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Published on: August 2, 2024
Cytokine Interferon-γ suppresses the function of capsule myofibroblasts and induces cell apoptosis
Stefan G Mattyasovszky1, Stefan Mausbach1, Ulrike Ritz1
1Department of Orthopaedics and Traumatology, University Medical Centre of the Johannes Gutenberg-University of Mainz, Mainz, Germany.
Abstract:
Myofibroblasts (MFs), a contractile subset of fibroblasts, play a pivotal role in physiological wound healing and in the development of many fibroconnective disorders. The complex cytokine network regulating the function of MFs in joint stiffness is still poorly understood. In this in vitro study, we investigated the effect of the cytokine Interferon-gamma (IFN-γ) on MFs isolated from human joint capsules. MFs were cultivated either in the presence of increasing concentrations of IFN-γ alone or in combination with IFN-γ neutralizing antibodies. Cell viability, cytotoxicity, apoptosis, and mRNA gene expression of the MF markers alpha-smooth muscle actin (α-SMA) and collagen type I were analyzed in MF cultures. Contraction potential was analyzed in an established collagen gel contraction assay simulating the extracellular matrix. Using immunofluorescence staining, we could verify that MFs express IFN-γ-receptor (R)-1 on their membrane. IFN-γ decreased MF viability and significantly elevated the apoptosis rate in a dose-dependent manner. IFN-γ down-regulated α-SMA and collagen type I mRNA expression which was associated with a diminished MF mediated contraction of the gel matrices. These effects were suppressed by simultaneous treatment of cells with a neutralizing IFN-γ antibody. Our experiments confirm the hypothesis that the cytokine IFN-γ is a crucial component of the regulatory network of capsule MFs. IFN-γ notably influences the ability of MFs to contract collagen matrices by suppressing α-SMA gene expression. IFN-γ is toxic for MFs in high concentrations and may negatively regulate the number of pro-fibrotic MFs during the healing process via induction of cell apoptosis. © 2017 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 35:2524-2533, 2017.
Insights
Interferon-gamma (IFN-γ) reduces myofibroblast (MF) viability and contraction by down-regulating alpha-smooth muscle actin. This cytokine may regulate pro-fibrotic MFs during healing by inducing apoptosis.
Area of Science:
- Orthopaedic Research
- Cell Biology
- Immunology
Background:
- Myofibroblasts (MFs) are key in wound healing and fibroconnective disorders.
- The cytokine regulation of MFs in joint stiffness is not well understood.
Purpose of the Study:
- To investigate the effect of Interferon-gamma (IFN-γ) on human joint capsule MFs.
- To determine IFN-γ's impact on MF viability, apoptosis, gene expression, and contraction potential.
Main Methods:
- Human joint capsule MFs were cultured with varying IFN-γ concentrations and neutralizing antibodies.
- Assessed cell viability, apoptosis, alpha-smooth muscle actin (α-SMA) and collagen type I mRNA expression.
- Evaluated MF contraction potential in collagen gel matrices and confirmed IFN-γ receptor expression.
Main Results:
- IFN-γ decreased MF viability and increased apoptosis in a dose-dependent manner.
- IFN-γ down-regulated α-SMA and collagen type I mRNA expression, reducing matrix contraction.
- Neutralizing antibodies reversed the effects of IFN-γ, confirming its role.
Conclusions:
- IFN-γ is a critical regulator of joint capsule MFs, influencing their contractile and pro-fibrotic functions.
- IFN-γ suppresses α-SMA expression, diminishing MF contractility.
- High IFN-γ concentrations are toxic to MFs, potentially reducing pro-fibrotic MFs via apoptosis.
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