Issue 14, 2020

Selection and application of aptamers with high-affinity and high-specificity against dinophysistoxin-1

Abstract

Diarrhetic shellfish toxins (DSTs) are marine toxins distributed widely in the world, which pose a major threat to the health of mankind. Dinophysistoxin-1 (DTX-1) has the most potent toxicity in DSTs. However, the current detection methods have ethical problems and technical defects. Further research is needed, to develop a more suitable alternative to the supervision system. In this work, we successfully obtained an aptamer with high affinity and specificity bound to DTX-1 for the first time. After optimization, a core sequence of the aptamer with a higher KD of 64 nM was obtained, while the binding mode of the core sequence and DTX-1 was explored. Based on this aptamer, we developed a biolayer interferometry (BLI) biosensor platform for DTX-1 detection. The aptasensor exhibited a broad detection range from 40 to 600 nM DTX-1 (linear range from 80 to 200 nM), and the low detection limit was 614 pM. Morever, the aptasensor showed good reproducibility and stability, which indicated that this novel aptasensor had broad development prospects for the sensitive and rapid detection of DTX-1.

Graphical abstract: Selection and application of aptamers with high-affinity and high-specificity against dinophysistoxin-1

Supplementary files

Article information

Article type
Paper
Submitted
16 Dec 2019
Accepted
11 Feb 2020
First published
26 Feb 2020
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2020,10, 8181-8189

Selection and application of aptamers with high-affinity and high-specificity against dinophysistoxin-1

Z. Li, B. Hu, R. Zhou, X. Zhang, R. Wang, Y. Gao, M. Sun, B. Jiao and L. Wang, RSC Adv., 2020, 10, 8181 DOI: 10.1039/C9RA10600F

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