Issue 18, 2021

Highly sensitive detection of paraquat with pillar[5]arenes as an aptamer in an α-hemolysin nanopore

Abstract

Recently, biological nanopore-based techniques have attracted more and more attention in the field of single-molecule detection because they allow real-time, sensitive, high-throughput analysis. Herein, we report an engineered biological nanopore sensor by introducing a macrocyclic host molecule carboxylatopillar[5]arene (CP[5]A) that acts as an aptamer into the lumen of a mutant (E111R/K147R)7 αHL nanopore for detecting highly toxic paraquat (PQ) via host–guest interactions at the single-molecule level. By taking advantage of introducing positively charged arginine (Arg) into the lumen of the αHL nanopore, our engineered nanopore sensor exhibits higher stability. More importantly, this nanopore sensor shows high sensitivity, and the limit of detection (LOD) for PQ can reach a nanomolar level of 0.37 ppb. The CP[5]A-based nanopore sensing strategy developed in this work may bring inspiration for single-molecule detection and hold great potential in public health applications.

Graphical abstract: Highly sensitive detection of paraquat with pillar[5]arenes as an aptamer in an α-hemolysin nanopore

Supplementary files

Article information

Article type
Research Article
Submitted
16 Qas 2021
Accepted
05 Leq 2021
First published
05 Leq 2021

Mater. Chem. Front., 2021,5, 7032-7040

Highly sensitive detection of paraquat with pillar[5]arenes as an aptamer in an α-hemolysin nanopore

X. Jiang, M. Zang, F. Li, C. Hou, Q. Luo, J. Xu and J. Liu, Mater. Chem. Front., 2021, 5, 7032 DOI: 10.1039/D1QM00875G

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