Jing Yaqi, Zhao Qiuhui, Zhang Jiale, Xue Jiadan, Liu Jianjun, Qin Jianyuan, Hong Zhi, Du Yong
Centre for THz Research, China Jiliang University, Hangzhou, 310018, China.
Department of Chemistry, Zhejiang Sci-Tech University, Hangzhou, 310018, China.
Heliyon. 2025 Jan 20;11(3):e41986. doi: 10.1016/j.heliyon.2025.e41986. eCollection 2025 Feb 15.
In this paper, cocrystal polymorphs of RS-ibuprofen (RS-IBU), S (+)-ibuprofen (S(+)-IBU), R (-)-ibuprofen (R(-)-IBU) with nicotinamide (NIC) were synthesized by different methods. RS-IBU is a chiral drug with only one chiral center in the molecule, which has two enantiomers (S (+)-IBU and R (-)-IBU). Due to the low solubility and bioavailability of IBU, its application is limited. The pharmaceutical cocrystal technology can improve the physicochemical properties of the drug. In this paper, we characterized RS-IBU, S (+)-IBU, R (-)-IBU, NIC, physical mixtures and cocrystal polymorphs by terahertz (THz), Raman and X-ray Diffraction (XRD), respectively. By observing the experimental results, we could clearly distinguish the cocrystal polymorphs. We found that the melt recrystallization method can generate cocrystal form A, while the solvent drop grinding method and solution evaporation method can generate cocrystal form B. In addition, in order to verify the successful preparation of them, we used density functional theory (DFT) to optimize and simulate the theoretical structures of the RS-IBU: NIC cocrystal polymorphs, and compared the simulated results with the experimental results. These research results provide a reference for the analysis and preparation of pharmaceutical cocrystal polymorphs and help to distinguish the cocrystal polymorphs.
本文采用不同方法合成了RS-布洛芬(RS-IBU)、S(+)-布洛芬(S(+)-IBU)、R(-)-布洛芬(R(-)-IBU)与烟酰胺(NIC)的共晶多晶型物。RS-IBU是一种分子中仅含一个手性中心的手性药物,有两种对映体(S(+)-IBU和R(-)-IBU)。由于IBU的溶解度和生物利用度较低,其应用受到限制。药物共晶技术可改善药物的物理化学性质。本文分别采用太赫兹(THz)、拉曼和X射线衍射(XRD)对RS-IBU、S(+)-IBU、R(-)-IBU、NIC、物理混合物和共晶多晶型物进行了表征。通过观察实验结果,能够清晰地区分共晶多晶型物。发现熔融重结晶法可生成共晶A晶型,而溶剂滴磨法和溶液蒸发法可生成共晶B晶型。此外,为验证它们的成功制备,利用密度泛函理论(DFT)对RS-IBU:NIC共晶多晶型物的理论结构进行了优化和模拟,并将模拟结果与实验结果进行了比较。这些研究结果为药物共晶多晶型物的分析和制备提供了参考,有助于区分共晶多晶型物。