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Nanopore Detection of Metal Ions: Current Status and Future Directions
Roozbahani, Golbarg Mohammadi1; Chen, Xiaohan1; Zhang, Youwen1; Wang, Liang2,3; Guan, Xiyun1
2020-08-09
摘要In this review, recent research efforts that aimed at developing nanopore sensors for detection of metal ions, which play a crucial role in environmental safety and human health, are highlighted. Protein pores use three stochastic sensing-based strategies for metal ion detection. The first strategy is to construct engineered nanopores with metal ion binding sites, so that the interaction between the target analytes and the nanopore can slow the movement of metal ions in the nanochannel. Second, large molecules such as nucleic acids and especially peptides can be utilized as external selective molecular probes to detect metal ions based on the conformational change of the ligand molecules induced by the metal ion-ligand chelation/coordination interaction. Third, enzymatic reactions can also be used as an alternative to the molecule probe strategy in the situation that a sensitive and selective probe molecule for the target analyte is difficult to obtain. On the other hand, by taking advantage of steady-state analysis, synthetic nanopores mainly use two strategies (modification and modification-free) to detect metals. Given the advantages of high sensitivity and selectivity, and label-free detection, nanopore-based metal ion sensors should find useful application in many fields, including environmental monitoring, medical diagnosis, and so on.
关键词biomolecules chemical reactions metal ion molecular translocation nanopore
DOI10.1002/smtd.202000266
发表期刊SMALL METHODS
ISSN2366-9608
页码20
通讯作者Wang, Liang(wangliang83@cigit.ac.cn) ; Guan, Xiyun(xguan5@iit.edu)
收录类别SCI
WOS记录号WOS:000557372600001
语种英语