Diet, High-Fat

Displaying 1 - 5 of 5CSV
Gaspar, R. C., Macêdo, A. P. A., Nakandakari, S. C. B. R., Muñoz, V. R., Abud, G. F., Vieira, R. F. L., de Sousa Neto, I. V., Pavan, I. C. B., da Silva, L. G. S., Simabuco, F. M., da Silva, A. S. R., Junior, W. S., Marchini, J. S., Nonino, C. B., Cintra, D. E., Ropelle, E. R., Pajvani, U. B., de Freitas, E. C., & Pauli, J. R. (2025). Notch1 Signalling Is Downregulated by Aerobic Exercise, Leading to Improvement of Hepatic Metabolism in Obese Mice. Liver International, 45(4). Portico. https://doi.org/10.1111/liv.70068
Publication Date
Rubinelli, L., Manzo, O. L., Sungho, J., Del Gaudio, I., Bareja, R., Marino, A., Palikhe, S., Di Mauro, V., Bucci, M., Falcone, D. J., Elemento, O., Ersoy, B., Diano, S., Sasset, L., & Di Lorenzo, A. (2025). Suppression of endothelial ceramide de novo biosynthesis by Nogo-B contributes to cardiometabolic diseases. Nature Communications, 16(1). https://doi.org/10.1038/s41467-025-56869-9
Publication Date
Calderon, R. M., Golczak, M., Paik, J., & Blaner, W. S. (2023). Dietary Vitamin A Affects the Function of Incretin-Producing Enteroendocrine Cells in Male Mice Fed a High-Fat Diet. The Journal of Nutrition, 153(10), 2901–2914. https://doi.org/10.1016/j.tjnut.2023.08.030
Publication Date
Neri, D., Ramos-Lobo, A. M., Lee, S., Lafond, A., & Zeltser, L. M. (2023). Rearing mice at 22°C programs increased capacity to respond to chronic exposure to cold but not high fat diet. Molecular Metabolism, 73, 101740. https://doi.org/10.1016/j.molmet.2023.101740
Publication Date
Kim, H. J., Zhao, J., Walewski, J. L., & Sparrow, J. R. (2023). A high fat diet fosters elevated bisretinoids. Journal of Biological Chemistry, 299(6), 104784. https://doi.org/10.1016/j.jbc.2023.104784
Publication Date