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抗糖尿病药用植物的代谢和表观遗传作用机制。

Metabolic and Epigenetic Action Mechanisms of Antidiabetic Medicinal Plants.

作者信息

Shanak Siba, Saad Bashar, Zaid Hilal

机构信息

Faculty of Sciences, Arab American University Palestine, P.O Box 240, Jenin, State of Palestine.

Qasemi Research Center- Al-Qasemi Academy, P.O Box 124, Baqa El-Gharbia 30100, Israel.

出版信息

Evid Based Complement Alternat Med. 2019 May 5;2019:3583067. doi: 10.1155/2019/3583067. eCollection 2019.

Abstract

Diabetes is a predominant metabolic disease nowadays due to the off-beam lifestyle of diet and reduced physical activity. Complications of the illness include the gene-environment interactions and the downstream genetic and epigenetic consequences, e.g., cardiovascular diseases, tumor progression, retinopathy, nephropathy, neuropathy, polydipsia, polyphagia, polyuria, and weight loss. This review sheds the light on the mechanistic insights of antidiabetic medicinal plants in targeting key organs and tissues involved in regulating blood glucose homeostasis including the pancreas, liver, muscles, adipose tissues, and glucose absorption in the intestine. Diabetes is also involved in modulating major epigenetic pathways such as DNA methylation and histone modification. In this respect, we will discuss the phytochemicals as current and future epigenetic drugs in the treatment of diabetes. In addition, several proteins are common targets for the treatment of diabetes. Some phytochemicals are expected to directly interact with these targets. We lastly uncover modeling studies that predict such plausible interactions. In conclusion, this review article presents the mechanistic insight of phytochemicals in the treatment of diabetes by combining both the cellular systems biology and molecular modeling.

摘要

由于饮食生活方式失调和身体活动减少,糖尿病如今是一种主要的代谢疾病。该疾病的并发症包括基因-环境相互作用以及下游的遗传和表观遗传后果,例如心血管疾病、肿瘤进展、视网膜病变、肾病、神经病变、烦渴、多食、多尿和体重减轻。本综述揭示了抗糖尿病药用植物在靶向参与调节血糖稳态的关键器官和组织(包括胰腺、肝脏、肌肉、脂肪组织以及肠道中的葡萄糖吸收)方面的机制见解。糖尿病还参与调节主要的表观遗传途径,如DNA甲基化和组蛋白修饰。在这方面,我们将讨论作为当前和未来治疗糖尿病的表观遗传药物的植物化学物质。此外,几种蛋白质是治疗糖尿病的常见靶点。一些植物化学物质有望直接与这些靶点相互作用。我们最后揭示了预测此类可能相互作用的建模研究。总之,这篇综述文章通过结合细胞系统生物学和分子建模,展示了植物化学物质在治疗糖尿病方面的机制见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd76/6525884/9ab6ab1eb2b8/ECAM2019-3583067.001.jpg

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