Dohárszky, A.; Vági, E.M.; Könczöl, Á.; Simon, A.; Várnagy, E.; Muratov, M.; Steiger, K.I.; Várnai, B.; Béni, S.; Riethmüller, E.;
et al. Kratom Alkaloids: A Blood–Brain Barrier Specific Membrane Permeability Assay-Guided Isolation and Cyclodextrin Complexation Study. Molecules 2024, 29, 5302.
https://doi.org/10.3390/molecules29225302
AMA Style
Dohárszky A, Vági EM, Könczöl Á, Simon A, Várnagy E, Muratov M, Steiger KI, Várnai B, Béni S, Riethmüller E,
et al. Kratom Alkaloids: A Blood–Brain Barrier Specific Membrane Permeability Assay-Guided Isolation and Cyclodextrin Complexation Study. Molecules. 2024; 29(22):5302.
https://doi.org/10.3390/molecules29225302
Chicago/Turabian Style
Dohárszky, András, Erika Mária Vági, Árpád Könczöl, Alexandra Simon, Erzsébet Várnagy, Miras Muratov, Kristóf István Steiger, Bianka Várnai, Szabolcs Béni, Eszter Riethmüller,
and et al. 2024. "Kratom Alkaloids: A Blood–Brain Barrier Specific Membrane Permeability Assay-Guided Isolation and Cyclodextrin Complexation Study" Molecules 29, no. 22: 5302.
https://doi.org/10.3390/molecules29225302
APA Style
Dohárszky, A., Vági, E. M., Könczöl, Á., Simon, A., Várnagy, E., Muratov, M., Steiger, K. I., Várnai, B., Béni, S., Riethmüller, E., & Fejős, I.
(2024). Kratom Alkaloids: A Blood–Brain Barrier Specific Membrane Permeability Assay-Guided Isolation and Cyclodextrin Complexation Study. Molecules, 29(22), 5302.
https://doi.org/10.3390/molecules29225302