Elebring, E.; Wallenius, V.; Casselbrant, A.; Docherty, N.G.; le Roux, C.W.; Marschall, H.-U.; Fändriks, L.
A Fatty Diet Induces a Jejunal Ketogenesis Which Inhibits Local SGLT1-Based Glucose Transport via an Acetylation Mechanism—Results from a Randomized Cross-Over Study between Iso-Caloric High-Fat versus High-Carbohydrate Diets in Healthy Volunteers. Nutrients 2022, 14, 1961.
https://doi.org/10.3390/nu14091961
AMA Style
Elebring E, Wallenius V, Casselbrant A, Docherty NG, le Roux CW, Marschall H-U, Fändriks L.
A Fatty Diet Induces a Jejunal Ketogenesis Which Inhibits Local SGLT1-Based Glucose Transport via an Acetylation Mechanism—Results from a Randomized Cross-Over Study between Iso-Caloric High-Fat versus High-Carbohydrate Diets in Healthy Volunteers. Nutrients. 2022; 14(9):1961.
https://doi.org/10.3390/nu14091961
Chicago/Turabian Style
Elebring, Erik, Ville Wallenius, Anna Casselbrant, Neil G. Docherty, Carel W. le Roux, Hanns-Ulrich Marschall, and Lars Fändriks.
2022. "A Fatty Diet Induces a Jejunal Ketogenesis Which Inhibits Local SGLT1-Based Glucose Transport via an Acetylation Mechanism—Results from a Randomized Cross-Over Study between Iso-Caloric High-Fat versus High-Carbohydrate Diets in Healthy Volunteers" Nutrients 14, no. 9: 1961.
https://doi.org/10.3390/nu14091961
APA Style
Elebring, E., Wallenius, V., Casselbrant, A., Docherty, N. G., le Roux, C. W., Marschall, H. -U., & Fändriks, L.
(2022). A Fatty Diet Induces a Jejunal Ketogenesis Which Inhibits Local SGLT1-Based Glucose Transport via an Acetylation Mechanism—Results from a Randomized Cross-Over Study between Iso-Caloric High-Fat versus High-Carbohydrate Diets in Healthy Volunteers. Nutrients, 14(9), 1961.
https://doi.org/10.3390/nu14091961