Pharmaceutics Research Center, Institute of Neuropharmacology, Kerman University of Medical Sciences, Kerman, Iran.
Department of Basic Science, Faculty of Veterinary Medicine, University of Tabriz, Tabriz, Iran.
Curr Rheumatol Rep. 2020 Apr 4;22(4):12. doi: 10.1007/s11926-020-0884-z.
In this review article, we discuss the potential for employing nanotechnological strategies for the diagnosis, monitoring, and clinical management of osteoarthritis (OA) and explore how nanotechnology is being integrated rapidly into regenerative medicine for OA and related osteoarticular disorders.
We review recent advances in this rapidly emerging field and discuss future opportunities for innovations in enhanced diagnosis, prognosis, and treatment of OA and other osteoarticular disorders, the smart delivery of drugs and biological agents, and the development of biomimetic regenerative platforms to support cell and gene therapies for arresting OA and promoting cartilage and bone repair. Nanotubes, magnetic nanoparticles, and other nanotechnology-based drug and gene delivery systems may be used for targeting molecular pathways and pathogenic mechanisms involved in OA development. Nanocomposites are also being explored as potential tools for promoting cartilage repair. Nanotechnology platforms may be combined with cell, gene, and biological therapies for the development of a new generation of future OA therapeutics. Graphical Abstract.
目的综述:在这篇综述文章中,我们讨论了将纳米技术策略应用于骨关节炎(OA)的诊断、监测和临床管理的潜力,并探讨了纳米技术如何快速融入 OA 及相关骨关节炎的再生医学中。
最新发现:我们回顾了这一快速发展领域的最新进展,并讨论了在增强 OA 及其他骨关节炎的诊断、预后和治疗、药物和生物制剂的智能输送以及仿生再生平台的开发方面的创新机会,以支持用于阻止 OA 并促进软骨和骨修复的细胞和基因治疗。纳米管、磁性纳米颗粒和其他基于纳米技术的药物和基因传递系统可用于针对 OA 发展涉及的分子途径和致病机制。纳米复合材料也被探索用作促进软骨修复的潜在工具。纳米技术平台可以与细胞、基因和生物疗法相结合,开发新一代 OA 治疗药物。图表摘要。