Setoguchi, S.; Hidaka, R.; Nagata-Akaho, N.; Watase, D.; Koga, M.; Matsunaga, K.; Karube, Y.; Takata, J.
Novel Cationic Prodrug of Ubiquinol-10 Enhances Intestinal Absorption via Efficient Formation of Nanosized Mixed-Micelles with Bile Acid Anions. Molecules 2020, 25, 546.
https://doi.org/10.3390/molecules25030546
AMA Style
Setoguchi S, Hidaka R, Nagata-Akaho N, Watase D, Koga M, Matsunaga K, Karube Y, Takata J.
Novel Cationic Prodrug of Ubiquinol-10 Enhances Intestinal Absorption via Efficient Formation of Nanosized Mixed-Micelles with Bile Acid Anions. Molecules. 2020; 25(3):546.
https://doi.org/10.3390/molecules25030546
Chicago/Turabian Style
Setoguchi, Shuichi, Ryoji Hidaka, Nami Nagata-Akaho, Daisuke Watase, Mitsuhisa Koga, Kazuhisa Matsunaga, Yoshiharu Karube, and Jiro Takata.
2020. "Novel Cationic Prodrug of Ubiquinol-10 Enhances Intestinal Absorption via Efficient Formation of Nanosized Mixed-Micelles with Bile Acid Anions" Molecules 25, no. 3: 546.
https://doi.org/10.3390/molecules25030546
APA Style
Setoguchi, S., Hidaka, R., Nagata-Akaho, N., Watase, D., Koga, M., Matsunaga, K., Karube, Y., & Takata, J.
(2020). Novel Cationic Prodrug of Ubiquinol-10 Enhances Intestinal Absorption via Efficient Formation of Nanosized Mixed-Micelles with Bile Acid Anions. Molecules, 25(3), 546.
https://doi.org/10.3390/molecules25030546