Mufti, A.; Jalouli, M.; Nahdi, S.; Tlili, N.; Alqahtani, W.; Mansour, L.; Alwasel, S.; Harrath, A.H.
Maternal Exposure to Acephate Caused Nephrotoxicity in Adult Offspring Rats Mediated by Excessive Autophagy Activation, Oxidative Stress Induction, and Altered Epithelial Sodium Channel and Na+/K+-ATPase Gene Expression. Biology 2023, 12, 162.
https://doi.org/10.3390/biology12020162
AMA Style
Mufti A, Jalouli M, Nahdi S, Tlili N, Alqahtani W, Mansour L, Alwasel S, Harrath AH.
Maternal Exposure to Acephate Caused Nephrotoxicity in Adult Offspring Rats Mediated by Excessive Autophagy Activation, Oxidative Stress Induction, and Altered Epithelial Sodium Channel and Na+/K+-ATPase Gene Expression. Biology. 2023; 12(2):162.
https://doi.org/10.3390/biology12020162
Chicago/Turabian Style
Mufti, Afoua, Maroua Jalouli, Saber Nahdi, Nizar Tlili, Wadha Alqahtani, Lamjed Mansour, Saleh Alwasel, and Abdel Halim Harrath.
2023. "Maternal Exposure to Acephate Caused Nephrotoxicity in Adult Offspring Rats Mediated by Excessive Autophagy Activation, Oxidative Stress Induction, and Altered Epithelial Sodium Channel and Na+/K+-ATPase Gene Expression" Biology 12, no. 2: 162.
https://doi.org/10.3390/biology12020162
APA Style
Mufti, A., Jalouli, M., Nahdi, S., Tlili, N., Alqahtani, W., Mansour, L., Alwasel, S., & Harrath, A. H.
(2023). Maternal Exposure to Acephate Caused Nephrotoxicity in Adult Offspring Rats Mediated by Excessive Autophagy Activation, Oxidative Stress Induction, and Altered Epithelial Sodium Channel and Na+/K+-ATPase Gene Expression. Biology, 12(2), 162.
https://doi.org/10.3390/biology12020162