Inhibition of aryl hydrocarbon receptor signaling and induction of NRF2-mediated antioxidant activity by cinnamaldehyde in human keratinocytes

芳香烃受体 哈卡特 肉桂醛 化学 氧化应激 信号转导 抗氧化剂 药理学 活性氧 角质形成细胞 卡西亚 生物化学 生物 转录因子 医学 体外 基因 病理 催化作用 中医药 替代医学
作者
Hiroshi Uchi,Mao Yasumatsu,Saori Morino‐Koga,Chikage Mitoma,Masutaka Furue
出处
期刊:Journal of Dermatological Science [Elsevier BV]
卷期号:85 (1): 36-43 被引量:74
标识
DOI:10.1016/j.jdermsci.2016.10.003
摘要

Background Dioxins and other environmental pollutants are toxic and remain in biological tissues for a long time leading to various levels of oxidative stress. Although the toxicity of these agents has been linked to activation of the aryl hydrocarbon receptor (AHR), no effective treatment has been developed. Objective To explore novel phytochemicals that inhibit AHR activation in keratinocytes. Methods Keratinocytes were used in this study because the skin is one of the organs most affected by dioxin and other environmental pollutants. HaCaT cells, which are a human keratinocyte cell line, and normal human epidermal keratinocytes were stimulated with benzo[a]pyrene to induce AHR activation, and the effects of traditional Japanese Kampo herbal formulae were analyzed. Quantification of mRNA, western blotting, immunofluorescence localization of molecules, siRNA silencing, and visualization of oxidative stress were performed. Results Cinnamomum cassia extract and its major constituent cinnamaldehyde significantly inhibited the activation of AHR. Cinnamaldehyde also activated the NRF2/HO1 pathway and significantly alleviated the production of reactive oxygen species in keratinocytes. The inhibition of AHR signaling and the activation of antioxidant activity by cinnamaldehyde operated in a mutually independent manner as assessed by siRNA methods In addition, AHR signaling was effectively inhibited by traditional Kampo formulae containing C. cassia. Conclusion Cinnamaldehyde has two independent biological activities; namely, an inhibitory action on AHR activation and an antioxidant effect mediated by NRF2/HO1 signaling. Through these dual functions, cinnamaldehyde may be beneficial for the treatment of disorders related to oxidative stress such as dioxin intoxication, acne, and vitiligo.
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