Chemical structures, bioactivities and molecular mechanisms of citrus polymethoxyflavones

[Display omitted] •Nobiletin, tangeretin and sinensetin are the mostly studied citrus PMFs.•Certain hydroxylated PMFs demonstrate more potent bioactivities.•Lipid metabolism regulation and neuro-protection of PMFs are reported frequently.•Drug resistance and antibiosis are emerging research hotspots...

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Published in:Journal of functional foods Vol. 40; pp. 498 - 509
Main Authors: Gao, Zhao, Gao, Wen, Zeng, Su-Ling, Li, Ping, Liu, E-Hu
Format: Journal Article
Language:English
Published: Elsevier Ltd 01-01-2018
Elsevier
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Summary:[Display omitted] •Nobiletin, tangeretin and sinensetin are the mostly studied citrus PMFs.•Certain hydroxylated PMFs demonstrate more potent bioactivities.•Lipid metabolism regulation and neuro-protection of PMFs are reported frequently.•Drug resistance and antibiosis are emerging research hotspots of citrus PMFs. Citrus polymethoxyflavones (PMFs) and hydroxylated PMFs demonstrate potent bioactivities in regulating cytoactivity and organ function by modulating signaling cascade, gene transcription and protein activity. Studies have documented a wide variety of pharmacological activities of citrus PMFs in cell culture and animal models. In this review, we summarized the chemical structures of citrus PMFs, presented current knowledge of their physiological properties as well as various bioactivities, such as regulation of metabolic disorder, anti-inflammation, neuro-protection, anti-cancer, anti-microbial. The underlying molecular mechanisms of these activities by citrus PMFs were also discussed. Collectively, though further research is needed in mutual effect, safety and clinical trials, citrus PMFs still have great potential to develop as therapeutic agents or dietary supplements in future decades.
ISSN:1756-4646
2214-9414
DOI:10.1016/j.jff.2017.11.036