Bergin, J.C.J.; Tan, K.K.; Nelson, A.K.; Amarandei, C.-A.; Hubscher-Bruder, V.; Brandel, J.; Voinarovska, V.; Dejaegere, A.; Stote, R.H.; Tétard, D.
1-Hydroxy-2(1H)-pyridinone-Based Chelators with Potential Catechol O-Methyl Transferase Inhibition and Neurorescue Dual Action against Parkinson’s Disease. Molecules 2022, 27, 2816.
https://doi.org/10.3390/molecules27092816
AMA Style
Bergin JCJ, Tan KK, Nelson AK, Amarandei C-A, Hubscher-Bruder V, Brandel J, Voinarovska V, Dejaegere A, Stote RH, Tétard D.
1-Hydroxy-2(1H)-pyridinone-Based Chelators with Potential Catechol O-Methyl Transferase Inhibition and Neurorescue Dual Action against Parkinson’s Disease. Molecules. 2022; 27(9):2816.
https://doi.org/10.3390/molecules27092816
Chicago/Turabian Style
Bergin, Joseph C. J., Kean Kan Tan, Anya K. Nelson, Cristina-Andreea Amarandei, Véronique Hubscher-Bruder, Jérémy Brandel, Varvara Voinarovska, Annick Dejaegere, Roland H. Stote, and David Tétard.
2022. "1-Hydroxy-2(1H)-pyridinone-Based Chelators with Potential Catechol O-Methyl Transferase Inhibition and Neurorescue Dual Action against Parkinson’s Disease" Molecules 27, no. 9: 2816.
https://doi.org/10.3390/molecules27092816
APA Style
Bergin, J. C. J., Tan, K. K., Nelson, A. K., Amarandei, C.-A., Hubscher-Bruder, V., Brandel, J., Voinarovska, V., Dejaegere, A., Stote, R. H., & Tétard, D.
(2022). 1-Hydroxy-2(1H)-pyridinone-Based Chelators with Potential Catechol O-Methyl Transferase Inhibition and Neurorescue Dual Action against Parkinson’s Disease. Molecules, 27(9), 2816.
https://doi.org/10.3390/molecules27092816