Borse Vivek, Pawar Vaishali, Shetty Gautam, Mullaji Arun, Srivastava Rohit
Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay, P.O. Box: 400076, Mumbai, India.
Curr Drug Deliv. 2016;13(2):175-85. doi: 10.2174/1567201812666150812141849.
Implants are an inevitable part of orthopaedic surgery. However, implant associated infection remains a major challenge for orthopaedic surgeons and researchers. This review focuses on current options available for prevention of implant associated infection, their drawbacks and future promising applications of nanotechnology-based approaches. Nanobiotechnology has shown remarkable progress in recent years especially in biomaterials, diagnostics, and drug delivery system. Although several applications of nanobiotechnology in orthopaedics have been described, few have elaborated their role in the prevention of implant related infection in orthopaedics. Novel "smart" drug delivery systems that release antibiotics locally in response to stimuli such as pH, temperature, enzymes or antigens; implant surface modification on a nanoscale to inhibit bacterial adhesion and propagation at the surgical site and biological approaches such as gene therapy to neutralize bacterial virulence and biomolecules to inhibit the quorum sensing adhesion of bacteria and disruption of biofilms can be used effectively to prevent orthopaedic implant related bacterial infection.
植入物是骨科手术中不可避免的一部分。然而,植入物相关感染仍然是骨科医生和研究人员面临的重大挑战。本综述重点关注目前可用于预防植入物相关感染的方法、它们的缺点以及基于纳米技术方法的未来应用前景。近年来,纳米生物技术取得了显著进展,尤其是在生物材料、诊断和药物递送系统方面。尽管已经描述了纳米生物技术在骨科中的几种应用,但很少有研究详细阐述其在预防骨科植入物相关感染中的作用。新型“智能”药物递送系统可根据pH值、温度、酶或抗原等刺激在局部释放抗生素;在纳米尺度上对植入物表面进行修饰以抑制手术部位的细菌粘附和繁殖;以及生物方法,如通过基因疗法中和细菌毒力,利用生物分子抑制细菌群体感应粘附和破坏生物膜,这些方法可有效预防骨科植入物相关细菌感染。