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Published on: August 16, 2017
Dietary compounds as potential modulators of microRNA expression in psoriasis
Hristina Kocic1, Giovanni Damiani2, Bojana Stamenkovic3
1Clinic for Dermatology Clinical Center University Nis, Klinicki Centar Nis, Bul Dr Zorana Djindjica 48, Nis, 18000, Serbia.
Abstract:
Nutrigenomic DNA reprogramming in different chronic diseases and cancer has been assessed through the stimulation of gene expression and mRNA synthesis versus DNA silencing by CpG DNA modification (methylation); histone modification (acetylation, methylation) and expression of small noncoding RNAs, known as microRNAs (miRNAs). With regard to the specific nutrigenomic effects in psoriasis, the influence of specific diets on inflammatory cell signaling transcriptional factors such as nuclear factor (NF)-κB and Wnt signaling pathways, on disease-related specific cytokine expression, pro/antioxidant balance, keratinocyte proliferation/apoptosis and on proliferation/differentiation ratio have been documented; however, the influence of dietary compounds on the balance between 'good and bad' miRNA expression has not been considered. This review aims to summarize knowledge about aberrant microRNAs expression in psoriasis and to emphasize the potential impact of some dietary compounds on endogenous miRNA synthesis in experimental conditions in vivo and in vitro. Among the aberrantly expressed miRNAs in psoriasis, one of the most prominently upregulated seems to be miR-21. The beneficial effects of phenolic compounds (curcumin and resveratrol), vitamin D, methyl donors, and omega-3 fatty acids (eicosapentaenoic acid and docosahexaenoic acid) are discussed. Highly expressed miR-155 has been downregulated by flavonoids (through a quercetin-rich diet) and by vitamin D. Quercetin has been effective in modulating miR-146a. On the other hand, downregulated miR-125b expression was restored by vitamin D, Coenzyme Q10 and by microelement selenium. In conclusion, the miRNA profile, together with other 'omics', may constitute a multifaceted approach to explore the impact of diet on psoriasis prevention and treatment.
Insights
Dietary compounds can impact microRNA (miRNA) expression, offering potential for psoriasis prevention and treatment. This review explores how nutrients influence specific miRNAs involved in psoriasis pathogenesis.
Area of Science:
- Nutrigenomics
- Molecular Biology
- Dermatology
Background:
- Nutrigenomic DNA reprogramming influences gene expression and silencing via epigenetic modifications.
- Psoriasis research has explored diet's impact on inflammatory pathways but not microRNA (miRNA) expression.
- MicroRNAs play a role in cellular processes relevant to chronic diseases like psoriasis.
Purpose of the Study:
- To review aberrant microRNA expression in psoriasis.
- To highlight the potential of dietary compounds in modulating miRNA synthesis.
- To explore the impact of diet on psoriasis prevention and treatment.
Main Methods:
- Literature review of studies on nutrigenomics and psoriasis.
- Analysis of experimental data (in vivo and in vitro) on miRNA expression.
- Focus on specific dietary compounds and their effects on key miRNAs.
Main Results:
- miR-21 is prominently upregulated in psoriasis.
- Phenolic compounds, vitamin D, methyl donors, and omega-3 fatty acids show beneficial effects.
- Flavonoids (quercetin) and vitamin D downregulate miR-155; quercetin modulates miR-146a.
- Vitamin D, Coenzyme Q10, and selenium restore downregulated miR-125b.
Conclusions:
- MicroRNA profiles offer a multifaceted approach to understanding diet's role in psoriasis.
- Dietary interventions targeting specific miRNAs may aid psoriasis management.
- Further research into miRNA-diet interactions is crucial for therapeutic strategies.
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