Department of Pharmacy, Haining People's Hospital, Jiaxing 314400, Zhejiang, China.
Department of Pharmacy, Hefei Stomatological Hospital, Hefei 230000, China.
Biomacromolecules. 2024 Jun 10;25(6):3831-3839. doi: 10.1021/acs.biomac.4c00440. Epub 2024 May 10.
This study utilizes mechanochemistry to prepare retinol acetate (RA) solid dispersion (RA-sodium starch octenyl succinate (SSOS)), resulting in improved solubility, stability, and bioavailability compared with raw RA and commercial RA microcapsules. RA, poloxamer 188, SSOS, and milling beads (8 mm) were mixed in a ratio of 2:1:8:220 (w/w) and ball-milled at 100 rpm for 3 h. RA-SSOS exhibited a solubility of 1020.35 μL/mL and a 98.09% retention rate after aging at 30 °C. Rats fed with RA-SSOS showed an ∼30% increase in organ RA content. Characterization analysis attributed the solubility and stabilization of RA-SSOS to hydrogen bonding between RA and SSOS, along with an amorphous state. RA-SSOS offers significant advantages for the pharmaceutical and food industries, leveraging mechanochemistry to enhance solid dispersions for hydrophobic compounds and optimize drug delivery.
本研究利用机械化学法制备视黄醇乙酸酯(RA)固体分散体(RA-辛烯基琥珀酸钠淀粉(SSOS)),与原 RA 和市售 RA 微胶囊相比,其溶解度、稳定性和生物利用度得到改善。RA、泊洛沙姆 188、SSOS 和研磨珠(8mm)以 2:1:8:220(w/w)的比例混合,并在 100rpm 下球磨 3h。RA-SSOS 在 30°C 老化后,溶解度为 1020.35μL/mL,保留率为 98.09%。给予 RA-SSOS 的大鼠,其器官 RA 含量增加了约 30%。特征分析表明,RA-SSOS 的溶解度和稳定性归因于 RA 和 SSOS 之间的氢键以及无定形状态。RA-SSOS 为制药和食品行业带来了显著优势,利用机械化学增强疏水性化合物的固体分散体并优化药物传递。