Salidroside inhibits MAPK, NF-κB, and STAT3 pathways in psoriasis-associated oxidative stress via SIRT1 activation

IF 5.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Fengli Xu, Jixiang Xu, X. Xiong, Yongqiong Deng
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引用次数: 107

Abstract

ABSTRACT Objectives: To unveil the role of SIRT1 in limiting oxidative stress in psoriasis and to further discuss the therapeutic prospects of salidroside in psoriasis. Methods: Literature from 2002 to 2019 was searched with “psoriasis”, “oxidative stress”, “SIRT1”, “salidroside” as the key words. Then, Oxidative stress in psoriasis and the role of SIRT1 were summarized and the potential role of salidroside in the disease was speculated. Results: Oxidative stress might contribute to the pathogenesis of psoriasis. High levels of ROS produced during oxidative stress lead to the release of inflammatory mediators, that, in turn, induce angiogenesis and excessive proliferation of keratinocytes. SIRT1 is a member of the sirtuin family, of which the activation lead to the inhibition of such oxidative stress signaling pathways MAPK, NF-κB, and STAT3, down-regulation of inflammatory factors, suppression of inflammation and keratinocyte hyperproliferation, and inhibition of angiogenesis. Salidroside, the main ingredient of Rhodiola, is known to exert antioxidant roles, which has been attributed to SIRT1 activation. Conclusion: Salidroside might inhibit oxidative stress singling pathways via SIRT1 activation, and could be as an ideal candidate for management of psoriasis.
红红草苷通过SIRT1激活抑制银屑病相关氧化应激中的MAPK、NF-κB和STAT3通路
目的:揭示SIRT1在银屑病中限制氧化应激的作用,并进一步探讨红景天苷治疗银屑病的前景。方法:以“牛皮癣”、“氧化应激”、“SIRT1”、“红柳苷”为关键词检索2002 - 2019年的相关文献。然后总结牛皮癣中的氧化应激和SIRT1的作用,并推测红景天苷在牛皮癣中的潜在作用。结果:氧化应激可能参与银屑病的发病机制。氧化应激过程中产生的高水平ROS导致炎症介质的释放,进而诱导血管生成和角化细胞的过度增殖。SIRT1是sirtuin家族的一员,其激活可抑制氧化应激信号通路MAPK、NF-κB、STAT3等,下调炎症因子,抑制炎症和角化细胞过度增殖,抑制血管生成。红景天的主要成分红景天苷被认为具有抗氧化作用,这归因于SIRT1的激活。结论:红景天苷可能通过SIRT1激活抑制氧化应激单通路,可能是治疗银屑病的理想候选药物。
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来源期刊
Redox Report
Redox Report 生物-生化与分子生物学
CiteScore
6.10
自引率
0.00%
发文量
28
审稿时长
>12 weeks
期刊介绍: Redox Report is a multidisciplinary peer-reviewed open access journal focusing on the role of free radicals, oxidative stress, activated oxygen, perioxidative and redox processes, primarily in the human environment and human pathology. Relevant papers on the animal and plant environment, biology and pathology will also be included. While emphasis is placed upon methodological and intellectual advances underpinned by new data, the journal offers scope for review, hypotheses, critiques and other forms of discussion.
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