Bussmann, A.J.C.; Zaninelli, T.H.; Saraiva-Santos, T.; Fattori, V.; Guazelli, C.F.S.; Bertozzi, M.M.; Andrade, K.C.; Ferraz, C.R.; Camilios-Neto, D.; Casella, A.M.B.;
et al. The Flavonoid Hesperidin Methyl Chalcone Targets Cytokines and Oxidative Stress to Reduce Diclofenac-Induced Acute Renal Injury: Contribution of the Nrf2 Redox-Sensitive Pathway. Antioxidants 2022, 11, 1261.
https://doi.org/10.3390/antiox11071261
AMA Style
Bussmann AJC, Zaninelli TH, Saraiva-Santos T, Fattori V, Guazelli CFS, Bertozzi MM, Andrade KC, Ferraz CR, Camilios-Neto D, Casella AMB,
et al. The Flavonoid Hesperidin Methyl Chalcone Targets Cytokines and Oxidative Stress to Reduce Diclofenac-Induced Acute Renal Injury: Contribution of the Nrf2 Redox-Sensitive Pathway. Antioxidants. 2022; 11(7):1261.
https://doi.org/10.3390/antiox11071261
Chicago/Turabian Style
Bussmann, Allan J. C., Tiago H. Zaninelli, Telma Saraiva-Santos, Victor Fattori, Carla F. S. Guazelli, Mariana M. Bertozzi, Ketlem C. Andrade, Camila R. Ferraz, Doumit Camilios-Neto, Antônio M. B. Casella,
and et al. 2022. "The Flavonoid Hesperidin Methyl Chalcone Targets Cytokines and Oxidative Stress to Reduce Diclofenac-Induced Acute Renal Injury: Contribution of the Nrf2 Redox-Sensitive Pathway" Antioxidants 11, no. 7: 1261.
https://doi.org/10.3390/antiox11071261
APA Style
Bussmann, A. J. C., Zaninelli, T. H., Saraiva-Santos, T., Fattori, V., Guazelli, C. F. S., Bertozzi, M. M., Andrade, K. C., Ferraz, C. R., Camilios-Neto, D., Casella, A. M. B., Casagrande, R., Borghi, S. M., & Verri, W. A., Jr.
(2022). The Flavonoid Hesperidin Methyl Chalcone Targets Cytokines and Oxidative Stress to Reduce Diclofenac-Induced Acute Renal Injury: Contribution of the Nrf2 Redox-Sensitive Pathway. Antioxidants, 11(7), 1261.
https://doi.org/10.3390/antiox11071261