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A Versatile Microparticle-Based Immunoaggregation Assay for Macromolecular Biomarker Detection and Quantification

The rapid, sensitive and low-cost detection of macromolecular biomarkers is critical in clinical diagnostics, environmental monitoring, research, etc. Conventional assay methods usually require bulky, expensive and designated instruments and relative long assay time. For hospitals and laboratories t...

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Autores principales: Wu, Haiyan, Han, Yu, Yang, Xi, Chase, George G., Tang, Qiong, Lee, Chen-Jung, Cao, Bin, Zhe, Jiang, Cheng, Gang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4319848/
https://www.ncbi.nlm.nih.gov/pubmed/25658837
http://dx.doi.org/10.1371/journal.pone.0115046
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author Wu, Haiyan
Han, Yu
Yang, Xi
Chase, George G.
Tang, Qiong
Lee, Chen-Jung
Cao, Bin
Zhe, Jiang
Cheng, Gang
author_facet Wu, Haiyan
Han, Yu
Yang, Xi
Chase, George G.
Tang, Qiong
Lee, Chen-Jung
Cao, Bin
Zhe, Jiang
Cheng, Gang
author_sort Wu, Haiyan
collection PubMed
description The rapid, sensitive and low-cost detection of macromolecular biomarkers is critical in clinical diagnostics, environmental monitoring, research, etc. Conventional assay methods usually require bulky, expensive and designated instruments and relative long assay time. For hospitals and laboratories that lack immediate access to analytical instruments, fast and low-cost assay methods for the detection of macromolecular biomarkers are urgently needed. In this work, we developed a versatile microparticle (MP)-based immunoaggregation method for the detection and quantification of macromolecular biomarkers. Antibodies (Abs) were firstly conjugated to MP through streptavidin-biotin interaction; the addition of macromolecular biomarkers caused the aggregation of Ab-MPs, which were subsequently detected by an optical microscope or optical particle sizer. The invisible nanometer-scale macromolecular biomarkers caused detectable change of micrometer-scale particle size distributions. Goat anti-rabbit immunoglobulin and human ferritin were used as model biomarkers to demonstrate MP-based immunoaggregation assay in PBS and 10% FBS to mimic real biomarker assay in the complex medium. It was found that both the number ratio and the volume ratio of Ab-MP aggregates caused by biomarker to all particles were directly correlated to the biomarker concentration. In addition, we found that the detection range could be tuned by adjusting the Ab-MP concentration. We envision that this novel MP-based immunoaggregation assay can be combined with multiple detection methods to detect and quantify macromolecular biomarkers at the nanogram per milliliter level.
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spelling pubmed-43198482015-02-18 A Versatile Microparticle-Based Immunoaggregation Assay for Macromolecular Biomarker Detection and Quantification Wu, Haiyan Han, Yu Yang, Xi Chase, George G. Tang, Qiong Lee, Chen-Jung Cao, Bin Zhe, Jiang Cheng, Gang PLoS One Research Article The rapid, sensitive and low-cost detection of macromolecular biomarkers is critical in clinical diagnostics, environmental monitoring, research, etc. Conventional assay methods usually require bulky, expensive and designated instruments and relative long assay time. For hospitals and laboratories that lack immediate access to analytical instruments, fast and low-cost assay methods for the detection of macromolecular biomarkers are urgently needed. In this work, we developed a versatile microparticle (MP)-based immunoaggregation method for the detection and quantification of macromolecular biomarkers. Antibodies (Abs) were firstly conjugated to MP through streptavidin-biotin interaction; the addition of macromolecular biomarkers caused the aggregation of Ab-MPs, which were subsequently detected by an optical microscope or optical particle sizer. The invisible nanometer-scale macromolecular biomarkers caused detectable change of micrometer-scale particle size distributions. Goat anti-rabbit immunoglobulin and human ferritin were used as model biomarkers to demonstrate MP-based immunoaggregation assay in PBS and 10% FBS to mimic real biomarker assay in the complex medium. It was found that both the number ratio and the volume ratio of Ab-MP aggregates caused by biomarker to all particles were directly correlated to the biomarker concentration. In addition, we found that the detection range could be tuned by adjusting the Ab-MP concentration. We envision that this novel MP-based immunoaggregation assay can be combined with multiple detection methods to detect and quantify macromolecular biomarkers at the nanogram per milliliter level. Public Library of Science 2015-02-06 /pmc/articles/PMC4319848/ /pubmed/25658837 http://dx.doi.org/10.1371/journal.pone.0115046 Text en © 2015 Wu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wu, Haiyan
Han, Yu
Yang, Xi
Chase, George G.
Tang, Qiong
Lee, Chen-Jung
Cao, Bin
Zhe, Jiang
Cheng, Gang
A Versatile Microparticle-Based Immunoaggregation Assay for Macromolecular Biomarker Detection and Quantification
title A Versatile Microparticle-Based Immunoaggregation Assay for Macromolecular Biomarker Detection and Quantification
title_full A Versatile Microparticle-Based Immunoaggregation Assay for Macromolecular Biomarker Detection and Quantification
title_fullStr A Versatile Microparticle-Based Immunoaggregation Assay for Macromolecular Biomarker Detection and Quantification
title_full_unstemmed A Versatile Microparticle-Based Immunoaggregation Assay for Macromolecular Biomarker Detection and Quantification
title_short A Versatile Microparticle-Based Immunoaggregation Assay for Macromolecular Biomarker Detection and Quantification
title_sort versatile microparticle-based immunoaggregation assay for macromolecular biomarker detection and quantification
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4319848/
https://www.ncbi.nlm.nih.gov/pubmed/25658837
http://dx.doi.org/10.1371/journal.pone.0115046
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