脂质体
硫酸软骨素
骨关节炎
药物输送
抗氧化剂
材料科学
药理学
毒品携带者
药品
化学
生物物理学
生物化学
糖胺聚糖
纳米技术
医学
生物
病理
替代医学
作者
Yuzhe He,Miao Sun,Jirong Wang,Xiaofu Yang,Changjian Lin,Lujie Ge,Chenting Ying,Kai Xu,An Liu,Lidong Wu
标识
DOI:10.1016/j.actbio.2022.07.052
摘要
Reactive oxygen species (ROS) play a critical role in the pathogenesis of osteoarthritis. The injection of a single antioxidant drug is characterized by low drug utilization and short residence time in the articular cavity, limiting the therapeutic effect of antioxidant drugs on osteoarthritis. Currently, the drug circulation half-life can be extended using delivery vehicles such as liposomes and microspheres, which are widely used to treat diseases. In addition, the composite carriers of liposomes and hydrogel microspheres can combine the advantages of different material forms and show stronger plasticity and flexibility than traditional single carriers, which are expected to become new local drug delivery systems. Chondroitin sulfate, a sulfated glycosaminoglycan commonly found in native cartilage, has good antioxidant properties and degradability and is used to develop an injectable chondroitin sulfate hydrogel by covalent modification with photo-cross-linkable methacryloyl groups (ChsMA). Herein, ChsMA microgels anchored with liquiritin (LQ)-loaded liposomes ([email protected]) were developed to delay the progression of osteoarthritis by dual antioxidation. On the one hand, the antioxidant drug LQ wrapped in [email protected] microgels exhibits significant sustained-release kinetics due to the double obstruction of the lipid membrane and the hydrogel matrix network. On the other hand, ChsMA can eliminate ROS through degradation into chondroitin sulfate monomers by enzymes in vivo. Therefore, [email protected], as a degradable and dual antioxidant drug delivery platform, is a promising option for osteoarthritis treatment. Compared with the traditional single carrier, the composite carriers of hydrogel microspheres and liposome can complement the advantages of different materials, which shows stronger plasticity and flexibility, and is expected to become a new and efficient drug delivery system. [email protected] not only attenuates IL-1β-induced ECM degradation in chondrocytes but also inhibits the M1 macrophages polarization and the inflammasome activation. The obtained [email protected] alleviates the progression of osteoarthritis in vivo, which is promising for osteoarthritis treatment.
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