Han Jiawei, Li Luyuan, Su Meiling, Heng Weili, Wei Yuanfeng, Gao Yuan, Qian Shuai
School of Traditional Chinese Pharmacy, China Pharmaceutical University, Nanjing 211198, China.
Pharmaceutics. 2021 Oct 18;13(10):1725. doi: 10.3390/pharmaceutics13101725.
Different from previously reported co-amorphous systems, a co-amorphous curcumin-magnolol (CUR-MAG CM) system, as compared with its crystalline counterparts, exhibited decreased dissolution due to its aggregation during dissolution. The main purpose of the present study is to deaggregate CUR-MAG CM to optimize drug dissolution and explore the deaggregation mechanism involved. Herein, a small amount of polymer (HPMC, HPC, and PVP K30) was co-formulated at 5% (/) with CUR-MAG CM as ternary co-amorphous systems. The polymer addition changed the surface properties of CUR-MAG CM including improved water wettability enhanced surface free energy, and hence exerted a deaggregating effect. As a result, the ternary co-amorphous systems showed faster and higher dissolution as compared with crystalline CUR/MAG and CUR-MAG CM. In addition, the nucleation and crystal growth of dissolved CUR and MAG molecules were significantly inhibited by the added polymer, maintaining a supersaturated concentration for a long time. Furthermore, polymer addition increased the T of CUR-MAG CM, potentially involving molecular interactions and inhibiting molecular mobility, resulting in enhanced physical stability under 25 °C/60% RH and 40 °C/75% RH conditions. Therefore, this study provides a promising strategy to optimize the dissolution and physical stability of co-amorphous systems by deaggregation and crystallization inhibition via adding small amounts of polymers.
与先前报道的共无定形体系不同,共无定形姜黄素-厚朴酚(CUR-MAG CM)体系与其结晶对应物相比,在溶解过程中由于聚集而表现出溶解速率降低。本研究的主要目的是使CUR-MAG CM解聚以优化药物溶解,并探索其中涉及的解聚机制。在此,将少量聚合物(羟丙甲纤维素、羟丙基纤维素和聚乙烯吡咯烷酮K30)以5%(/)的比例与CUR-MAG CM共同配制为三元共无定形体系。聚合物的加入改变了CUR-MAG CM的表面性质,包括改善了水润湿性、提高了表面自由能,从而发挥了解聚作用。结果,与结晶型CUR/MAG和CUR-MAG CM相比,三元共无定形体系表现出更快、更高的溶解速率。此外,加入的聚合物显著抑制了溶解的CUR和MAG分子的成核和晶体生长,使其长时间保持过饱和浓度。此外,聚合物的加入提高了CUR-MAG CM的玻璃化转变温度,可能涉及分子间相互作用并抑制分子流动性,从而在25℃/60%RH和40℃/75%RH条件下提高了物理稳定性。因此,本研究提供了一种有前景的策略,即通过加入少量聚合物进行解聚和抑制结晶来优化共无定形体系的溶解性能和物理稳定性。