Flow Cytometric Microsphere-Based Immunoassay: Analysis of Secreted Cytokines in Whole-Blood Samples from Asthmatics

Author:

Camilla Christophe1,Mély Laurent2,Magnan Antoine2,Casano Brice1,Prato Sabine1,Debono Stephane,Montero Felix1,Defoort Jean-Philippe1,Martin Marie1,Fert Vincent1

Affiliation:

1. Immunotech, 13276 Marseille, Cedex 9,1 and

2. UPRES 2050, Groupe de Recherche Clinique “Pathologie respiratoire et cutanée liéeà l'environnement,” Service de Pneumo-Allergologie, et Centre d'Investigations Cliniques, INSERM, Assistance Publique Hôpitaux de Marseille, Hôpital Ste Marguerite, Marseille,2 France

Abstract

ABSTRACT The ability of flow cytometry to resolve multiple parameters was used in a microsphere-based flow cytometric assay for the simultaneous determination of several cytokines in a sample. The flow cytometer microsphere-based assay (FMBA) for cytokines consists of reagents and dedicated software, specifically designed for the quantitative determination of cytokines. We have made several improvements in the multiplex assay: (i) dedicated software specific for the quantitative multiplex assay that processes data automatically, (ii) a stored master calibration curve with a two-point recalibration to adjust the stored curve periodically, and (iii) an internal standard to normalize the detection step in each sample. Overall analytical performance, including sensitivity, reproducibility, and dynamic range, was investigated for interleukin-4 (IL-4), IL-6, IL-10, IL-12, gamma interferon (IFN-γ), and tumor necrosis factor alpha. These assays were found to be reproducible and accurate, with a sensitivity in the picograms-per-milliliter range. Results obtained with FMBA correlate well with commercial enzyme-linked immunosorbent assay data ( r > 0.98) for all cytokines assayed. This multiplex assay was applied to the determination of cytokine profiles in whole blood from atopic and nonatopic patients. Our results show that atopic subjects' blood produces more IL-4 ( P = 0.003) and less IFN-γ ( P = 0.04) than the blood of nonatopic subjects. However, atopic asthmatic subjects' blood produces significantly more IFN-γ than that of atopic nonasthmatic subjects ( P = 0.03). The results obtained indicate that the FMBA technology constitutes a powerful system for the quantitative, simultaneous determination of secreted cytokines in immune diseases.

Publisher

American Society for Microbiology

Subject

Microbiology (medical),Clinical Biochemistry,Immunology,Immunology and Allergy

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