College of Biomass Science and Engineering, Healthy Food Evaluation Research Center and Key Laboratory of Food Science and Technology of Ministry of Education of Sichuan Province, Sichuan University, Chengdu, 610065, China.
The Center of Gerontology and Geriatrics, West China Hospital, Sichuan University, Chengdu, 610065, China.
Mikrochim Acta. 2020 Feb 19;187(3):179. doi: 10.1007/s00604-020-4128-8.
Small molecules are key targets in molecular biology, environmental issues, medicine and food industry. However, small molecules are challenging to be detected due to the difficulty of their recognition, especially in complex samples, such as in situ in cells or animals. The emergence of graphene/aptamer probes offers an excellent opportunity for small molecule quantification owing to their appealing attributes such as high selectivity, sensitivity, and low cost, as well as the potential for probing small molecules in living cells or animals. This paper (with 130 refs.) will review the application of graphene/aptamer probes for small molecule detection. We present the recent progress in the design and development of graphene/aptamer probes enabling highly specific, sensitive and rapid detection of small molecules. Emphasis is placed on the success in their development and application for monitoring small molecules in living cells and in vivo systems. By discussing the key advances in this field, we wish to inspire more research work of the development of graphene/aptamer probes for both on-site or in situ detection of small molecules and its applications for investigating the functions of small molecules in cells in a dynamic way. Graphical abstract Graphene/aptamer probes can be used to construct different platforms for detecting small molecules with high specificity and sensitivity, both in vitro and in situ in living cells and animals.
小分子是分子生物学、环境问题、医学和食品工业的关键目标。然而,由于小分子的识别难度较大,特别是在复杂样品中,如细胞内或动物体内原位,因此很难对其进行检测。由于石墨烯/适体探针具有高选择性、灵敏度和低成本等吸引人的特性,以及在活细胞或动物中探测小分子的潜力,因此为小分子的定量检测提供了极好的机会。本文(引用 130 篇文献)综述了石墨烯/适体探针在小分子检测中的应用。我们介绍了设计和开发石墨烯/适体探针的最新进展,这些探针能够实现对小分子的高特异性、高灵敏度和快速检测。重点介绍了它们在活细胞和体内系统中监测小分子方面的成功发展和应用。通过讨论该领域的关键进展,我们希望激发更多关于开发石墨烯/适体探针的研究工作,以用于现场或原位检测小分子,并用于动态研究小分子在细胞中的功能。 图表抽象 石墨烯/适体探针可用于构建不同的平台,用于检测小分子,具有高特异性和灵敏度,无论是在体外还是在活细胞和动物的原位。