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Cold Plasma Irradiation Attenuates Atopic Dermatitis via Enhancing HIF-1α-Induced MANF Transcription Expression
Tao Sun1,2, Xinru Zhang3, Chao Hou3
1Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei, China.
Abstract:
Cold atmospheric plasma has been widely applied in medical treatment clinically, especially skin diseases. However, the mechanism of cold atmospheric plasma on the treatment of skin diseases is still undefined. In this study, dinitrofluorobenzene-induced atopic dermatitis mice model was constructed. Cold atmospheric plasma was able to decrease skin cells apoptosis, relieve skin inflammation, ER stress and oxidative stress caused by dinitrofluorobenzene stimulation, which was mediated by cold atmospheric plasma-induced MANF expression. In terms of mechanism, hypoxia-inducible factor-1α expression was increased intracellularly after cold atmospheric plasma treatment, which further bound to the promoter region of manf gene and enhanced MANF transcriptional expression. This study reveals that cold atmospheric plasma has a positive effect on atopic dermatitis treatment, also demonstrates the regulatory mechanism of cold atmospheric plasma on MANF expression via HIF-1α, which indicates the potential medical application of cold atmospheric plasma for atopic dermatitis treatment.
Insights
Cold atmospheric plasma effectively treats atopic dermatitis by reducing inflammation and cell death. This therapy increases MANF expression via HIF-1α, offering a new treatment mechanism for skin diseases.
Area of Science:
- Biomedical Engineering
- Dermatology
- Plasma Physics
Background:
- Cold atmospheric plasma (CAP) is utilized in clinical settings for treating skin conditions, but its precise mechanisms remain unclear.
- Atopic dermatitis is a prevalent inflammatory skin disease with complex underlying pathologies.
- Understanding the molecular pathways modulated by CAP is crucial for optimizing its therapeutic applications.
Purpose of the Study:
- To investigate the therapeutic effects and underlying molecular mechanisms of CAP on atopic dermatitis.
- To elucidate the role of Mesenchymal Associated Nuclear Factor (MANF) in CAP-mediated treatment of skin inflammation.
- To explore the involvement of Hypoxia-Inducible Factor-1α (HIF-1α) in regulating MANF expression following CAP exposure.
Main Methods:
- Establishment of a dinitrofluorobenzene (DNFB)-induced atopic dermatitis mouse model.
- Application of cold atmospheric plasma to the affected skin areas in the mouse model.
- Assessment of skin inflammation, apoptosis, endoplasmic reticulum (ER) stress, and oxidative stress.
- Analysis of MANF and HIF-1α expression levels using molecular biology techniques.
Main Results:
- CAP treatment significantly reduced skin cell apoptosis, inflammation, ER stress, and oxidative stress in DNFB-induced atopic dermatitis mice.
- CAP administration led to increased intracellular expression of HIF-1α.
- HIF-1α was found to bind to the promoter region of the MANF gene, enhancing its transcriptional expression.
- Upregulation of MANF expression was identified as a key mediator of CAP's therapeutic effects.
Conclusions:
- Cold atmospheric plasma demonstrates a positive therapeutic effect on atopic dermatitis.
- CAP treatment regulates MANF expression through the HIF-1α pathway, highlighting a novel mechanism of action.
- These findings support the potential clinical application of cold atmospheric plasma for treating atopic dermatitis and related inflammatory skin conditions.
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