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Published on: April 23, 2018
Flavonoids and their metal complexes as potential agents for diabetes mellitus with future perspectives
Shuang Lv1, Zhenbao Zhu1, Hang Xiao2
1School of Food Science and Engineering, Shaanxi University of Science and Technology, Xi'an, China.
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.
Insights
Flavonoids show promise for treating type 2 diabetes by inhibiting key enzymes. Metal complexes of flavonoids offer improved bioavailability, paving the way for new diabetes therapies and functional foods.
Area of Science:
- Biochemistry
- Pharmacology
- Medicinal Chemistry
Background:
- Type 2 diabetes mellitus (T2DM) is a global health issue characterized by hyperglycemia.
- Current T2DM treatments have side effects, necessitating safer alternatives.
- Flavonoids, plant-derived compounds, present a multi-target approach for diabetes management.
Purpose of the Study:
- To review the enzyme inhibitory actions of flavonoids relevant to T2DM.
- To explore the structure-activity relationships (SAR) of flavonoids in diabetes treatment.
- To highlight the potential of flavonoid metal complexes as next-generation therapeutics.
Main Methods:
- Review of enzymatic inhibition mechanisms of flavonoids (e.g., α-amylase, α-glucosidase, DPP-4, GP, PTP1B).
- Analysis of structure-activity relationships (SAR) for rational drug design.
- Overview of flavonoid metal complex synthesis and pharmacokinetic improvements.
Main Results:
- Flavonoids inhibit multiple enzymes involved in glucose metabolism.
- SAR studies provide insights into optimizing flavonoid efficacy.
- Flavonoid metal complexes demonstrate enhanced solubility and bioavailability.
Conclusions:
- Flavonoids are potent inhibitors of key diabetes-related enzymes.
- Metal chelation enhances flavonoid pharmacokinetic properties, overcoming bioavailability limitations.
- Flavonoid metal complexes represent a promising strategy for developing novel T2DM therapeutics and functional foods.
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