Pinheiro, F.; Lail, H.; Neves, J.S.; Negrão, R.; Wanders, D.
Sulfur Amino Acid Restriction Mitigates High-Fat Diet-Induced Molecular Alterations in Cardiac Remodeling Primarily via FGF21-Independent Mechanisms. Nutrients 2024, 16, 4347.
https://doi.org/10.3390/nu16244347
AMA Style
Pinheiro F, Lail H, Neves JS, Negrão R, Wanders D.
Sulfur Amino Acid Restriction Mitigates High-Fat Diet-Induced Molecular Alterations in Cardiac Remodeling Primarily via FGF21-Independent Mechanisms. Nutrients. 2024; 16(24):4347.
https://doi.org/10.3390/nu16244347
Chicago/Turabian Style
Pinheiro, Filipe, Hannah Lail, João Sérgio Neves, Rita Negrão, and Desiree Wanders.
2024. "Sulfur Amino Acid Restriction Mitigates High-Fat Diet-Induced Molecular Alterations in Cardiac Remodeling Primarily via FGF21-Independent Mechanisms" Nutrients 16, no. 24: 4347.
https://doi.org/10.3390/nu16244347
APA Style
Pinheiro, F., Lail, H., Neves, J. S., Negrão, R., & Wanders, D.
(2024). Sulfur Amino Acid Restriction Mitigates High-Fat Diet-Induced Molecular Alterations in Cardiac Remodeling Primarily via FGF21-Independent Mechanisms. Nutrients, 16(24), 4347.
https://doi.org/10.3390/nu16244347