Hildebrandt Niko, Tagit Oya
J Nanosci Nanotechnol. 2018 Oct 1;18(10):6671-6679. doi: 10.1166/jnn.2018.15748.
The use of nanotechnologies for the development of highly sensitive and affordable diagnostic assays has significantly improved the ability to detect and characterize multiple types of biomarkers. Semiconductor and metal nanoparticles with unique optical properties have been successfully integrated within biomarker detection schemes for the generation and enhancement of optical signals in label-based and label-free assays. Highly sensitive label-based diagnostics has been realized particularly via using quantum dots (QDs) as labeling probes. Similarly, many label-free techniques that are emerging as potential complements to label-based approaches benefit from signal enhancement strategies using e.g., metal nanoparticles. This review presents a concise overview of recent advances in diagnostic assays that utilize nanoparticles for the generation and enhancement of optical signals in fluorescence- and surface plasmon resonance-based techniques. Advanced diagnostic assays that utilize nanoparticles provide major improvements in detection sensitivity, which can potentially meet the challenging requirements of clinical diagnostics.
利用纳米技术开发高灵敏度且价格可承受的诊断检测方法,显著提高了检测和鉴定多种生物标志物的能力。具有独特光学特性的半导体和金属纳米颗粒已成功整合到生物标志物检测方案中,用于基于标记和无标记检测中光信号的产生和增强。特别是通过使用量子点(QD)作为标记探针,实现了高灵敏度的基于标记的诊断。同样,许多作为基于标记方法潜在补充而出现的无标记技术,受益于使用例如金属纳米颗粒的信号增强策略。本综述简要概述了诊断检测的最新进展,这些检测利用纳米颗粒在基于荧光和表面等离子体共振的技术中产生和增强光信号。利用纳米颗粒的先进诊断检测方法在检测灵敏度方面有了重大改进,这有可能满足临床诊断的挑战性要求。