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Journal ArticleDOI

Dietary flavonoid aglycones and their glycosides: Which show better biological significance?

Jianbo Xiao
- 15 Jul 2015 - 
- Vol. 57, Iss: 9, pp 1874-1905
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TLDR
With in vivo (oral) treatment, flavonoids glycosides showed similar or even higher antidiabetes, anti-inflammatory, antidegranulating, antistress, and antiallergic activity than their flavonoid aglycones.
Abstract
The dietary flavonoids, especially their glycosides, are the most vital phytochemicals in diets and are of great general interest due to their diverse bioactivity. The natural flavonoids almost all exist as their O-glycoside or C-glycoside forms in plants. In this review, we summarized the existing knowledge on the different biological benefits and pharmacokinetic behaviors between flavonoid aglycones and their glycosides. Due to various conclusions from different flavonoid types and health/disease conditions, it is very difficult to draw general or universally applicable comments regarding the impact of glycosylation on the biological benefits of flavonoids. It seems as though O-glycosylation generally reduces the bioactivity of these compounds - this has been observed for diverse properties including antioxidant activity, antidiabetes activity, anti-inflammation activity, antibacterial, antifungal activity, antitumor activity, anticoagulant activity, antiplatelet activity, antidegranulating activity, antitrypanosomal activity, influenza virus neuraminidase inhibition, aldehyde oxidase inhibition, immunomodulatory, and antitubercular activity. However, O-glycosylation can enhance certain types of biological benefits including anti-HIV activity, tyrosinase inhibition, antirotavirus activity, antistress activity, antiobesity activity, anticholinesterase potential, antiadipogenic activity, and antiallergic activity. However, there is a lack of data for most flavonoids, and their structures vary widely. There is also a profound lack of data on the impact of C-glycosylation on flavonoid biological benefits, although it has been demonstrated that in at least some cases C-glycosylation has positive effects on properties that may be useful in human healthcare such as antioxidant and antidiabetes activity. Furthermore, there is a lack of in vivo data that would make it possible to make broad generalizations concerning the influence of glycosylation on the benefits of flavonoids for human health. It is possible that the effects of glycosylation on flavonoid bioactivity in vitro may differ from that seen in vivo. With in vivo (oral) treatment, flavonoid glycosides showed similar or even higher antidiabetes, anti-inflammatory, antidegranulating, antistress, and antiallergic activity than their flavonoid aglycones. Flavonoid glycosides keep higher plasma levels and have a longer mean residence time than those of aglycones. We should pay more attention to in vivo benefits of flavonoid glycosides, especially C-glycosides.

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The Reciprocal Interactions between Polyphenols and Gut Microbiota and Effects on Bioaccessibility

TL;DR: This review focuses on the biotransformation of polyphenols by gut microbiota, modulation of gut microbiota bypolyphenols, and the effects of these two-way mutual interactions on polyphenol bioavailability, and ultimately, human health.
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Dietary Quercetin and Kaempferol: Bioavailability and Potential Cardiovascular-Related Bioactivity in Humans

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Anti-inflammatory effects of phytochemicals from fruits, vegetables, and food legumes: A review

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Plant flavonoids: Classification, distribution, biosynthesis, and antioxidant activity.

TL;DR: A comprehensive review of recent progress in the research of plant flavonoids, focusing on their biosynthesis (pathway and transcription factors) and bioactive mechanisms based on epidemic evidence, in vitro and in vivo research, and bioavailability in the human body is presented in this paper .
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References
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Journal ArticleDOI

Phytochemical screening and biological activities of Eminium spiculatum (Blume) Kuntze (family Araceae)

TL;DR: In this article, the chemical composition of E. spiculatum and its antimicrobial, antiplatelet and antiproliferative activities were determined using well-in-agar method and in vitro platelet aggregation by aggrometric method.
Journal ArticleDOI

Evaluation on anti-adipogenic activity of flavonoid glucopyranosides from Salicornia herbacea

TL;DR: In this article, the bioactivity-monitored isolation of flavonoid glucopyranosides from the salt-marsh plant Salicornia herbacea was performed, and their effects on adipogenic differentiation were evaluated in 3T3-L1 adipocytes.
Journal ArticleDOI

Disposition of pharmacologically active dietary isoflavones in biological systems.

TL;DR: A comprehensive understanding is given of these dietary phytoestrogens with regard to their absorption, biodistribution and the role of enzyme-transporter interplay affecting their disposition in biological systems.
Journal ArticleDOI

Non-covalent interaction of dietary polyphenols with total plasma proteins of type II diabetes: molecular structure/property-affinity relationships.

TL;DR: The hydrophobic force played an important role in the binding interaction between polyphenols and IIDTPP.
Journal ArticleDOI

Flavonol glycosides with lipid accumulation inhibitory activity and simultaneous quantitative analysis of 15 polyphenols and caffeine in the flower buds of Camellia sinensis from different regions by LCMS

TL;DR: A new flavonol glycoside, chakaflavonoside B (17), which was isolated in the course of this analytical study, was found to show oleic acid-albumin-induced lipid accumulation inhibitory activity.
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