Karasawa, Y.; Miyano, K.; Fujii, H.; Mizuguchi, T.; Kuroda, Y.; Nonaka, M.; Komatsu, A.; Ohshima, K.; Yamaguchi, M.; Yamaguchi, K.;
et al. In Vitro Analyses of Spinach-Derived Opioid Peptides, Rubiscolins: Receptor Selectivity and Intracellular Activities through G Protein- and β-Arrestin-Mediated Pathways. Molecules 2021, 26, 6079.
https://doi.org/10.3390/molecules26196079
AMA Style
Karasawa Y, Miyano K, Fujii H, Mizuguchi T, Kuroda Y, Nonaka M, Komatsu A, Ohshima K, Yamaguchi M, Yamaguchi K,
et al. In Vitro Analyses of Spinach-Derived Opioid Peptides, Rubiscolins: Receptor Selectivity and Intracellular Activities through G Protein- and β-Arrestin-Mediated Pathways. Molecules. 2021; 26(19):6079.
https://doi.org/10.3390/molecules26196079
Chicago/Turabian Style
Karasawa, Yusuke, Kanako Miyano, Hideaki Fujii, Takaaki Mizuguchi, Yui Kuroda, Miki Nonaka, Akane Komatsu, Kaori Ohshima, Masahiro Yamaguchi, Keisuke Yamaguchi,
and et al. 2021. "In Vitro Analyses of Spinach-Derived Opioid Peptides, Rubiscolins: Receptor Selectivity and Intracellular Activities through G Protein- and β-Arrestin-Mediated Pathways" Molecules 26, no. 19: 6079.
https://doi.org/10.3390/molecules26196079
APA Style
Karasawa, Y., Miyano, K., Fujii, H., Mizuguchi, T., Kuroda, Y., Nonaka, M., Komatsu, A., Ohshima, K., Yamaguchi, M., Yamaguchi, K., Iseki, M., Uezono, Y., & Hayashida, M.
(2021). In Vitro Analyses of Spinach-Derived Opioid Peptides, Rubiscolins: Receptor Selectivity and Intracellular Activities through G Protein- and β-Arrestin-Mediated Pathways. Molecules, 26(19), 6079.
https://doi.org/10.3390/molecules26196079