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Xiaodong Wang

Researcher at State University of New York System

Publications -  12
Citations -  1327

Xiaodong Wang is an academic researcher from State University of New York System. The author has contributed to research in topics: Biochanin A & Pharmacokinetics. The author has an hindex of 9, co-authored 11 publications receiving 1256 citations. Previous affiliations of Xiaodong Wang include Genentech.

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Dietary flavonoids: effects on xenobiotic and carcinogen metabolism.

TL;DR: The cancer protective effects of flavonoids have been attributed to a wide variety of mechanisms, including modulating enzyme activities resulting in the decreased carcinogenicity of xenobiotics and phase II enzymes, largely responsible for the detoxification of carcinogens.
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Flavonoids as a novel class of human organic anion-transporting polypeptide OATP1B1 (OATP-C) modulators.

TL;DR: Evaluating the effects of naturally occurring flavonoids on the uptake of [3H]dehydroepiandrosterone sulfate (DHEAS) in OATP1B1-expressing and OatP1 B1-negative HeLa cells indicates that flavonoid are a novel class of OATp1B 1 modulators, suggesting the potential for diet-drug interactions.
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Effects of the Flavonoid Chrysin on Nitrofurantoin Pharmacokinetics in Rats: Potential Involvement of ABCG2

TL;DR: The results indicate that the flavonoid chrysin significantly inhibits nitrofurantoin transport mediated by human BCRP and murine Bcrp1.
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Flavonoids chrysin and benzoflavone, potent breast cancer resistance protein inhibitors, have no significant effect on topotecan pharmacokinetics in rats or mdr1a/1b (-/-) mice.

TL;DR: It is observed that these flavonoids have only weak, if any, inhibition activity against mouse BCRp1-mediated transport of topotecan in MDCK-Bcrp1 cells, indicating the importance of BCRP in the bioavailability and disposition of toponoids in rats.
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Pharmacokinetic Interaction between the Flavonoid Luteolin and γ-Hydroxybutyrate in Rats: Potential Involvement of Monocarboxylate Transporters

TL;DR: It is indicated that luteolin significantly altered the pharmacokinetics of GHB by inhibiting its MCT1-mediated transport, and may offer a potential clinical detoxification strategy to treat GHB overdoses.