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                                    ANALESRANFwww.analesranf.comDeisenhofer, J., Horton, J. D., & Kwon, H. J.(2010). Crystal structure of Spot 14, a modulatorof fatty acid synthesis. Proceedings of theNational Academy of Sciences of the UnitedStates of America, 107(44), 18820%u201318825.https://doi.org/10.1073/pnas.101273610727. B%u00e1rez-L%u00f3pez, S., Grijota-Mart%u00ednez, C., Liao, X. H.,Refetoff, S., & Guada%u00f1o-Ferraz, A. (2019).Intracerebroventricular administration of thethyroid hormone analog TRIAC increases its braincontent in the absence of MCT8. PloS one,14(12), e0226017.https://doi.org/10.1371/journal.pone.022601728. Friesema, E. C., Ganguly, S., Abdalla, A., ManningFox, J. E., Halestrap, A. P., & Visser, T. J. (2003).Identification of monocarboxylate transporter 8as a specific thyroid hormone transporter. TheJournal of biological chemistry, 278(41), 40128%u201340135. https://doi.org/10.1074/jbc.M30090920029. de Calvo, O. L., & de Santos, L. C. (2020). Expertosen fisiolog%u00eda: resumen de lo que debes saber delas hormonas tiroideas. Revista M%u00e9dicoCient%u00edfica, 33(2), 31-45.30. Brent G. A. (2012). Mechanisms of thyroid hormoneaction. The Journal of clinical investigation,122(9), 3035%u2013 3043.https://doi.org/10.1172/JCI6004731. Li, M., Reynolds, C. M., Segovia, S. A., Gray, C., &Vickers, M. H. (2015). DevelopmentalProgramming of Nonalcoholic Fatty LiverDisease: The Effect of Early Life Nutrition onSusceptibility and Disease Severity in Later Life.BioMed research international, 2015, 437107.https://doi.org/10.1155/2015/43710732. Rangel-Huerta, O. D., Pastor-Villaescusa, B.,Aguilera, C. M., & Gil, A. (2015). A SystematicReview of the Efficacy of Bioactive Compoundsin Cardiovascular Disease: Phenolic Compounds.Nutrients, 7(7), 5177%u20135216.https://doi.org/10.3390/nu707517733. Vickers, M. H., Krechowec, S. O., & Breier, B. H.(2007). Is later obesity programmed in utero?.Current drug targets, 8(8), 923%u2013934.https://doi.org/10.2174/13894500778138685734. Liao, X. P., Yu, Y., Marc, I., Dubois, L., Abdelouahab,N., Bouchard, L., Wu, Y. T., Ouyang, F., Huang,H. F., & Fraser, W. D. (2019). Prenataldeterminants of childhood obesity: a review ofrisk factors 1. Canadian journal of physiology andpharmacology, 97(3), 147%u2013154.https://doi.org/10.1139/cjpp-2018-040335. Wang, P., Wu, T., Fu, Q., Liao, Q., Li, Y., Huang, T.,Li, Y., Zhou, L., & Song, Z. (2022). Maternal HighFructose Intake Activates Myogenic Program inFetal Brown Fat and Predisposes Offspring tobeverages may play a role in the epidemic ofobesity. The American journal of clinicalnutrition, 79(4), 537%u2013543.https://doi.org/10.1093/ajcn/79.4.53717. Angosto, M. C. (2015). Lipog%u00e9nesis de %u201cnovo%u201d ytermog%u00e9nesis. Monograf%u00edas de la Real AcademiaNacional de Farmacia.18. Ameer, F., Scandiuzzi, L., Hasnain, S., Kalbacher, H.,& Zaidi, N. (2014). De novo lipogenesis in healthand disease. Metabolism: clinical andexperimental, 63(7), 895%u2013902.https://doi.org/10.1016/j.metabol.2014.04.00319. Mendoza, A., Tang, C., Choi, J., Acu%u00f1a, M., Logan,M., Martin, A. G., Al-Sowaimel, L., Desai, B. N.,Tenen, D. E.,20. Jacobs, C., Lyubetskaya, A., Fu, Y., Liu, H., Tsai, L.,Cohen, D. E., Forrest, D., Wilson, A. A., &Hollenberg, A. N. (2021). Thyroid hormonesignaling promotes hepatic lipogenesis throughthe transcription factor ChREBP. Sciencesignaling, 14(709), eabh3839.https://doi.org/10.1126/scisignal.abh383921. Johnson, R. J., Nakagawa, T., Sanchez-Lozada, L.G., Shafiu, M., Sundaram, S., Le, M., Ishimoto,T., Sautin, Y. Y., & Lanaspa, M. A. (2013). Sugar,uric acid, and the etiology of diabetes andobesity. Diabetes, 62(10), 3307%u20133315.https://doi.org/10.2337/db12-181422. Douard, V., & Ferraris, R. P. (2013). The role offructose transporters in diseases linked toexcessive fructose intake. The Journal ofphysiology, 591(2), 401%u2013414.https://doi.org/10.1113/jphysiol.2011.21573123. Silva, J. E., & Bianco, S. D. (2008). Thyroidadrenergic interactions: physiological andclinical implications. Thyroid official journal ofthe American Thyroid Association, 18(2), 157%u2013165.https://doi.org/10.1089/thy.2007.025224. Neto, J. G. O., Rom%u00e3o, J. S., Pazos-Moura, C. C., &Oliveira, K. J. (2023). Fructose consumptioninduces molecular adaptations involving thyroidfunction and thyroid-related genes in brownadipose tissue in rats. Brazilian journal ofmedical and biological research = Revistabrasileira de pesquisas m%u00e9dicas e biol%u00f3gicas, 55,e12240. https://doi.org/10.1590/1414-431X2022e1224025. Matsubara, K., Sanoh, S., Ohta, S., Kitamura, S.,Sugihara, K., & Fujimoto, N. (2012). An improvedthyroid hormone reporter assay to determine thethyroid hormone-like activity of amiodarone,bithionol, closantel and rafoxanide. Toxicologyletters, 208(1), 30%u201335.https://doi.org/10.1016/j.toxlet.2011.10.00426. Colbert, C. L., Kim, C. W., Moon, Y. A., Henry, L.,Palnitkar, M., McKean, W. B., Fitzgerald, K.,Efectosnutrigen%u00f3micosdelafructosasolaoasociadaacolesterolosalenlafunci%u00f3ndelashormonastiroideas.InfluenciadelaingestamaternaCarlaMarcuccini,ElenaFausteetal. 193 An. R.Acad. Farm.Vol. 90. n%u00ba 2 (2024) %u00b7 pp. 175-196
                                
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