College of Bionanotechnology, Kyungwon University, Gyeonggi-Do, Republic of Korea.
Appl Microbiol Biotechnol. 2011 Jun;90(5):1655-67. doi: 10.1007/s00253-011-3291-6. Epub 2011 Apr 27.
Biological efficiency of existing antimicrobial agents is still inadequate to ensure optimal therapeutic index. Developing biocompatible advanced functional materials with antimicrobial properties could be promising for environmentally benign applications. Nanoparticles and other nanoscale materials are of great interest due to their multiple potential applications in material science, medicine, and industry. Nanomaterials possess well renowned antimicrobial activity against several microorganisms; however, it has some non-specific toxicity. Biofunctionalization of nanomaterials is one such topic to address this issue. Rational selection of therapeutically active biomolecules for design of nanoparticles will certainly increase the biological applicability. The present paper describes the current status of different types of biofunctionalized nanoparticles and their antibacterial applications. Key principles such as strategies involved at bio-/nanointerface, the structural activity relationship, and mechanism of action involved in the antibacterial activity of functionalized nanoparticles are briefly discussed. This knowledge is important from the objective of generation of advanced functional nanomaterials with antimicrobial properties.
现有抗菌剂的生物学效率仍然不足以确保最佳治疗指数。开发具有抗菌性能的生物相容性先进功能材料对于环境友好型应用具有广阔的前景。由于纳米粒子和其他纳米级材料在材料科学、医学和工业中有多种潜在的应用,因此它们受到了极大的关注。纳米材料具有针对多种微生物的良好抗菌活性,但也具有一些非特异性毒性。纳米材料的生物功能化是解决这一问题的一个研究方向。选择治疗活性生物分子来设计纳米粒子,无疑将提高其生物学适用性。本文介绍了不同类型的生物功能化纳米粒子及其抗菌应用的现状。简要讨论了生物/纳米界面涉及的策略、结构活性关系以及功能化纳米粒子抗菌活性的作用机制等关键原则。从生成具有抗菌性能的先进功能纳米材料的目标来看,这些知识非常重要。