College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu, 610065, P. R. China.
School of Chemistry and Chemical Engineering, Shanxi University, Taiyuan, 030006, P. R. China.
Adv Mater. 2023 Nov;35(44):e2303299. doi: 10.1002/adma.202303299. Epub 2023 Sep 22.
Restoring joint homeostasis is crucial for relieving osteoarthritis (OA). Current strategies are limited to unilateral efforts in joint lubrication, inhibition of inflammation, free radicals scavenging, and cartilage regeneration. Herein, by modifying molybdenum disulfide (MoS ) with Mg -doped polydopamine and coating with polysulfobetaines, a dual-bionic photothermal nanozyme (MPMP) is constructed to mimic antioxidases/hyaluronan synthase for OA therapy. Photothermally enhanced lubrication lowers the coefficient of friction (0.028) in the early stage of OA treatment. The antioxidases-mimicking properties of MPMP nanozyme contribute to eliminating reactive oxygen and nitrogen species (ROS/RNS) (over 90% of scavenging ratio for H O /·OH/O /DPPH/ABTS ) and supplying O . With NIR irradiation, the MPMP nanozyme triggers thermogenesis (upregulating HSP70 expression) and Mg release, which promotes the chondrogenesis in inflammatory conditions by deactivating NF-κB/IL-17 signaling pathways and enhancing MAPK signaling pathway. Benefiting from HSP70 and Mg , MPMP-NIR shows HAS-mimicking activity to increase the intracellular (twofold) and extracellular (3.12-fold) HA production. Therefore, MPMP-NIR demonstrates superior spatiotemporally therapeutic effect on OA in mice model, in terms of osteophytes (83.41% of reduction), OARSI scores (88.57% of reduction), and ACAN expression (2.70-fold of increment). Hence, insights into dual-bionic nanozymes can be a promising strategy for OA therapy or other inflammation-related diseases.
恢复关节内稳态对于缓解骨关节炎(OA)至关重要。目前的策略仅限于关节润滑、抑制炎症、清除自由基和软骨再生的单方面努力。在此,通过用掺镁的聚多巴胺修饰二硫化钼并涂覆聚磺酸甜菜碱,构建了一种双仿生光热纳米酶(MPMP),以模拟抗氧化酶/透明质酸合酶用于 OA 治疗。光热增强的润滑在 OA 治疗的早期将摩擦系数降低至 0.028。MPMP 纳米酶的抗氧化酶模拟特性有助于消除活性氧和氮物种(ROS/RNS)(超过 90%的 H O /·OH/O /DPPH/ABTS 的清除率)并提供 O 。在 NIR 照射下,MPMP 纳米酶引发热生成(上调 HSP70 表达)和 Mg 释放,通过失活 NF-κB/IL-17 信号通路和增强 MAPK 信号通路,在炎症条件下促进软骨生成。受益于 HSP70 和 Mg ,MPMP-NIR 表现出 HAS 模拟活性,可增加细胞内(增加两倍)和细胞外(增加 3.12 倍)HA 的产生。因此,MPMP-NIR 在小鼠模型中对 OA 具有优越的时空治疗效果,在骨赘(减少 83.41%)、OARSI 评分(减少 88.57%)和 ACAN 表达(增加 2.70 倍)方面。因此,对双仿生纳米酶的深入了解可为 OA 治疗或其他炎症相关疾病提供一种有前途的策略。