Carlini, L.; Tancreda, G.; Iobbi, V.; Caicci, F.; Bruno, S.; Esposito, A.; Calzia, D.; Benini, S.; Bisio, A.; Manni, L.;
et al. The Flavone Cirsiliol from Salvia x jamensis Binds the F1 Moiety of ATP Synthase, Modulating Free Radical Production. Cells 2022, 11, 3169.
https://doi.org/10.3390/cells11193169
AMA Style
Carlini L, Tancreda G, Iobbi V, Caicci F, Bruno S, Esposito A, Calzia D, Benini S, Bisio A, Manni L,
et al. The Flavone Cirsiliol from Salvia x jamensis Binds the F1 Moiety of ATP Synthase, Modulating Free Radical Production. Cells. 2022; 11(19):3169.
https://doi.org/10.3390/cells11193169
Chicago/Turabian Style
Carlini, Lavinia, Gabriele Tancreda, Valeria Iobbi, Federico Caicci, Silvia Bruno, Alfonso Esposito, Daniela Calzia, Stefano Benini, Angela Bisio, Lucia Manni,
and et al. 2022. "The Flavone Cirsiliol from Salvia x jamensis Binds the F1 Moiety of ATP Synthase, Modulating Free Radical Production" Cells 11, no. 19: 3169.
https://doi.org/10.3390/cells11193169
APA Style
Carlini, L., Tancreda, G., Iobbi, V., Caicci, F., Bruno, S., Esposito, A., Calzia, D., Benini, S., Bisio, A., Manni, L., Schito, A., Traverso, C. E., Ravera, S., & Panfoli, I.
(2022). The Flavone Cirsiliol from Salvia x jamensis Binds the F1 Moiety of ATP Synthase, Modulating Free Radical Production. Cells, 11(19), 3169.
https://doi.org/10.3390/cells11193169