探索植物性α-葡萄糖苷酶抑制剂:对抗2型糖尿病的有力竞争者。

IF 2.5 4区 医学 Q3 ENDOCRINOLOGY & METABOLISM Archives of Physiology and Biochemistry Pub Date : 2023-09-28 DOI:10.1080/13813455.2023.2262167
Sonali Kumari, Ravi Saini, Aditi Bhatnagar, Abha Mishra
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引用次数: 0

摘要

目的:本系统综述旨在全面了解天然来源的各种生物活性化合物对α-G的抑制潜力。方法:使用各种数据库和搜索引擎进行全面的文献检索,包括Science Direct、Google Scholar、SciFinder、Web of Science和PubMed,直到2023年5月。结果和结论:α-葡萄糖苷酶(α-G)存在于小肠刷状缘上皮中,由重复的糖苷水解酶(GH31)结构域组成。它涉及通过作用于α(1→ 4) 和(1→ 6) 连接的葡萄糖残基。一旦被吸收,葡萄糖进入血液并升高餐后葡萄糖,这与2型糖尿病(T2D)的发展有关。流行性肥胖、心血管疾病和肾病与T2D有关。具有α-G抑制潜力的传统药用植物通常用于治疗T2D,因为目前使用的α-G抑制剂米格利托、阿卡波糖和伏格列糖有不良反应。来自天然来源的各种生物活性化合物,包括羽扇豆酮、Wilforlide A、Baicalein、桦木酸、熊果酸、齐墩果酸、Katononic acid、Carnosol、Hypericin、Astilbin、羽扇豆醇、桦木烯酸、Fagomine、Lactucaxanthin、赤藓糖醇、GP90-1B、原花青素、Galangin和呕吐物对调节高血糖具有α-G抑制潜力。
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Exploring plant-based alpha-glucosidase inhibitors: promising contenders for combatting type-2 diabetes.

Objective: This systematic review aimed to provide comprehensive details on the α-G inhibitory potential of various bioactive compounds derived from natural sources.Methods: A comprehensive literature search was conducted using various databases and search engines, including Science Direct, Google Scholar, SciFinder, Web of Science, and PubMed until May, 2023.Results and conclusions: The enzyme alpha-glucosidase (α-G) is found in the brush border epithelium of the small intestine and consists of duplicated glycoside hydrolase (GH31) domain. It involves the conversion of disaccharides and oligosaccharides into monosaccharides by acting on alpha (1 → 4) and (1 → 6) linked glucose residue. Once absorbed, glucose enters the bloodstream and elevates postprandial glucose, which is associated with the development of type 2 Diabetes (T2D). Epidemic obesity, cardiovascular disease, and nephropathy are linked to T2D. Traditional medicinal plants with α-G inhibitory potential are commonly used to treat T2D due to the adverse effects of currently used α-G inhibitors miglitol, acarbose, and voglibose. Various bioactive compounds derived from natural sources, including lupenone, Wilforlide A, Baicalein, Betulinic acid, Ursolic acid, Oleanolic acid, Katononic acid, Carnosol, Hypericin, Astilbin, lupeol, betulonic acid, Fagomine, Lactucaxanthin, Erythritol, GP90-1B, Procyanidins, Galangin, and vomifoliol retain α-G inhibitory potential for regulating hyperglycaemia.

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来源期刊
Archives of Physiology and Biochemistry
Archives of Physiology and Biochemistry ENDOCRINOLOGY & METABOLISM-PHYSIOLOGY
CiteScore
6.90
自引率
3.30%
发文量
21
期刊介绍: Archives of Physiology and Biochemistry: The Journal of Metabolic Diseases is an international peer-reviewed journal which has been relaunched to meet the increasing demand for integrated publication on molecular, biochemical and cellular aspects of metabolic diseases, as well as clinical and therapeutic strategies for their treatment. It publishes full-length original articles, rapid papers, reviews and mini-reviews on selected topics. It is the overall goal of the journal to disseminate novel approaches to an improved understanding of major metabolic disorders. The scope encompasses all topics related to the molecular and cellular pathophysiology of metabolic diseases like obesity, type 2 diabetes and the metabolic syndrome, and their associated complications. Clinical studies are considered as an integral part of the Journal and should be related to one of the following topics: -Dysregulation of hormone receptors and signal transduction -Contribution of gene variants and gene regulatory processes -Impairment of intermediary metabolism at the cellular level -Secretion and metabolism of peptides and other factors that mediate cellular crosstalk -Therapeutic strategies for managing metabolic diseases Special issues dedicated to topics in the field will be published regularly.
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