State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi, China; School of Food Science and Technology, Jiangnan University, Wuxi, China.
College of Food and Biological Engineering, Jimei University, Xiamen, 361021, China.
Talanta. 2024 Feb 1;268(Pt 1):125270. doi: 10.1016/j.talanta.2023.125270. Epub 2023 Oct 14.
DNA nanostructures, with their fascinating luminescent and detecting capabilities, provide a basis that can accommodate a wide range of applications. The unique electronic configurations, and physical and chemical properties of aptamer-assembled gold nanoclusters (apt-AuNCs) as a novel type of fluorophore have gradually piqued the interest of the scientific community. Bending DNA sequences and other templates/legends as a stabilizing agent with Au metal has produced an abundance of biosensors, along with catalytic and imaging properties. This review article summarizes the synthesis, conjugation tactics, advantages, and sensing mechanisms of AuNCs aptasensor after providing a brief introduction to the topic. Moreover, the application of DNA/aptamer functionalization has been briefly discussed in the fields of food safety and quality, catalysis, clinical diagnosis, cancer cell bioimaging, detection of cancer cell indicators, and therapy. We also concluded the current obstacles and made recommendations about the future prospects of AuNCs for fundamental research and applications in line with the developments in DNA/aptamer-AuNCs.
DNA 纳米结构具有迷人的发光和检测能力,为广泛的应用提供了基础。适体组装的金纳米团簇(apt-AuNCs)作为一种新型荧光团,其独特的电子结构、物理和化学性质逐渐引起了科学界的兴趣。将 DNA 序列和其他模板/图例弯曲作为 Au 金属的稳定剂,产生了大量的生物传感器,以及催化和成像性能。本文综述了 AuNCs aptasensor 的合成、偶联策略、优点和传感机制,在简要介绍主题后进行了总结。此外,还简要讨论了 DNA/适体功能化在食品安全和质量、催化、临床诊断、癌细胞生物成像、癌细胞标志物检测和治疗领域的应用。我们还总结了当前的障碍,并对 AuNCs 的未来前景提出了建议,以符合 DNA/适体-AuNCs 的发展。