统低分子量半结晶热粘合剂 PEG 8000 和 Compritol 进行了比较。分析了加巴喷丁的化学降解和多晶型变化。还研究了 HPC 的粒径和分子量对颗粒性质的影响。为了克服 HPC 的高熔体粘度,需要更高的机筒温度和更高的比机械能量才能获得合适的颗粒。因此,在基于 HPC 的制剂中观察到更高水平的加巴喷丁降解产物。然而,并非所有制剂中都观察到加巴喷丁的形态变化。较小的粒径和较低分子量的 HPC 导致颗粒生长更快。颗粒的可压性对 HPC 的粒径和分子量变化不敏感。观察到基于 HPC 的颗粒中加巴喷丁晶体尺寸减小、HPC 尺寸减小和 HPC 在颗粒表面富集。

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