Literature DB >> 17288405

Magnetophoretic immunoassay of allergen-specific IgE in an enhanced magnetic field gradient.

Young Ki Hahn1, Zongwen Jin, Joo H Kang, Eunkeu Oh, Min-Kyu Han, Hak-Sung Kim, Jung-Tak Jang, Jae-Hyun Lee, Jinwoo Cheon, Seung Hyun Kim, Hae-Sim Park, Je-Kyun Park.   

Abstract

We demonstrate a novel magnetophoretic immunoassay of allergen-specific immunoglobulin E (IgE) based on the magnetophoretic deflection velocity of a microbead that is proportional to the associated magnetic nanoparticles under enhanced magnetic field gradient in a microchannel. In this detection scheme, two types of house dust mites, Dermatophagoides farinae (D. farinae) and Dermatophagoides pteronyssinus (D. pteronyssinus), were used as the model allergens. Polystyrene microbeads were conjugated with each of the mite extracts followed by incubation with serum samples. The resulting mixture was then reacted with magnetic nanoparticle-conjugated anti-human IgE for detection of allergen-specific IgE by using sandwich immuno-reactions. A ferromagnetic microstructure combined with a permanent magnet was employed to increase the magnetic field gradient ( approximately 10(4) T/m) in a microfluidic device. The magnetophoretic velocities of microbeads were measured in a microchannel under applied magnetic field, and the averaged velocity was well correlated with the concentration of allergen-specific IgE in serum. From the analysis of pooled sera obtained from 44 patients, the detection limits of the allergen-specific human IgEs for D. farinae and D. pteronyssinus were determined to be 565 (0.045 IU/mL) and 268 fM (0.021 IU/mL), respectively. These values are 1 order of magnitude lower than those by a conventional CAP system. For evaluation of reproducibility and accuracy, unknown sera were subjected to a blind test by using the developed assay system, and they were compared with the CAP system. As a result, coefficient of variance was less than 10%, and the developed method enabled a fast assay with a tiny amount of serum ( approximately 10 microL).

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Year:  2007        PMID: 17288405     DOI: 10.1021/ac061522l

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  12 in total

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Authors:  Jason S Kim; Frances S Ligler
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Review 2.  Microarrayed allergen molecules for the diagnosis of allergic diseases.

Authors:  Adriano Mari; Claudia Alessandri; Maria Livia Bernardi; Rosetta Ferrara; Enrico Scala; Danila Zennaro
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Review 5.  Direct assembling methodologies for high-throughput bioscreening.

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Journal:  Biotechnol J       Date:  2011-10-21       Impact factor: 4.677

6.  Toward Localized In Vivo Biomarker Concentration Measurements.

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7.  "Smart" diblock copolymers as templates for magnetic-core gold-shell nanoparticle synthesis.

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8.  Breast cancer diagnosis using a microfluidic multiplexed immunohistochemistry platform.

Authors:  Minseok S Kim; Taemin Kim; Sun-Young Kong; Soim Kwon; Chae Yun Bae; Jaekyu Choi; Chul Hwan Kim; Eun Sook Lee; Je-Kyun Park
Journal:  PLoS One       Date:  2010-05-03       Impact factor: 3.240

9.  Label-acquired magnetorotation for biosensing: An asynchronous rotation assay.

Authors:  Ariel Hecht; Paivo Kinnunen; Brandon McNaughton; Raoul Kopelman
Journal:  J Magn Magn Mater       Date:  2011-02       Impact factor: 2.993

Review 10.  Homogeneous Biosensing Based on Magnetic Particle Labels.

Authors:  Stefan Schrittwieser; Beatriz Pelaz; Wolfgang J Parak; Sergio Lentijo-Mozo; Katerina Soulantica; Jan Dieckhoff; Frank Ludwig; Annegret Guenther; Andreas Tschöpe; Joerg Schotter
Journal:  Sensors (Basel)       Date:  2016-06-06       Impact factor: 3.576

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