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Development and Validation of an Ultrasensitive Single Molecule Array Digital Enzyme-linked Immunosorbent Assay for Human Interferon-α
Published on: June 14, 2018
Search for specific biomarkers of IFNβ bioactivity in patients with multiple sclerosis
Sunny Malhotra1, Marta F Bustamante, Francisco Pérez-Miralles
1Centre d'Esclerosi Múltiple de Catalunya, CEM-Cat, Unitat de Neuroimmunologia Clínica, Hospital Universitari Vall d'Hebron, Barcelona, Spain.
Abstract:
Myxovirus A (MxA), a protein encoded by the MX1 gene with antiviral activity, has proven to be a sensitive measure of IFNβ bioactivity in multiple sclerosis (MS). However, the use of MxA as a biomarker of IFNβ bioactivity has been criticized for the lack of evidence of its role on disease pathogenesis and the clinical response to IFNβ. Here, we aimed to identify specific biomarkers of IFNβ bioactivity in order to compare their gene expression induction by type I IFNs with the MxA, and to investigate their potential role in MS pathogenesis. Gene expression microarrays were performed in PBMC from MS patients who developed neutralizing antibodies (NAB) to IFNβ at 12 and/or 24 months of treatment and patients who remained NAB negative. Nine genes followed patterns in gene expression over time similar to the MX1, which was considered the gold standard gene, and were selected for further experiments: IFI6, IFI27, IFI44L, IFIT1, HERC5, LY6E, RSAD2, SIGLEC1, and USP18. In vitro experiments in PBMC from healthy controls revealed specific induction of selected biomarkers by IFNβ but not IFNγ, and several markers, in particular USP18 and HERC5, were shown to be significantly induced at lower IFNβ concentrations and more selective than the MX1 as biomarkers of IFNβ bioactivity. In addition, USP18 expression was deficient in MS patients compared with healthy controls (p = 0.0004). We propose specific biomarkers that may be considered in addition to the MxA to evaluate IFNβ bioactivity, and to further explore their implication in MS pathogenesis.
Insights
Researchers identified new biomarkers for interferon-beta (IFNβ) bioactivity in multiple sclerosis (MS) patients. These markers, including USP18 and HERC5, show promise for evaluating treatment response and understanding MS pathogenesis.
Area of Science:
- Immunology
- Neuroscience
- Genetics
Background:
- Myxovirus A (MxA) is a sensitive but debated biomarker for interferon-beta (IFNβ) bioactivity in multiple sclerosis (MS).
- Criticism stems from a lack of evidence regarding MxA's role in MS pathogenesis and clinical response to IFNβ therapy.
Purpose of the Study:
- Identify novel biomarkers for IFNβ bioactivity.
- Compare their gene expression induction with MxA.
- Investigate their potential role in MS pathogenesis.
Main Methods:
- Gene expression microarrays in peripheral blood mononuclear cells (PBMCs) from MS patients with and without neutralizing antibodies (NAB) to IFNβ.
- In vitro experiments in PBMCs from healthy controls using IFNβ and IFNγ stimulation.
Main Results:
- Nine genes (IFI6, IFI27, IFI44L, IFIT1, HERC5, LY6E, RSAD2, SIGLEC1, USP18) showed gene expression patterns similar to MX1.
- USP18 and HERC5 were induced by IFNβ at lower concentrations and were more selective than MxA.
- USP18 expression was significantly lower in MS patients compared to healthy controls.
Conclusions:
- USP18 and HERC5 are proposed as specific biomarkers for evaluating IFNβ bioactivity.
- These biomarkers may offer improved assessment of treatment response in MS.
- Further research is warranted to explore the implication of these biomarkers in MS pathogenesis.
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