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Fuzzy logic sensing of G-quadruplex DNA and its cleavage reagents based on reduced graphene oxide
Huang, Wei Tao1; Zhang, Jian Rong1; Xie, Wan Yi2; Shi, Yan1; Luo, Hong Qun1; Li, Nian Bing1
2014-07-15
摘要

Herein, by combining the merits of nanotechnology and fuzzy logic theory, we develop a simple, labelfree, and general strategy based on an organic dye-graphene hybrid system for fluorescence intelligent sensing of G-quadruplexes (G4) formation, hydroxyl radical (HO center dot),and Fe2+ in vitro. By exploiting acridine orange (AO) dyes-graphene as a nanofilter and nanoswitch and the ability of graphene to interact with DNA with different structures, our approach can efficiently distinguish, quantitatively detect target analytes. In vitro assays with G4DNA demonstrated increases in fluorescence intensity of the AO-rGO system with a linear range of 16-338 nM and a detection limit as low as 2.0 nM. The requenched fluorescence of the G4TBA-AO-rGO system has a non-linear response to Fenton reagent. But this requenching reduces the fluorescence intensity in a manner proportional to the logarithm to the base 10 of the concentration of Fenton reagent in the range of 0.1-100 mu M and 100-2000 mu M, respectively. Furthermore, we develop a novel and intelligent sensing method based on fuzzy logic which mimics human reasoning, solves complex and non-linear problems, and transforms the numerical output into the language description output for potential application in biochemical systems, environmental monitoring systems, and molecular-level fuzzy logic computing system. (C) 2014 Elsevier B.V. All rights reserved.

关键词Free Radical Fuzzy Logic Graphene G-quadruplex Sensor
DOI10.1016/j.bios.2014.01.055
发表期刊BIOSENSORS & BIOELECTRONICS
ISSN0956-5663
卷号57页码:117-124
收录类别SCI
WOS记录号WOS:000334086100019
语种英语