[12] Timmers, S., Konings, E., Bilet, L., Houtkooper, R. H., van de Weijer, T., Goossens, G. H., ... & Schrauwen, P. (2011). Calorie restriction-like effects of 30 days of resveratrol supplementation in obese humans. Cell Metabolism, 14(5), 612-622.
[13] Gomes, A. P., Price, N. L., Ling, A. J., Moslehi, J. J., Montgomery, M. K., Rajman, L., ... & Sinclair, D. A. (2013). Declining NAD+ induces a pseudohypoxic state disrupting nuclear-mitochondrial communication during aging. Cell, 155(7), 1624-1638.
[14] Das, A., Huang, G. X., Bonkowski, M. S., Longchamp, A., Li, C., Schultz, M. B., ... & Sinclair, D. A. (2018). Impairment of an endothelial NAD+-SIRT1 gene regulatory network cascades angiogenic signals. Cell, 173(1), 74-89.
[15] de Picciotto, N. E., Gano, L. B., Lawrence, M. M., Martens, C. R., Sindler, A. L., Shipman, W. M., ... & Seals, D. R. (2016). Nicotinamide mononucleotide supplementation reverses vascular dysfunction and oxidative stress with aging in mice. Aging Cell, 15(3), 522-530.
[16] Yoshino, M., Yoshino, J., Kayser, B. D., Patti, G. J., Franczyk, M. P., Mills, K. F., ... & Klein, S. (2021). Nicotinamide mononucleotide increases muscle insulin sensitivity in prediabetic women. Science, 372(6547), 1224-1229.
[17] Tarantini, S., Valcarcel-Ares, M. N., Toth, P., Yabluchanskiy, A., Tucsek, Z., Kiss, T., ... & Ungvari, Z. (2019). Nicotinamide mononucleotide (NMN) supplementation rescues cerebromicrovascular endothelial function and neurovascular coupling responses and improves cognitive function in aged mice. The Redox Biology, 24, 101192.
Comentarios