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Bead Based Multiplex Assay for Analysis of Tear Cytokine Profiles
Published on: October 13, 2017
Solid-phase and bead-based cytokine immunoassay: a comparison
Wilco de Jager1, Ger T Rijkers
1Department of Pediatric Immunology, University Medical Center Utrecht, Utrecht, The Netherlands.
Insights
Detecting cytokines and chemokines in body fluids requires careful assay selection and analysis. Multiplex immunoassays are gaining popularity for comprehensive biological insights in the omics era.
Area of Science:
- Biochemistry
- Immunology
- Analytical Chemistry
Background:
- Cytokines and chemokines are crucial signaling molecules found in various body fluids.
- Accurate detection is vital for understanding physiological and pathological processes.
- Assay performance can be influenced by the unique physicochemical properties of different biological samples.
Purpose of the Study:
- To review methods for cytokine and chemokine detection in body fluids.
- To highlight considerations for assay selection and data interpretation.
- To discuss the growing importance of multiplex immunoassays in the omics era.
Main Methods:
- Enzyme-linked immunosorbent assay (ELISA) for single cytokine detection.
- Bead-based multiplex immunoassay (MIA) for simultaneous detection of multiple cytokines.
- Consideration of sample matrix effects (pH, protein content) and interference from heterophilic antibodies.
Main Results:
- Both ELISA and MIA rely on sandwich immunoassay principles.
- Heterophilic antibodies can lead to false-positive results in immunoassays.
- Assays must accommodate a wide dynamic range of cytokine concentrations found in pathological conditions.
Conclusions:
- Classical ELISA is robust for single cytokine measurement.
- Multiplex immunoassays offer a comprehensive approach for biological process analysis.
- Proper statistical analysis of standard curves and multiplexed data is critical for accurate interpretation.
Abstract:
Cytokines and chemoattractive cytokines (chemokines) are present in a wide variety of body fluids such as plasma, cerebrospinal fluid, bronchoaveolar fluid, amniotic fluid, synovial fluid, middle ear effusion fluid, and urine. Cytokines can be detected using classical solid-phase sandwich immunoassays such as enzyme-linked immunosorbent assay (ELISA) or with a bead based multiplex immunoassay (MIA). The physical chemical properties of the different body fluids (such as pH and total protein content) differ, which may have an impact on the outcome of the cytokine assay. Both ELISA as well as MIA cytokine detection systems are constructed by sandwiching the protein of interest between a capture and reporter antibody. When the biological sample contains heterophilic antibodies (such as in patients with auto-immune diseases), these non-specific antibodies can cause false positive results. During pathological conditions, cytokines may be found over a wide concentration range; likewise have to cover this dynamic range in a similar fashion. The correct (statistical) analysis of standard curves and (multiplexed) data are critical for proper interpretation. Classical ELISA based cytokine assays are robust, easy to use and very well suited for measurement of single cytokines. Due to an increased interest in the integral approach to understand biological processes (the omics era), multiplex immunoassays for detection of cytokines and the interpretation of these assays are gaining popularity.
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