Cargando…

An Improved Multiple Competitive Immuno-SERS Sensing Platform and Its Application in Rapid Field Chemical Toxin Screening

Improving the signal-to-noise ratio (SNR) by amplifying the outputting signal or reducing nonspecific binding (NSB) are the key techniques in multiple immunoassay. Aiming at these issues, this paper presents an improved multiple indirect competitive immune surface-enhanced Raman scattering (ci-SERS)...

Descripción completa

Detalles Bibliográficos
Autores principales: Sun, Jiefang, Wang, Zixuan, Yang, Ling, He, Yi, Liu, Rui, Ran, Wei, Wang, Zhanhui, Shao, Bing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9606884/
https://www.ncbi.nlm.nih.gov/pubmed/36287885
http://dx.doi.org/10.3390/toxics10100605
_version_ 1784818401392197632
author Sun, Jiefang
Wang, Zixuan
Yang, Ling
He, Yi
Liu, Rui
Ran, Wei
Wang, Zhanhui
Shao, Bing
author_facet Sun, Jiefang
Wang, Zixuan
Yang, Ling
He, Yi
Liu, Rui
Ran, Wei
Wang, Zhanhui
Shao, Bing
author_sort Sun, Jiefang
collection PubMed
description Improving the signal-to-noise ratio (SNR) by amplifying the outputting signal or reducing nonspecific binding (NSB) are the key techniques in multiple immunoassay. Aiming at these issues, this paper presents an improved multiple indirect competitive immune surface-enhanced Raman scattering (ci-SERS) assay for the rapid screening of highly toxic rodenticides in food and biological samples, which ensured remarkable accuracy, ultra-sensitivity and reproducibility. The non-fouling polymer brush grafted magnetic beads (the MB@P-CyM) were prepared as multiple competitive recognition substrates after conjugating triplex haptens (the MB@P-CyM-hap). It was demonstrated that the particular 3D hair-like structures of P-CyM not only facilitate conjugate high-density hapten but reduce the steric hindrance from SERS probes recognition, thus enhancing SNB. On the other hand, Au nanoflowers (AuNFs) of high SERS activity were synthesized using a simple one-pot hydrazine reduction. For simultaneously detecting three highly toxic rodenticides, i.e., diphacinone (DPN), bromadiolone (BRD) and tetramine (TET), the obtained AuNFs were fabricated as a SERS-encoded nanoprobe cocktail after successively labeling mono-antibodies/Raman probes. By integrating the MB@P-CyM-hap with the SERS-encoded cocktail, a highly sensitive multiple SERS assay was achieved in less than 2 h with a limit of detection of 0.62 ng mL(−1) for BRD, 0.42 ng mL(−1) for TET and 1.37 ng mL(−1) for DPN, respectively. The recoveries of these rodenticides in spiked food and biological samples were determined and ranged from 72 to 123%. Above all, the proposed modifications show remarkable improvements for high efficient multiple chemical toxin immunoassay.
format Online
Article
Text
id pubmed-9606884
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96068842022-10-28 An Improved Multiple Competitive Immuno-SERS Sensing Platform and Its Application in Rapid Field Chemical Toxin Screening Sun, Jiefang Wang, Zixuan Yang, Ling He, Yi Liu, Rui Ran, Wei Wang, Zhanhui Shao, Bing Toxics Technical Note Improving the signal-to-noise ratio (SNR) by amplifying the outputting signal or reducing nonspecific binding (NSB) are the key techniques in multiple immunoassay. Aiming at these issues, this paper presents an improved multiple indirect competitive immune surface-enhanced Raman scattering (ci-SERS) assay for the rapid screening of highly toxic rodenticides in food and biological samples, which ensured remarkable accuracy, ultra-sensitivity and reproducibility. The non-fouling polymer brush grafted magnetic beads (the MB@P-CyM) were prepared as multiple competitive recognition substrates after conjugating triplex haptens (the MB@P-CyM-hap). It was demonstrated that the particular 3D hair-like structures of P-CyM not only facilitate conjugate high-density hapten but reduce the steric hindrance from SERS probes recognition, thus enhancing SNB. On the other hand, Au nanoflowers (AuNFs) of high SERS activity were synthesized using a simple one-pot hydrazine reduction. For simultaneously detecting three highly toxic rodenticides, i.e., diphacinone (DPN), bromadiolone (BRD) and tetramine (TET), the obtained AuNFs were fabricated as a SERS-encoded nanoprobe cocktail after successively labeling mono-antibodies/Raman probes. By integrating the MB@P-CyM-hap with the SERS-encoded cocktail, a highly sensitive multiple SERS assay was achieved in less than 2 h with a limit of detection of 0.62 ng mL(−1) for BRD, 0.42 ng mL(−1) for TET and 1.37 ng mL(−1) for DPN, respectively. The recoveries of these rodenticides in spiked food and biological samples were determined and ranged from 72 to 123%. Above all, the proposed modifications show remarkable improvements for high efficient multiple chemical toxin immunoassay. MDPI 2022-10-12 /pmc/articles/PMC9606884/ /pubmed/36287885 http://dx.doi.org/10.3390/toxics10100605 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Technical Note
Sun, Jiefang
Wang, Zixuan
Yang, Ling
He, Yi
Liu, Rui
Ran, Wei
Wang, Zhanhui
Shao, Bing
An Improved Multiple Competitive Immuno-SERS Sensing Platform and Its Application in Rapid Field Chemical Toxin Screening
title An Improved Multiple Competitive Immuno-SERS Sensing Platform and Its Application in Rapid Field Chemical Toxin Screening
title_full An Improved Multiple Competitive Immuno-SERS Sensing Platform and Its Application in Rapid Field Chemical Toxin Screening
title_fullStr An Improved Multiple Competitive Immuno-SERS Sensing Platform and Its Application in Rapid Field Chemical Toxin Screening
title_full_unstemmed An Improved Multiple Competitive Immuno-SERS Sensing Platform and Its Application in Rapid Field Chemical Toxin Screening
title_short An Improved Multiple Competitive Immuno-SERS Sensing Platform and Its Application in Rapid Field Chemical Toxin Screening
title_sort improved multiple competitive immuno-sers sensing platform and its application in rapid field chemical toxin screening
topic Technical Note
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9606884/
https://www.ncbi.nlm.nih.gov/pubmed/36287885
http://dx.doi.org/10.3390/toxics10100605
work_keys_str_mv AT sunjiefang animprovedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT wangzixuan animprovedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT yangling animprovedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT heyi animprovedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT liurui animprovedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT ranwei animprovedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT wangzhanhui animprovedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT shaobing animprovedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT sunjiefang improvedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT wangzixuan improvedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT yangling improvedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT heyi improvedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT liurui improvedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT ranwei improvedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT wangzhanhui improvedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening
AT shaobing improvedmultiplecompetitiveimmunoserssensingplatformanditsapplicationinrapidfieldchemicaltoxinscreening