Yexuan Mao
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Explore the profile of Yexuan Mao including associated specialties, affiliations and a list of published articles.
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Articles
16
Citations
37
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Recent Articles
1.
Zhang X, Cui Q, Ding M, Mao Y, Huang X, Song L, et al.
Anal Chem
. 2025 Feb;
97(9):5209-5216.
PMID: 39999872
Constructing a fluorescence quenching immunochromatography test strip (FQ-ICTS) is conducive to sensitive point-of-care testing, yet inefficient quenching efficiency (QE) confines the progress of the FQ-ICTS. Herein an innovative nanometal surface...
2.
Wang J, Bu T, Cui Q, Li Z, Xu Q, Jiang Z, et al.
Food Chem
. 2024 Nov;
465(Pt 2):142062.
PMID: 39561600
Simultaneous detection of carbofuran (CBF) and 3-hydroxy carbofuran (3-OH-CBF) in fruits and vegetables is important due to their high toxicity and widespread use in pest control. However, most lateral flow...
3.
Li Q, Zhang X, Chen M, Luo C, Yang R, Bu T, et al.
Food Chem
. 2024 Sep;
463(Pt 3):141297.
PMID: 39305646
To integrate antifouling properties and good sensitivity on the sensing interface can improve the applicability of an electrochemical immunosensor. These functional regions can be integrated into a single functional peptide...
4.
Ding M, Dou L, Bu T, Li Z, Mao Y, Dang M, et al.
Biosens Bioelectron
. 2024 Sep;
267:116779.
PMID: 39288706
In this study, we incorporated nanometal surface energy transfer (NSET) in lateral flow immunoassay (LFIA) and explored the relationship between fluorescence quenching efficiency and detection sensitivity to improve sensitivity of...
5.
Song L, Wang Y, Li Q, Wang J, Gao T, An Z, et al.
Mikrochim Acta
. 2023 Dec;
191(1):42.
PMID: 38114730
To avoid false negative results due to the low cross-reactivity rate (CR) in rapid immunoassay, a group-specific antibody with homogeneous CR toward target compounds is needed for accuracy. In this...
6.
Zhao Q, Ding M, Pei D, Qi X, Mao Y, Huang X, et al.
Anal Methods
. 2023 Nov;
15(45):6229-6238.
PMID: 37943077
To monitor benzoic acid (BA) residues in liquid food samples, a monoclonal antibody (mAb)-based lateral flow immunoassay (LFA) was developed in this study. First, 2-aminobenzoic acid (2-AA), 3-aminobenzoic acid (3-AA),...
7.
Li Z, Wang J, Wang Y, Li Q, Chen X, Wang Y, et al.
J Agric Food Chem
. 2023 Jul;
71(28):10841-10849.
PMID: 37406351
To avoid false-positive results in immunoassays due to cross-reactivity of antibodies with structural analogues, especially metabolites of target compounds, the preparation of highly specific antibodies is crucial. Preserving the characteristic...
8.
Dang M, Li Z, Mao Y, Huang X, Song L, Li W, et al.
Mikrochim Acta
. 2023 Apr;
190(5):186.
PMID: 37071204
To meet high-throughput screening of the residues of sulfonamides (SAs) with high sensitivity toward sulfamethazine (SM2) in milk samples, a new highly sensitive lateral flow immunoassay (LFA) based on amorphous...
9.
Zhang X, Li Z, Mao Y, Dang M, Huang X, Wang Z, et al.
Food Chem
. 2022 Dec;
407:135175.
PMID: 36521388
Production of high-affinity and specific antibodies to small molecules with molecular weight (MW) lower than 200 Da is challenging. Here, we designed a novel hapten, named hapten H6, for the...
10.
Mao Y, Dang M, Zhang J, Huang X, Qiao M, Song L, et al.
Talanta
. 2022 May;
247:123532.
PMID: 35609486
In peptide amphiphile, The positively charged amino acid arginine can inspire the ordered self-assembly of gold nanocomposites (AuNPs), transfer positive charge to AuNPs, and weaken the aggregation of AuNPs by...