Correia, M.J.; Pimpão, A.B.; Lopes-Coelho, F.; Sequeira, C.O.; Coelho, N.R.; Gonçalves-Dias, C.; Barouki, R.; Coumoul, X.; Serpa, J.; Morello, J.;
et al. Aryl Hydrocarbon Receptor and Cysteine Redox Dynamics Underlie (Mal)adaptive Mechanisms to Chronic Intermittent Hypoxia in Kidney Cortex. Antioxidants 2021, 10, 1484.
https://doi.org/10.3390/antiox10091484
AMA Style
Correia MJ, Pimpão AB, Lopes-Coelho F, Sequeira CO, Coelho NR, Gonçalves-Dias C, Barouki R, Coumoul X, Serpa J, Morello J,
et al. Aryl Hydrocarbon Receptor and Cysteine Redox Dynamics Underlie (Mal)adaptive Mechanisms to Chronic Intermittent Hypoxia in Kidney Cortex. Antioxidants. 2021; 10(9):1484.
https://doi.org/10.3390/antiox10091484
Chicago/Turabian Style
Correia, Maria João, António B. Pimpão, Filipa Lopes-Coelho, Catarina O. Sequeira, Nuno R. Coelho, Clara Gonçalves-Dias, Robert Barouki, Xavier Coumoul, Jacinta Serpa, Judit Morello,
and et al. 2021. "Aryl Hydrocarbon Receptor and Cysteine Redox Dynamics Underlie (Mal)adaptive Mechanisms to Chronic Intermittent Hypoxia in Kidney Cortex" Antioxidants 10, no. 9: 1484.
https://doi.org/10.3390/antiox10091484
APA Style
Correia, M. J., Pimpão, A. B., Lopes-Coelho, F., Sequeira, C. O., Coelho, N. R., Gonçalves-Dias, C., Barouki, R., Coumoul, X., Serpa, J., Morello, J., Monteiro, E. C., & Pereira, S. A.
(2021). Aryl Hydrocarbon Receptor and Cysteine Redox Dynamics Underlie (Mal)adaptive Mechanisms to Chronic Intermittent Hypoxia in Kidney Cortex. Antioxidants, 10(9), 1484.
https://doi.org/10.3390/antiox10091484