Literature DB >> 33712666

Photooxidation-induced fluorescence amplification system for an ultra-sensitive enzyme-linked immunosorbent assay (ELISA).

Youhee Heo1,2, Kwanwoo Shin2,3, Min Cheol Park4,5, Ji Yoon Kang6,7.   

Abstract

This report suggests a method of enhancing the sensitivity of chemifluorescence-based ELISA, using photooxidation-induced fluorescence amplification (PIFA). The PIFA utilized autocatalytic photooxidation of the chemifluorescent substrate, 10-acetyl 3,7-dihydroxyphenoxazine (ADHP, Amplex Red) to amplify the fluorescent product resorufin, initially oxidized by horse radish peroxidase (HRP). As the amplification rate is proportional to the initial level of resorufin, the level of antigen labeled by HRP is quantified by analyzing the profile of fluorescence intensity. The normalized profile was interpolated into an autocatalysis model, and the rate of increase at half-maximum time was quantified by the use of an amplification index (AI). The lower limit of detection, for resorufin or HRP, was less than one-tenth that of the plate reader. It requires only slight modification of the fluorescence reader and is fully compatible with conventional or commercial ELISA. When it is applied to a commercial ELISA kit for the detection of amyloid beta, it is verified that the PIFA assay enhanced the detection sensitivity by more than a factor of 10 and was compatible with a conventional 96-well ELISA assay kit. We anticipate this PIFA assay to be used in research for the detection of low levels of proteins and for the early diagnosis of various diseases with rare protein biomarkers, at ultra-low (pg/mL) concentrations.

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Year:  2021        PMID: 33712666      PMCID: PMC7954804          DOI: 10.1038/s41598-021-85107-7

Source DB:  PubMed          Journal:  Sci Rep        ISSN: 2045-2322            Impact factor:   4.379


  35 in total

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Authors:  Jung-uk Shim; Rohan T Ranasinghe; Clive A Smith; Shehu M Ibrahim; Florian Hollfelder; Wilhelm T S Huck; David Klenerman; Chris Abell
Journal:  ACS Nano       Date:  2013-07-08       Impact factor: 15.881

2.  Protein quantification in complex mixtures by solid phase single-molecule counting.

Authors:  Lee A Tessler; Jeffrey G Reifenberger; Robi D Mitra
Journal:  Anal Chem       Date:  2009-09-01       Impact factor: 6.986

3.  Digital enzyme-linked immunosorbent assays with sub-attomolar detection limits based on low numbers of capture beads combined with high efficiency bead analysis.

Authors:  Cheuk W Kan; Carmen I Tobos; David M Rissin; Alexander D Wiener; Ray E Meyer; Danielle M Svancara; Anna Comperchio; Christopher Warwick; Roger Millington; Nicholas Collier; David C Duffy
Journal:  Lab Chip       Date:  2020-05-11       Impact factor: 6.799

4.  Bio-barcode technology for detection of Staphylococcus aureus protein A based on gold and iron nanoparticles.

Authors:  Ali Amini; Mehdi Kamali; Bahram Amini; Azam Najafi; Asghar Narmani; Leila Hasani; Jamal Rashidiani; Hamid Kooshki; Narges Elahi
Journal:  Int J Biol Macromol       Date:  2018-11-14       Impact factor: 6.953

5.  Application of the Amplex red/horseradish peroxidase assay to measure hydrogen peroxide generation by recombinant microsomal enzymes.

Authors:  Vladimir Mishin; Joshua P Gray; Diane E Heck; Debra L Laskin; Jeffrey D Laskin
Journal:  Free Radic Biol Med       Date:  2010-02-25       Impact factor: 7.376

6.  Photooxidation of Amplex Red to resorufin: implications of exposing the Amplex Red assay to light.

Authors:  Baozhong Zhao; Fiona A Summers; Ronald P Mason
Journal:  Free Radic Biol Med       Date:  2012-07-03       Impact factor: 7.376

7.  Reactive Oxygen Species Production from Secondary Organic Aerosols: The Importance of Singlet Oxygen.

Authors:  Alessandro Manfrin; Sergey A Nizkorodov; Kurtis T Malecha; Gordon J Getzinger; Kristopher McNeill; Nadine Borduas-Dedekind
Journal:  Environ Sci Technol       Date:  2019-07-25       Impact factor: 9.028

8.  The amplex red/horseradish peroxidase assay requires superoxide dismutase to measure hydrogen peroxide in the presence of NAD(P)H.

Authors:  Vladimir Mishin; Diane E Heck; Debra L Laskin; Jeffrey D Laskin
Journal:  Free Radic Res       Date:  2020-10-09

9.  Ultrasensitive flow-based immunoassays using single-molecule counting.

Authors:  John Todd; Bob Freese; Ann Lu; Douglas Held; Jennifer Morey; Richard Livingston; Philippe Goix
Journal:  Clin Chem       Date:  2007-09-21       Impact factor: 8.327

10.  Ultrasensitive detection of miRNA with an antimonene-based surface plasmon resonance sensor.

Authors:  Tianyu Xue; Weiyuan Liang; Yawen Li; Yuanhui Sun; Yuanjiang Xiang; Yupeng Zhang; Zhigao Dai; Yanhong Duo; Leiming Wu; Kun Qi; Bannur Nanjunda Shivananju; Lijun Zhang; Xiaoqiang Cui; Han Zhang; Qiaoliang Bao
Journal:  Nat Commun       Date:  2019-01-03       Impact factor: 14.919

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  2 in total

1.  A Washing-Free and Easy-to-Operate Fluorescent Biosensor for Highly Efficient Detection of Breast Cancer-Derived Exosomes.

Authors:  Wenqin Chen; Yan Zhang; Kaili Di; Chang Liu; Yanyan Xia; Shijia Ding; Han Shen; Zhiyang Li
Journal:  Front Bioeng Biotechnol       Date:  2022-06-28

Review 2.  Bias-generating factors in biofluid amyloid-β measurements for Alzheimer's disease diagnosis.

Authors:  Sohui Park; YoungSoo Kim
Journal:  Biomed Eng Lett       Date:  2021-08-18
  2 in total

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