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Flavonoids and type 2 diabetes: Evidence of efficacy in clinical and animal studies and delivery strategies to enhance their therapeutic efficacy

期刊

PHARMACOLOGICAL RESEARCH
卷 152, 期 -, 页码 -

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.phrs.2020.104629

关键词

T2DM; Oxidative stress; Inflammation and flavonoids

资金

  1. National Natural Science Foundation of China [31960666, 31872991]
  2. Earmarked Fund for China Agriculture Research System [CARS-35]
  3. Open Fund of National and Local United Engineering Laboratory of Integrative Utilization Technology of Eucommia ulmoides [NLE201703]

向作者/读者索取更多资源

Diabetes mellitus type 2 (T2DM) is a metabolic disorder develops due to the overproduction of free radicals where oxidative stress could contribute it. Possible factors are defective insulin signals, glucose oxidation, and degradation of glycated proteins as well as alteration in glutathione metabolism which induced hyperglycemia. Previous studies revealed a link between T2DM with oxidative stress, inflammation and insulin resistance which are assumed to be regulated by numerous cellular networks such as NF-kappa B, PI3K/Akt, MAPK, GSK3 and PPAR gamma. Flavonoids are ubiquitously present in the nature and classified according to their chemical structures for example, flavonols, flavones, flavan-3-ols, anthocyanidins, flavanones, and isoflavones. Flavonoids indicate poor bioavailability which could be improved by employing various nano-delivery systems against the occurrences of T2DM. These bioactive compounds exert versatile anti-diabetic activities via modulating targeted cellular naling networks, thereby, improving glucose metabolism, alpha-glycosidase, and glucose transport or aldose reductase by carbohydrate metabolic pathway in pancreatic beta-cells, hepatocytes, adipocytes and skeletal myofibres. Moreover, anti-diabetic properties of flavonoids also encounter diabetic related complications. This review article has designed to shed light on the anti-diabetic potential of flavonoids, contribution of oxidative stress, evidence of efficacy in clinical, cellular and animal studies and nano-delivery approaches to enhance their therapeutic efficacy. This article might give some new insights for therapeutic intervention against T2DM in near future.

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