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Effects of Thai Medicinal Herb Extracts with Anti-Psoriatic Activity on the Expression on NF-κB Signaling Biomarkers in HaCaT Keratinocytes

机译:具有抗银屑病活性的泰国草药提取物对HaCaT角质形成细胞中NF-κB信号生物标志物表达的影响

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摘要

Psoriasis is a chronic inflammatory skin disorder characterized by rapid proliferation of keratinocytes and incomplete keratinization. Discovery of safer and more effective anti-psoriatic drugs remains an area of active research at the present time. Using a HaCaT keratinocyte cell line as an in vitro model, we had previously found that ethanolic extracts from three Thai medicinal herbs, namely Alpinia galanga, Curcuma longa and Annona squamosa, possessed anti-psoriatic activity. In the current study, we aimed at investigating if these Thai medicinal herb extracts played a molecular role in suppressing psoriasis via regulation of NF-κB signaling biomarkers. Using semi-quantitative RT-PCR and report gene assays, we analyzed the effects of these potential herbal extracts on 10 different genes of the NF-κB signaling network in HaCaT cells. In accordance with our hypothesis, we found that the extract derived from Alpinia galanga significantly increased the expression of TNFAIP3 and significantly reduced the expression of CSF-1 and NF-κB2. Curcuma longa extract significantly decreased the expression of CSF-1, IL-8, NF-κB2, NF-κB1 and RelA, while Annona squamosa extract significantly lowered the expression of CD40 and NF-κB1. Therefore, this in vitro study suggested that these herbal extracts capable of functioning against psoriasis, might exert their activity by controlling the expression of NF-κB signaling biomarkers.
机译:牛皮癣是一种慢性炎症性皮肤病,其特征在于角质形成细胞快速增殖和角质化不完全。发现更安全,更有效的抗银屑病药物仍是当前积极研究的领域。使用HaCaT角质形成细胞系作为体外模型,我们先前已经发现,来自三种泰国草药,即高良姜,姜黄和番荔枝科的乙醇提取物具有抗银屑病活性。在当前的研究中,我们旨在研究这些泰国药用植物提取物是否通过调节NF-κB信号生物标记物在抑制牛皮癣中发挥分子作用。使用半定量RT-PCR和报告基因测定,我们分析了这些潜在的草药提取物对HaCaT细胞中NF-κB信号网络的10个不同基因的影响。根据我们的假设,我们发现来自高良姜的提取物显着增加了TNFAIP3的表达,并显着降低了CSF-1和NF-κB2的表达。姜黄提取物显着降低CSF-1,IL-8,NF-κB2,NF-κB1和RelA的表达,而番荔枝番荔枝提取物显着降低CD40和NF-κB1的表达。因此,这项体外研究表明,这些具有抗牛皮癣功能的草药提取物可能通过控制NF-κB信号转导生物标志物的表达发挥其活性。

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