Department of Materials and Institute of Biomedical Engineering, Imperial College London, Exhibition Road, SW7 2AZ, London, UK.
Chem Soc Rev. 2010 Sep;39(9):3358-70. doi: 10.1039/b919461b. Epub 2010 Jul 2.
Bioanalytical techniques that enable simple, fast and reliable high sensitivity monitoring of biomolecular interactions are of immense importance for diagnostics and drug development. This tutorial review provides an overview of recent progress in the development of peptide-based hybrid nanomaterials that transduce molecular interactions by exploiting the optical and magnetic properties of nanoparticles. Peptides have emerged as an interesting alternative to conventional biomolecular receptors, such as antibodies, and are facilitating the design of responsive hybrid nanomaterials that are both robust and sensitive for biodiagnostic applications.
生物分析技术对于诊断和药物开发至关重要,这些技术能够实现生物分子相互作用的简单、快速和可靠的高灵敏度监测。本综述介绍了利用纳米粒子的光学和磁学性质来转换分子相互作用的基于肽的杂化纳米材料的最新进展。肽已经成为传统生物分子受体(如抗体)的一种有趣替代品,并促进了响应性杂化纳米材料的设计,这些材料既坚固又灵敏,可用于生物诊断应用。