姜酮对重建人表皮组织影响的混合系统生物学和系统药理学研究。

Elham Amjad, Babak Sokouti, Solmaz Asnaashari
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引用次数: 1

摘要

背景:随着个人寿命的延长,老年人可能会面临一些问题。这种模式促使研究人员进一步研究衰老概念,以生产成功的抗衰老剂。本研究采用生物信息学方法分析了天然化合物姜酮对表皮组织的影响。方法:为此,我们选择GEO数据集GSE133338进行系统生物学和系统药理学方法,从识别差异表达基因到分析基因本体,确定姜酮的相似结构及其特征(即抗氧化、抗炎和皮肤疾病),构建基因-化学网络,分析基因-疾病关系,并通过文献证据验证重要基因。结果:微阵列数据集的后处理鉴定了对照和生姜酮处理样品中的13个必需基因。该程序揭示了各种结构相似的化学和草药化合物,可能与皮肤有关。此外,我们研究了差异表达基因与皮肤相关疾病的关系,并在文献中证实了它们与皮肤疾病的直接联系。此外,对微阵列分析数据集的分析揭示了白细胞介素作为细胞因子家族的一部分在皮肤衰老过程中的关键作用。结论:姜酮及其潜在的任何成分(例如,其类似的化合物扫描功能)可作为治疗皮肤疾病(如皮肤老化)的药物。然而,在未来的研究中,生姜酮的有益作用应在其他模型(即人类或动物)中进行评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A hybrid systems biology and systems pharmacology investigation of Zingerone's effects on reconstructed human epidermal tissues.

Background: As individuals live longer, elderly populations can be expected to face issues. This pattern urges researchers to investigate the aging concept further to produce successful anti-aging agents. In the current study, the effects of Zingerone (a natural compound) on epidermal tissues were analyzed using a bioinformatics approach.

Methods: For this purpose, we chose the GEO dataset GSE133338 to carry out the systems biology and systems pharmacology approaches, ranging from identifying the differentially expressed genes to analyzing the gene ontology, determining similar structures of Zingerone and their features (i.e., anti-oxidant, anti-inflammatory, and skin disorders), constructing the gene-chemicals network, analyzing gene-disease relationships, and validating significant genes through the evidence presented in the literature.

Results: The post-processing of the microarray dataset identified thirteen essential genes among control and Zingerone-treated samples. The procedure revealed various structurally similar chemical and herbal compounds with possible skin-related effects. Additionally, we studied the relationships of differentially expressed genes with skin-related diseases and validated their direct connections with skin disorders the evidence available in the literature. Also, the analysis of the microarray profiling dataset revealed the critical role of interleukins as a part of the cytokines family on skin aging progress.

Conclusions: Zingerone, and potentially any constituents of Zingerone (e.g., their similar compound scan functionality), can be used as therapeutic agents in managing skin disorders such as skin aging. However, the beneficial effects of Zingerone should be assessed in other models (i.e., human or animal) in future studies.

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