TY - JOUR
T1 - Fluorescent Aptamer-Polyethylene Glycol Functionalized Graphene Oxide Biosensor for Profenofos Detection in Food
AU - Xiong, Jin’en
AU - Li, Shuang
AU - Li, Yi
AU - Chen, Yingli
AU - Liu, Yu
AU - Gan, Junlan
AU - Ju, Jiahui
AU - Xian, Yaoling
AU - Xiong, Xiaohui
N1 - Publisher Copyright:
© 2019, Jilin University, The Editorial Department of Chemical Research in Chinese Universities and Springer-Verlag GmbH.
PY - 2020/10/1
Y1 - 2020/10/1
N2 - A biosensor based on self-assembled ssDNA(aptamer) and polyethylene glycol functionalized graphene oxide(GO-PEG) has been designed for sensing profenofos in food. The sensor has employed the fluorescence “on/off” switching strategy in a single step in homogeneous solution. Compared to traditional detection methods, the strategy proposed here is simple, convenient, fast and sensitive. Furthermore, compared with the general aptamer-GO structure, this aptamer-GO-PEG structure is in possession of a better detection performance, which is largely attributed to the improvement of the biocompatibility and the adjustment of the adsorption capacity of GO by grafting the blocking agent PEG onto the surface of GO. Additionally, the improved biocompatibility of GO shows better stability in salt solutions and physiological solutions, which is more conducive to its practical application in foods. In this project, profenofos had been detected with the proposed strategy, and the limit of detection has been controlled to be 0.21 ng/mL. This aptasensing assay has been applied to determining profenofos in (spiked)tap water, cabbage and milk with the recovery values ranging from 93.1% to 108.5%, from 90.8% to 113.2% and from 105.9% to 114.2%, respectively.
AB - A biosensor based on self-assembled ssDNA(aptamer) and polyethylene glycol functionalized graphene oxide(GO-PEG) has been designed for sensing profenofos in food. The sensor has employed the fluorescence “on/off” switching strategy in a single step in homogeneous solution. Compared to traditional detection methods, the strategy proposed here is simple, convenient, fast and sensitive. Furthermore, compared with the general aptamer-GO structure, this aptamer-GO-PEG structure is in possession of a better detection performance, which is largely attributed to the improvement of the biocompatibility and the adjustment of the adsorption capacity of GO by grafting the blocking agent PEG onto the surface of GO. Additionally, the improved biocompatibility of GO shows better stability in salt solutions and physiological solutions, which is more conducive to its practical application in foods. In this project, profenofos had been detected with the proposed strategy, and the limit of detection has been controlled to be 0.21 ng/mL. This aptasensing assay has been applied to determining profenofos in (spiked)tap water, cabbage and milk with the recovery values ranging from 93.1% to 108.5%, from 90.8% to 113.2% and from 105.9% to 114.2%, respectively.
KW - Aptamer
KW - Graphene oxide
KW - Polyethylene glycol
KW - Profenofos
UR - http://www.scopus.com/inward/record.url?scp=85076465390&partnerID=8YFLogxK
U2 - 10.1007/s40242-019-9257-4
DO - 10.1007/s40242-019-9257-4
M3 - 文章
AN - SCOPUS:85076465390
SN - 1005-9040
VL - 36
SP - 787
EP - 794
JO - Chemical Research in Chinese Universities
JF - Chemical Research in Chinese Universities
IS - 5
ER -