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Evolution of “On-Barcode” Luminescence Oxygen Channeling Immunoassay by Exploring the Barcode Structure and the Assay System

[Image: see text] The multiplexed luminescence oxygen channeling immunoassay (multi-LOCI) platform we developed recently that combines conventional LOCI and suspension array technology is capable of realizing facile “mix-and-measure” multiplexed assays without tedious washing steps. However, previou...

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Autores principales: Feng, Zuying, Guo, Qingsheng, Wang, Yao, Ge, Yunfei, Zhang, Zhiying, Wu, Yan, Li, Qilong, Masoomi, Hajar, Gu, Hongchen, Xu, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8772307/
https://www.ncbi.nlm.nih.gov/pubmed/35071922
http://dx.doi.org/10.1021/acsomega.1c06236
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author Feng, Zuying
Guo, Qingsheng
Wang, Yao
Ge, Yunfei
Zhang, Zhiying
Wu, Yan
Li, Qilong
Masoomi, Hajar
Gu, Hongchen
Xu, Hong
author_facet Feng, Zuying
Guo, Qingsheng
Wang, Yao
Ge, Yunfei
Zhang, Zhiying
Wu, Yan
Li, Qilong
Masoomi, Hajar
Gu, Hongchen
Xu, Hong
author_sort Feng, Zuying
collection PubMed
description [Image: see text] The multiplexed luminescence oxygen channeling immunoassay (multi-LOCI) platform we developed recently that combines conventional LOCI and suspension array technology is capable of realizing facile “mix-and-measure” multiplexed assays without tedious washing steps. However, previous work lacks comprehensive studies of the structure–performance relationship of the host–guest-structured barcode, which may obstruct the evolution and further translation of this exciting new technology to practical applications. Accordingly, this work revealed that polyelectrolyte interlayers played a crucial role in tuning the packing density of guest acceptor beads (ABs). More interestingly, we noticed that “sparse” barcodes (barcodes with low ABs packing density) exhibited comparable assay performance with “compact” ones (barcodes with high ABs packing density). The high robustness of barcodes allows for multi-LOCI to be a more universal and flexible assay platform. Furthermore, through optimization of the assay system including the laser power, as well as the concentrations of donor beads and biotinylated detection antibodies, the multi-LOCI platform showed a significant improvement in sensitivity compared with our previous work, with the limit of detection decreasing to as low as ca. 1 pg/mL. Impressively, multi-LOCI that enabled simultaneous detection of multiple analytes exhibited comparable sensitivity with the classical single-plexed LOCI, due to the ingenious structural design of the multi-LOCI barcode and the unique “on-barcode” assay format.
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spelling pubmed-87723072022-01-21 Evolution of “On-Barcode” Luminescence Oxygen Channeling Immunoassay by Exploring the Barcode Structure and the Assay System Feng, Zuying Guo, Qingsheng Wang, Yao Ge, Yunfei Zhang, Zhiying Wu, Yan Li, Qilong Masoomi, Hajar Gu, Hongchen Xu, Hong ACS Omega [Image: see text] The multiplexed luminescence oxygen channeling immunoassay (multi-LOCI) platform we developed recently that combines conventional LOCI and suspension array technology is capable of realizing facile “mix-and-measure” multiplexed assays without tedious washing steps. However, previous work lacks comprehensive studies of the structure–performance relationship of the host–guest-structured barcode, which may obstruct the evolution and further translation of this exciting new technology to practical applications. Accordingly, this work revealed that polyelectrolyte interlayers played a crucial role in tuning the packing density of guest acceptor beads (ABs). More interestingly, we noticed that “sparse” barcodes (barcodes with low ABs packing density) exhibited comparable assay performance with “compact” ones (barcodes with high ABs packing density). The high robustness of barcodes allows for multi-LOCI to be a more universal and flexible assay platform. Furthermore, through optimization of the assay system including the laser power, as well as the concentrations of donor beads and biotinylated detection antibodies, the multi-LOCI platform showed a significant improvement in sensitivity compared with our previous work, with the limit of detection decreasing to as low as ca. 1 pg/mL. Impressively, multi-LOCI that enabled simultaneous detection of multiple analytes exhibited comparable sensitivity with the classical single-plexed LOCI, due to the ingenious structural design of the multi-LOCI barcode and the unique “on-barcode” assay format. American Chemical Society 2022-01-05 /pmc/articles/PMC8772307/ /pubmed/35071922 http://dx.doi.org/10.1021/acsomega.1c06236 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Feng, Zuying
Guo, Qingsheng
Wang, Yao
Ge, Yunfei
Zhang, Zhiying
Wu, Yan
Li, Qilong
Masoomi, Hajar
Gu, Hongchen
Xu, Hong
Evolution of “On-Barcode” Luminescence Oxygen Channeling Immunoassay by Exploring the Barcode Structure and the Assay System
title Evolution of “On-Barcode” Luminescence Oxygen Channeling Immunoassay by Exploring the Barcode Structure and the Assay System
title_full Evolution of “On-Barcode” Luminescence Oxygen Channeling Immunoassay by Exploring the Barcode Structure and the Assay System
title_fullStr Evolution of “On-Barcode” Luminescence Oxygen Channeling Immunoassay by Exploring the Barcode Structure and the Assay System
title_full_unstemmed Evolution of “On-Barcode” Luminescence Oxygen Channeling Immunoassay by Exploring the Barcode Structure and the Assay System
title_short Evolution of “On-Barcode” Luminescence Oxygen Channeling Immunoassay by Exploring the Barcode Structure and the Assay System
title_sort evolution of “on-barcode” luminescence oxygen channeling immunoassay by exploring the barcode structure and the assay system
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8772307/
https://www.ncbi.nlm.nih.gov/pubmed/35071922
http://dx.doi.org/10.1021/acsomega.1c06236
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