Glucose

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Ardanaz, C. G., de la Cruz, A., Minhas, P. S., Hernández-Martín, N., Pozo, M. Á., Valdecantos, M. P., Valverde, Á. M., Villa-Valverde, P., Elizalde-Horcada, M., Puerta, E., Ramírez, M. J., Ortega, J. E., Urbiola, A., Ederra, C., Ariz, M., Ortiz-de-Solórzano, C., Fernández-Irigoyen, J., Santamaría, E., Karsenty, G., … Solas, M. (2024). Astrocytic GLUT1 reduction paradoxically improves central and peripheral glucose homeostasis. Science Advances, 10(42). https://doi.org/10.1126/sciadv.adp1115
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Zhou, Q., Nguyen, T. T. T., Mun, J.-Y., Siegelin, M. D., & Greene, L. A. (2024). DPEP Inhibits Cancer Cell Glucose Uptake, Glycolysis and Survival by Upregulating Tumor Suppressor TXNIP. Cells, 13(12), 1025. https://doi.org/10.3390/cells13121025
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Paredes, A., Justo-Méndez, R., Jiménez-Blasco, D., Núñez, V., Calero, I., Villalba-Orero, M., Alegre-Martí, A., Fischer, T., Gradillas, A., Sant’Anna, V. A. R., Were, F., Huang, Z., Hernansanz-Agustín, P., Contreras, C., Martínez, F., Camafeita, E., Vázquez, J., Ruiz-Cabello, J., Area-Gómez, E., … Ricote, M. (2023). γ-Linolenic acid in maternal milk drives cardiac metabolic maturation. Nature, 618(7964), 365–373. https://doi.org/10.1038/s41586-023-06068-7
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Menale, C., Trinchese, G., Aiello, I., Scalia, G., Dentice, M., Mollica, M. P., Yoon, N. A., & Diano, S. (2023). Nutrient-Dependent Mitochondrial Fission Enhances Osteoblast Function. Nutrients, 15(9), 2222. https://doi.org/10.3390/nu15092222
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