Novel Cationic Prodrug of Ubiquinol-10 Enhances Intestinal Absorption via Efficient Formation of Nanosized Mixed-Micelles with Bile Acid Anions

The aim of this study was to develop a prodrug of ubiquinol-10 (UqH-10), the active form of ubiquinone-10 (Uq-10), for oral delivery. Bioavailability of UqH-10 is hampered by its high susceptibility to oxidation and water-insolubility. We prepared three novel <i>N,N</i>-dimethylglycine e...

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Bibliographic Details
Main Authors: Shuichi Setoguchi, Ryoji Hidaka, Nami Nagata-Akaho, Daisuke Watase, Mitsuhisa Koga, Kazuhisa Matsunaga, Yoshiharu Karube, Jiro Takata
Format: Article
Language:English
Published: MDPI AG 2020-01-01
Series:Molecules
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Online Access:https://www.mdpi.com/1420-3049/25/3/546
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Summary:The aim of this study was to develop a prodrug of ubiquinol-10 (UqH-10), the active form of ubiquinone-10 (Uq-10), for oral delivery. Bioavailability of UqH-10 is hampered by its high susceptibility to oxidation and water-insolubility. We prepared three novel <i>N,N</i>-dimethylglycine ester derivatives of UqH-10, including a 1-monoester (UqH-1-DMG), 4-monoester (UqH-4-DMG), and 1,4-bis-ester (UqH-DMG), and assessed their physicochemical properties in vitro and in vivo. UqH-DMG spontaneously formed an aqueous micelle solution comprising 20 nm particles at 36.5 &#176;C. Cationic UqH-DMG formed nano-sized (5 nm) mixed-micelles with taurocholic acid. Reconversion of the derivatives to UqH-10 was accelerated in human liver microsomes. The oral bioavailability of UqH-10 after administration of UqH-derivatives or Uq-10 was determined in fasted and postprandial rats secreting normal and high levels of bile, respectively. In fasted rats, plasma UqH-10 after UqH-derivatives administration reached <i>C</i><sub>max</sub> at 2&#8722;3 h and after Uq-10 administration, it remained low. The <i>AUC</i><sub>0-24h</sub> of UqH-10 after UqH-derivatives administration was 2&#8722;3-fold higher than that after Uq-10 administration. In postprandial rats, the <i>T</i><sub>max</sub> of UqH-10 after UqH-derivatives administration was an hour earlier than after Uq-10 administration. In conclusion, cationic UqH-derivatives are convenient prodrugs that enhance UqH-10 bioavailability by forming nanosized mixed-micelles with intestinal bile acids.
ISSN:1420-3049