Mermigka, G.; Vavouraki, A.I.; Nikolaou, C.; Cheiladaki, I.; Vourexakis, M.; Goumas, D.; Ververidis, F.; Trantas, E.
An Engineered Plant Metabolic Pathway Results in High Yields of Hydroxytyrosol Due to a Modified Whole-Cell Biocatalysis in Bioreactor. Metabolites 2023, 13, 1126.
https://doi.org/10.3390/metabo13111126
AMA Style
Mermigka G, Vavouraki AI, Nikolaou C, Cheiladaki I, Vourexakis M, Goumas D, Ververidis F, Trantas E.
An Engineered Plant Metabolic Pathway Results in High Yields of Hydroxytyrosol Due to a Modified Whole-Cell Biocatalysis in Bioreactor. Metabolites. 2023; 13(11):1126.
https://doi.org/10.3390/metabo13111126
Chicago/Turabian Style
Mermigka, Glykeria, Aikaterini I. Vavouraki, Chrysoula Nikolaou, Ioanna Cheiladaki, Michail Vourexakis, Dimitrios Goumas, Filippos Ververidis, and Emmanouil Trantas.
2023. "An Engineered Plant Metabolic Pathway Results in High Yields of Hydroxytyrosol Due to a Modified Whole-Cell Biocatalysis in Bioreactor" Metabolites 13, no. 11: 1126.
https://doi.org/10.3390/metabo13111126
APA Style
Mermigka, G., Vavouraki, A. I., Nikolaou, C., Cheiladaki, I., Vourexakis, M., Goumas, D., Ververidis, F., & Trantas, E.
(2023). An Engineered Plant Metabolic Pathway Results in High Yields of Hydroxytyrosol Due to a Modified Whole-Cell Biocatalysis in Bioreactor. Metabolites, 13(11), 1126.
https://doi.org/10.3390/metabo13111126