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Sabatier, M., Grandvuillemin, A., Kastenmayer, P., Aeschliman, J. M., Bouisset, F., Arnaud, M. J., Dumoulin, G., & A. Berthelot (2011). Influence of the consumption pattern of magnesium from magnesium-rich mineral water on magnesium bioavailability. British Journal of Nutrition, 106(3), 331-334. Santos, A., Martins, M. J., Guimaraes, J. T., Severo, M., & Azevedo, I. (2010). Sodium-rich carbonated natural mineral water ingestion and blood pressure. Revista Portuguesa de Cardiologia, 29(2), 159-172. Schoppen, S., Perez-Granados, A. M., Carbajal, A., Oubina, P., Sanchez-Muniz, F. J., Gomez- Gerique, J. A., & Vaquero, M. P. (2004). A sodium-rich carbonated mineral water reduces cardiovascular risk in postmenopausal women. Journal of Nutrition, 134(5), 1058-1063. Schoppen, S., Perez-Granados, A. M., Carbajal, A., Sarria, B., Sanchez-Muniz, F. J., Gomez- Gerique, J. A., & Pilar Vaquero, M. (2005). Sodium bicarbonated mineral water decreases postprandial lipaemia in postmenopausal women compared to a low mineral water. British Journal of Nutrition, 94(4), 582-587. Schoppen, S., Sanchez-Muniz, F. J., Perez-Granados, M., Gomez-Gerique, J. A., Sarria, B., Navas- Carretero, S., & Pilar Vaquero, M. (2007). Does bicarbonated mineral water rich in sodium change insulin sensitivity of postmenopausal women? Nutricion Hospitalaria, 22(5), 538- 544. Schorr, U., Distler, A., & Sharma, A. M. (1996). Effect of sodium chloride- and sodium bicarbonate-rich mineral water on blood pressure and metabolic parameters in elderly normotensive individuals: a randomized double-blind crossover trial. Journal of Hypertension, 14(1), 131-135. Simunic, S., & Pintac, L. (1990). [Use of the Varazdinske Toplice mineral water in the treatment of diabetes mellitus]. Reumatizm, 37(1-6), 71-74. Sun, K., Su, T., Li, M., Xu, B., Xu, M., Lu, J., Liu, J., Bi, Y. & Ning, G. (2014). Serum potassium level is associated with metabolic syndrome: A population-based study. Clin Nutr 33(3): 521-527. Takaya, J., Higashino, H., & Kobayashi, Y. (2004). Intracellular magnesium and insulin resistance. Magnesium Research, 17(2), 126-136. Takaya, J., Iharada, A., Okihana, H., & Kaneko, K. (2011a). Magnesium deficiency in pregnant rats alters methylation of specific cytosines in the hepatic hydroxysteroid dehydrogenase-2 promoter of the offspring. Epigenetics, 6(5), 573-578. Takaya, J., Iharada, A., Okihana, H., & Kaneko, K. (2011b). Upregulation of hepatic 11beta- hydroxysteroid dehydrogenase-1 expression in calcium-deficient rats. Annals of Nutrition and Metabolism, 59(2-4), 73-78. Takaya, J., Iharada, A., Okihana, H., & Kaneko, K. (2012). Down-regulation of hepatic phosphoenolpyruvate carboxykinase expression in magnesium-deficient rats. Magnesium Research, 25(3), 131-139. Teegarden, D. (2006). Dietary Calcium and the Metabolic Syndrome. Calcium in Human Health. Nutrition and Health. C. Weaver and R. P. Heaney, Humana Press: 401-409. Touyz, R. M. (2003). Role of magnesium in the pathogenesis of hypertension. Molecular Aspects of Medicine, 24(1-3), 107-136. Tremblay, A., & Gilbert, J. A. (2009). Milk products, insulin resistance syndrome and type 2 diabetes. Journal of the American College of Nutrition, 28(S1), 91s-102s. Tsatsoulis, A., Mantzaris, M. D., Bellou, S., & Andrikoula, M. (2013). Insulin resistance: an
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Biomedical Chemistry: Current Trends and Developments
Title
Biomedical Chemistry: Current Trends and Developments
Author
Nuno Vale
Publisher
De Gruyter Open Ltd
Date
2016
Language
English
License
CC BY-NC-ND 4.0
ISBN
978-3-11-046887-8
Size
21.0 x 29.7 cm
Pages
427
Keywords
Physical Sciences, Engineering and Technology, Chemistry, Organic Chemistry, Green Chemistry
Categories
Naturwissenschaften Chemie
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Biomedical Chemistry: Current Trends and Developments