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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
Precise probes of type II interferon activity define the origin of interferon signatures in target tissues in
John C Hall1, Livia Casciola-Rosen, Alan E Berger
1Division of Rheumatology, Department of Medicine, The Johns Hopkins University School of Medicine, Baltimore, MD 21224, USA.
Abstract:
Elucidating the molecular pathways active in pathologic tissues has important implications for defining disease subsets, selecting therapy, and monitoring disease activity. The development of therapeutics directed at IFN-α or IFN-γ makes the discovery of probes that report precisely on the activity of different IFN pathways a high priority. We show that, although type I and II IFNs induce the expression of a largely overlapping group of molecules, precise probes of IFN-γ activity can be defined. Used in combination, these probes show prominent IFN-γ effects in Sjögren syndrome (SS) tissues. In contrast, dermatomyositis muscle shows a dominant type I IFN pattern. Interestingly, heterogeneity of IFN signatures exists in patients with SS, with some patients demonstrating a predominant type I pattern. The biochemical patterns largely distinguish the target tissues in patients with SS from those with dermatomyositis and provide a relative weighting of the effects of distinct IFN pathways in specific biopsies. In SS, type I and II IFN effects are localized to the same epithelial cells, surrounded by inflammatory cells expressing IFN-γ-induced proteins, suggesting reinforcing interactions. Precise probes of the different IFN pathways active in tissues of complex rheumatic diseases will be critical to classify disease, elucidate pathogenesis, and select therapy.
Insights
Precise probes reveal distinct interferon pathway activities in rheumatic diseases. Interferon-gamma (IFN-γ) effects dominate Sjögren syndrome, while type I interferon (IFN) patterns are prominent in dermatomyositis.
Area of Science:
- Immunology
- Molecular Biology
- Rheumatology
Background:
- Understanding molecular pathways in disease is crucial for targeted therapies.
- Interferon (IFN) pathways, particularly IFN-α and IFN-γ, are key targets for therapeutic development in rheumatic diseases.
Purpose of the Study:
- To develop precise probes for distinct interferon pathway activities.
- To differentiate IFN pathway signatures in Sjögren syndrome (SS) and dermatomyositis.
Main Methods:
- Utilized molecular probes to assess type I and type II IFN activity in patient tissues.
- Analyzed gene expression patterns to identify specific IFN signatures.
Main Results:
- Identified distinct IFN signatures in SS and dermatomyositis tissues.
- Observed prominent IFN-γ activity in SS and type I IFN activity in dermatomyositis.
- Found heterogeneity in IFN signatures within SS patients, with some showing type I dominance.
Conclusions:
- Precise IFN pathway probes can distinguish between SS and dermatomyositis.
- IFN signatures provide insights into disease pathogenesis and heterogeneity.
- These probes are critical for classifying complex rheumatic diseases and guiding therapy.
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