Department of Orthopedic Surgery, University of Virginia Health System , Charlottesville, VA , USA.
Connect Tissue Res. 2014 Apr;55(2):71-9. doi: 10.3109/03008207.2013.877894. Epub 2014 Jan 24.
Abstract Buckminsterfullerene C60 and derivatives have been extensively explored in biomedical research due to their unique structure and unparalleled physicochemical properties. C60 is characterized as a "free radical sponge" with an anti-oxidant efficacy several hundred-fold higher than conventional anti-oxidants. Also, the C60 core has a strong electron-attracting ability and numerous functional compounds with widely different properties can be added to this fullerene cage. This review focused on the applications of C60 and derivatives in orthopaedic research, such as the treatment of cartilage degeneration, bone destruction, intervertebral disc degeneration (IVDD), vertebral bone marrow disorder, radiculopathy, etc., as well as their toxicity in vitro and in vivo. We suggest that C60 and derivatives, especially the C60 cores coupled with functional groups presenting new biological and pharmacological activities, are advantageous in orthopaedic research and will be promising in clinical performance for musculoskeletal disorders treatment; however, the pharmacokinetics and toxicology of these agents as local/systemic administration need to be carefully determined.
富勒烯 C60 及其衍生物由于其独特的结构和无与伦比的物理化学性质,在生物医学研究中得到了广泛的探索。C60 被描述为一种“自由基海绵”,其抗氧化功效比传统抗氧化剂高出数百倍。此外,C60 核心具有很强的电子吸引能力,可以向这个富勒烯笼中添加具有广泛不同性质的众多功能化合物。本综述重点介绍了 C60 及其衍生物在骨科研究中的应用,例如治疗软骨退变、骨破坏、椎间盘退变(IVDD)、椎体骨髓紊乱、神经根病等,以及它们在体外和体内的毒性。我们认为 C60 及其衍生物,特别是与呈现新的生物学和药理学活性的功能基团偶联的 C60 核心,在骨科研究中具有优势,并将在治疗肌肉骨骼疾病的临床性能方面具有广阔的前景;然而,这些药物作为局部/系统给药的药代动力学和毒理学需要仔细确定。