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Multi-Targeted Molecular Effects of Hibiscus sabdariffa Polyphenols: An Opportunity for a Global Approach to Obesity

机译:木槿sabdariffa多酚的多目标分子效应:肥胖的全球方法的机会。

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摘要

Improper diet can alter gene expression by breaking the energy balance equation and changing metabolic and oxidative stress biomarkers, which can result in the development of obesity-related metabolic disorders. The pleiotropic effects of dietary plant polyphenols are capable of counteracting by modulating different key molecular targets at the cell, as well as through epigenetic modifications. Hibiscus sabdariffa (HS)-derived polyphenols are known to ameliorate various obesity-related conditions. Recent evidence leads to propose the complex nature of the underlying mechanism of action. This multi-targeted mechanism includes the regulation of energy metabolism, oxidative stress and inflammatory pathways, transcription factors, hormones and peptides, digestive enzymes, as well as epigenetic modifications. This article reviews the accumulated evidence on the multiple anti-obesity effects of HS polyphenols in cell and animal models, as well as in humans, and its putative molecular targets. In silico studies reveal the capacity of several HS polyphenols to act as putative ligands for different digestive and metabolic enzymes, which may also deserve further attention. Therefore, a global approach including integrated and networked omics techniques, virtual screening and epigenetic analysis is necessary to fully understand the molecular mechanisms of HS polyphenols and metabolites involved, as well as their possible implications in the design of safe and effective polyphenolic formulations for obesity.
机译:饮食不当会破坏能量平衡方程并改变代谢和氧化应激生物标志物,从而改变基因表达,从而导致肥胖相关的代谢性疾病的发展。膳食植物多酚的多效作用能够通过调节细胞上的不同关键分子靶标以及通过表观遗传修饰来抵消。源自芙蓉(HS)的多酚可改善各种肥胖相关疾病。最近的证据提出了潜在作用机制的复杂性。这种多目标机制包括能量代谢,氧化应激和炎症途径,转录因子,激素和肽,消化酶以及表观遗传修饰的调节。本文回顾了有关HS多酚在细胞和动物模型以及人类中的多重抗肥胖作用及其推定的分子靶标的积累证据。在计算机研究中,揭示了几种HS多酚充当不同消化和代谢酶的推定配体的能力,这也可能值得进一步关注。因此,有必要采用一种包括综合和网络化的组学技术,虚拟筛选和表观遗传学分析的全球方法,以充分了解所涉及的HS多酚和代谢物的分子机制,以及它们在肥胖安全有效的多酚制剂设计中的潜在意义。

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