Liu Xin-Hao, Ding Jia-Ying, Zhu Zhi-Heng, Wu Xi-Chen, Song Yong-Jia, Xu Xiao-Ling, Ding Dao-Fang
Center of Rehabilitation Medicine, Yueyang Hospital, Shanghai University of Traditional Chinese Medicine, Shanghai, China.
School of Rehabilitation Science, Shanghai University of Traditional Chinese Medicine, Shanghai, China.
Front Chem. 2022 Aug 16;10:988051. doi: 10.3389/fchem.2022.988051. eCollection 2022.
Arthritis is a group of highly prevalent joint disorders, and osteoarthritis (OA) and rheumatoid arthritis are the two most common types. The high prevalence of arthritis causes severe burdens on individuals, society and the economy. Currently, the primary treatment of arthritis is to relieve symptoms, but the development of arthritis cannot be effectively prevented. Studies have revealed that the disrupted balance of enzymes determines the pathological changes in arthritis. In particular, the increased levels of matrix metalloproteinases and the decreased expression of endogenous antioxidant enzymes promote the progression of arthritis. New therapeutic strategies have been developed based on the expression characteristics of these enzymes. Biomaterials have been designed that are responsive when the destructive enzymes MMPs are increased or have the activities of the antioxidant enzymes that play a protective role in arthritis. Here, we summarize recent studies on biomaterials associated with MMPs and antioxidant enzymes involved in the pathological process of arthritis. These enzyme-related biomaterials have been shown to be beneficial for arthritis treatment, but there are still some problems that need to be solved to improve efficacy, especially penetrating the deeper layer of articular cartilage and targeting osteoclasts in subchondral bone. In conclusion, enzyme-related nano-therapy is challenging and promising for arthritis treatment.
关节炎是一组高度流行的关节疾病,骨关节炎(OA)和类风湿性关节炎是最常见的两种类型。关节炎的高流行率给个人、社会和经济带来了沉重负担。目前,关节炎的主要治疗方法是缓解症状,但无法有效预防关节炎的发展。研究表明,酶平衡的破坏决定了关节炎的病理变化。特别是,基质金属蛋白酶水平的升高和内源性抗氧化酶表达的降低促进了关节炎的进展。基于这些酶的表达特征,已经开发了新的治疗策略。设计了生物材料,当破坏性酶MMPs增加时具有响应性,或者具有在关节炎中起保护作用的抗氧化酶的活性。在这里,我们总结了最近关于与参与关节炎病理过程的MMPs和抗氧化酶相关的生物材料的研究。这些与酶相关的生物材料已被证明对关节炎治疗有益,但仍有一些问题需要解决以提高疗效,特别是穿透关节软骨深层并靶向软骨下骨中的破骨细胞。总之,与酶相关的纳米疗法在关节炎治疗中具有挑战性但前景广阔。