a Drug Applied Research Center and Faculty of Pharmacy , Tabriz University of Medical Sciences , Tabriz , Iran.
b Student Research Committee, Tabriz University of Medical Sciences , Tabriz , Iran.
Pharm Dev Technol. 2019 Feb;24(2):199-210. doi: 10.1080/10837450.2018.1455210. Epub 2018 Apr 4.
This study explores the preparation and investigation of dissolution properties of piroxicam cocrystals. Differential scanning calorimetry (DSC) was used to determine the capability of resorcinol (RES), methylparaben (MPB), and vanillin (VAN) to form cocrystals with piroxicam (PRX). Generation of cocrystals was attempted by liquid assisted grinding and slurry methods. Cocrystals were characterized by thermal methods, powder X-ray diffraction, and Fourier-transform infrared spectroscopy. Apparent solubility, intrinsic dissolution rate (IDR), and powder dissolution profile of cocrystals were compared with anhydrous piroxicam, piroxicam monohydrate (PRXMH), and previously reported piroxicam-succinic acid cocrystal. Contact angles and particle sizes of the studied solids were also measured. Based on the DSC screening results, we prepared and characterized PRX-RES and PRX-MPB cocrystals. Interestingly, the cocrystals not only failed to improve apparent solubility and IDR of PRX but also showed lower values than PRX that were attributed to induction of phase transformation of PRX to PRXMH. In contrary, cocrystals performed better than PRX in powder dissolution studies. The higher dissolution rates of cocrystals were explained by improved wettability and reduced sizes. This study has highlighted the complexity of solid state properties of cocrystals and has provided new evidence for the in-solution stability issues of cocrystals.
本研究探讨了吡罗昔康共晶的制备和溶解性能研究。采用差示扫描量热法(DSC)研究了间苯二酚(RES)、对羟基苯甲酸甲酯(MPB)和香草醛(VAN)与吡罗昔康(PRX)形成共晶的能力。通过液辅助研磨和浆料法尝试生成共晶。通过热法、粉末 X 射线衍射和傅里叶变换红外光谱对共晶进行了表征。将共晶的表观溶解度、内在溶解速率(IDR)和粉末溶解曲线与无水吡罗昔康、吡罗昔康一水合物(PRXMH)和先前报道的吡罗昔康-琥珀酸共晶进行了比较。还测量了研究固体的接触角和粒径。根据 DSC 筛选结果,我们制备并表征了 PRX-RES 和 PRX-MPB 共晶。有趣的是,共晶不仅未能提高 PRX 的表观溶解度和 IDR,反而显示出比 PRX 更低的值,这归因于 PRX 向 PRXMH 的相变诱导。相反,共晶在粉末溶解研究中表现优于 PRX。共晶更高的溶解速率可以通过改善润湿性和减小粒径来解释。本研究强调了共晶固态性质的复杂性,并为共晶在溶液中的稳定性问题提供了新的证据。