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Chirality-Based Biosensors
DOI:10.1002/adfm.201805512.png)
摘要
En 中文
The fabrication of chiral nanostructures gives rise to characteristic chiroptical activity, which can be used for chirality-based biosensors. Great progress is made in the use of nanoassemblies for the construction of chiral nanoparticle dimers, pyramids, helices, and twisted structures, and their chiroptical activities correlate with diverse structural geometries and enantiomeric configurations. In DNA-hybridization-based chiral nanoassemblies, the assembly parameters, such as the components, gaps, multicomponents, and the aftergrowth of metal, can result in multiple bands and enhanced chiroptical effects. Based on known chiral nanostructures, the existing chiral nanoassembly-based biosensors together with their targets and signal amplification strategies are reviewed. Chirality involves multiple signals, and multitarget biosensors are introduced with newly developed chiral architectures for the accurate and reliable monitoring of biomarkers in living cells. The interactions between chiral nanoarchitectures and biosystems are also highlighted, which are important not only in the chiral dynamic switching of nano-objects for biomonitoring, but also in manipulating cell growth, proliferation, and adhesion. The future perspectives on chiral fabrication and its use in biosensors are also comprehensively discussed.
Keyword:
biosensors
chirality
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期刊
IF:
19
论文数:
3.5W
被引数:
32.1W
机构
引用论文
Dual-Mode Ultrasensitive Quantification of MicroRNA in Living Cells by Chiroplasmonic Nanopyramids Self-Assembled from Gold and Upconversion Nanoparticles通过金和上转换纳米颗粒自组装的Chiroplasmonic纳米锥对活细胞中的MicroRNA进行双模超灵敏定量
Ligation Chain Reaction based gold nanoparticle assembly for ultrasensitive DNA detection基于连接链反应的金纳米粒子组装用于超灵敏DNA检测
CdSe Quantum Dots Functionalized with Chiral, Thiol-Free Carboxylic Acids: Unraveling Structural Requirements for Ligand-Induced Chirality用手性,无硫醇羧酸功能化的CdSe量子点: 解开配体诱导的手性的结构要求
ACS NANO
IF16

