Flavonoids and their metal complexes as potential agents for diabetes mellitus with future perspectives.

IF 7.3 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY
Shuang Lv, Zhenbao Zhu, Hang Xiao
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Abstract

Type 2 diabetes mellitus (T2DM) is a global health burden, with hyperglycemia as the main hallmark. This review commences with a concise overview of the intricate mechanisms underlying glucose uptake and utilization in organisms. Notably, we emphasize that T2DM management strategies pivot on delaying carbohydrate digestion, augmenting insulin secretion, and enhancing insulin sensitivity in target tissues. Unfortunately, the drugs currently available in the market for the treatment of T2DM have unpleasant side effects, spurring an urgent quest for safer and more efficacious alternatives. Flavonoids, emerging as a promising class of bioactive compounds derived from plants, offer a multi-faceted approach to diabetes treatment. Specifically, they potently inhibit enzymes such as α-amylase, α-glucosidase, dipeptidyl peptidase-4 (DPP-4), glycogen phosphorylase (GP) and protein-tyrosine phosphatase-1B (PTP1B). Through an in-depth analysis, this review not only summarizes these inhibitory actions but also establishes the structure-activity relationship (SAR), providing a blueprint for rational drug design. However, the clinical translation of flavonoids has been hampered by their suboptimal water solubility and bioavailability, attributable to the characteristic carbonyl and hydroxyl groups. Ingeniously, this chemical quirk has been harnessed to engineer metal chelates, which exhibit enhanced pharmacokinetic profiles. Herein, we offer an exhaustive overview of the latest advancements in flavonoid metal complexes research, spotlighting their potential as next-generation diabetes therapeutics. Available data are poised to galvanize the development of novel flavonoid derivatives, be it as potent drugs or functional foods, for combating T2DM.

黄酮类化合物及其金属复合物作为治疗糖尿病的潜在药物及未来展望。
2型糖尿病(T2DM)是一种全球性的健康负担,高血糖是其主要标志。这篇综述首先简要概述了生物体中葡萄糖摄取和利用的复杂机制。值得注意的是,我们强调T2DM管理策略的关键是延迟碳水化合物消化,增加胰岛素分泌,增强靶组织的胰岛素敏感性。不幸的是,目前市场上用于治疗2型糖尿病的药物有令人不快的副作用,这促使人们迫切寻求更安全、更有效的替代药物。黄酮类化合物作为一类从植物中提取的生物活性化合物,为糖尿病的治疗提供了多方面的途径。具体来说,它们能有效抑制α-淀粉酶、α-葡萄糖苷酶、二肽基肽酶-4 (DPP-4)、糖原磷酸化酶(GP)和蛋白酪氨酸磷酸酶- 1b (PTP1B)等酶。通过深入的分析,本文不仅总结了这些抑制作用,而且建立了结构-活性关系(SAR),为合理设计药物提供了蓝图。然而,由于其特有的羰基和羟基,黄酮类化合物的水溶性和生物利用度欠佳,阻碍了其临床翻译。巧妙地,这种化学特性已被用于设计金属螯合物,其表现出增强的药代动力学特征。在这里,我们提供了一个详尽的概述在类黄酮金属络合物研究的最新进展,突出其作为下一代糖尿病治疗的潜力。现有的数据准备激发新的类黄酮衍生物的发展,无论是有效的药物或功能性食品,对抗2型糖尿病。
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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来源期刊
CiteScore
22.60
自引率
4.90%
发文量
600
审稿时长
7.5 months
期刊介绍: Critical Reviews in Food Science and Nutrition serves as an authoritative outlet for critical perspectives on contemporary technology, food science, and human nutrition. With a specific focus on issues of national significance, particularly for food scientists, nutritionists, and health professionals, the journal delves into nutrition, functional foods, food safety, and food science and technology. Research areas span diverse topics such as diet and disease, antioxidants, allergenicity, microbiological concerns, flavor chemistry, nutrient roles and bioavailability, pesticides, toxic chemicals and regulation, risk assessment, food safety, and emerging food products, ingredients, and technologies.
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