Jinzhou Medical University, Jinzhou, 121001, Liaoning, China.
Jinzhou Medical University, Jinzhou, 121001, Liaoning, China.
Acta Biomater. 2022 May;144:168-182. doi: 10.1016/j.actbio.2022.03.038. Epub 2022 Mar 28.
Osteoarthritis (OA), a widespread degenerative disease characterized by cartilage destruction, has emerged as a public health challenge in the current aging society. In addition to applied steroids and surgery, near-infrared (NIR) sensitive nano-enzyme for the treatment of osteoarthritis through mitochondrial repair and cartilage protection is attractive and promising. In this study, a NIR sensitive multifunctional heterostructure (EGCG (Epigallocatechin gallate) decorated Au-Ag nano-jars (E@Au-Ag)) was introduced as an enzyme-sensitive active nanoplatform for the treatment of osteoarthritis. Molecular biology results indicated that E@Au-Ag possesses intrinsic properties of anti-oxidative stress and was able to reduce the apoptosis rate of chondrocytes by 83.3%. The area of the intra-articular joint cavity injected with E@Au-Ag can be elevated to 46.6 °C under NIR to promote the release of EGCG further to induce cartilage regeneration. X-ray radiography and section staining showed that E@Au-Ag reduced cartilage damage and decreased OARSI scores by approximately 52% after 8 weeks of treatment in a surgically induced OA model. The results demonstrated that this multifunctional enzyme-like nanoplatform with a synergistic NIR sensitive property to facilitate cartilage migration and regeneration repair provides a promising OA treatment strategy. STATEMENT OF SIGNIFICANCE: 1. NIR-sensitive nano-enzyme is gaining much attention in the field of biomedical materials. 2. EGCG decorated Au-Ag nano-heterostructures were utilized as NIR-sensitive nano-enzymes for the treatment of osteoarthritis through mitochondrial repair and cartilage protection. 3. The obtained multifunctional Au-Ag nano-heterostructures are promising for osteoarthritis treatment.
骨关节炎(OA)是一种广泛存在的退行性疾病,其特征是软骨破坏,在当前老龄化社会中已成为一个公共健康挑战。除了应用类固醇和手术外,通过线粒体修复和软骨保护来治疗骨关节炎的近红外(NIR)敏感纳米酶也很有吸引力和前景。在这项研究中,引入了一种近红外敏感的多功能杂化结构(EGCG(表没食子儿茶素没食子酸酯)修饰的 Au-Ag 纳米罐(E@Au-Ag))作为一种酶敏感的活性纳米平台,用于治疗骨关节炎。分子生物学结果表明,E@Au-Ag 具有抗氧化应激的固有特性,能够将软骨细胞的凋亡率降低 83.3%。在 NIR 下,注入 E@Au-Ag 的关节腔内面积可升高至 46.6°C,以促进 EGCG 的进一步释放,从而诱导软骨再生。X 射线射线照相和切片染色表明,在手术诱导的 OA 模型中,E@Au-Ag 治疗 8 周后,可将软骨损伤减少约 52%,OARSI 评分降低约 52%。结果表明,这种具有协同近红外敏感特性的多功能酶样纳米平台有助于促进软骨迁移和再生修复,为骨关节炎的治疗提供了一种很有前途的策略。意义陈述:1. 近红外敏感纳米酶在生物医学材料领域受到广泛关注。2. 用 EGCG 修饰的 Au-Ag 纳米杂化结构被用作 NIR 敏感的纳米酶,通过线粒体修复和软骨保护来治疗骨关节炎。3. 获得的多功能 Au-Ag 纳米杂化结构有望用于骨关节炎的治疗。