Formulation Technology Research Laboratories, Daiichi Sankyo., Ltd., 1-2-58, Hiromachi, Shinagawa-Ku, Tokyo 140-8710, Japan.
Formulation Technology Research Laboratories, Daiichi Sankyo., Ltd., 1-2-58, Hiromachi, Shinagawa-Ku, Tokyo 140-8710, Japan.
J Pharm Sci. 2021 Aug;110(8):2966-2973. doi: 10.1016/j.xphs.2021.03.025. Epub 2021 Apr 6.
For the polymeric carriers of solid dispersions, it is important that carriers themselves dissolve quickly and maintain the supersaturated state of amorphous drugs during their dissolution period to improve bioavailability. Amphipathic 2-methacryloyloxyethyl phosphorylcholine (MPC) polymers can be dissolved in water, owing to the extremely high hydrophilicity of the MPC units, and are used as an ideal feeder for drug molecules to form aggregates in aqueous conditions. We synthesized amphipathic MPC copolymers with different hydrophobic side chains and molar ratios of MPC units, and evaluated the effect of the polymers on dissolution rate and supersaturation maintenance of solid dispersions of indomethacin. In most of the water-soluble amphipathic MPC copolymers, "spring-parachute"-like dissolution behavior was observed, where the drug initially became supersaturated followed by slow precipitation. In particular, MPC copolymers with aromatic rings in their side chains or polymers with a high percentage of hydrophobic units remained in a supersaturated state for a longer period. In contrast, urethane groups, which form hydrogen bonds with drug molecules, could also interact with water and were not conducive to maintaining supersaturation. In addition, water solubility of the polymer is important for rapid dissolution.
对于固体分散体的聚合物载体,载体本身快速溶解并在溶解期间维持无定形药物的过饱和状态以提高生物利用度非常重要。两亲性 2-甲基丙烯酰氧乙基磷酸胆碱(MPC)聚合物由于 MPC 单元的极高亲水性而可溶于水,并且可用作药物分子的理想载体,以在水条件下形成聚集物。我们合成了具有不同疏水性侧链和 MPC 单元摩尔比的两亲性 MPC 共聚物,并评估了聚合物对吲哚美辛固体分散体的溶解速率和过饱和度维持的影响。在大多数水溶性两亲性 MPC 共聚物中,观察到“弹簧降落伞”样的溶解行为,其中药物最初变为过饱和,随后缓慢沉淀。特别是,具有芳环的 MPC 共聚物侧链或具有高比例疏水性单元的聚合物在过饱和状态下的停留时间更长。相比之下,与药物分子形成氢键的氨酯基团也可以与水相互作用,不利于维持过饱和度。此外,聚合物的水溶性对于快速溶解很重要。