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Blood Purification|January 10, 2008
Pathophysiology of salt-sensitive hypertension: a new scope of an old problemMartha Franco, Laura G Sanchez-Lozada, Rocio Bautista, et al.Kidney International Reports|February 23, 2023
Uric Acid and Chronic Kidney Disease: Still More to DoRichard J Johnson, Laura G Sanchez Lozada, Miguel A Lanaspa, et al.Current Nutrition Reports|January 28, 2023
Responses to Hypoxia: How Fructose Metabolism and Hypoxia-Inducible Factor-1a Pathways Converge in Health and DiseaseMehmet Kanbay, Alara Altıntas, Furkan Yavuz, et al.Journal of the American Society of Nephrology : JASN|April 8, 2020
Fructose Production and Metabolism in the KidneyTakahiko Nakagawa, Richard J Johnson, Ana Andres-Hernando, et al.Hypertension Research : Official Journal of the Japanese Society of Hypertension|May 15, 2024
A study on the early metabolic effects of salt and fructose consumption: the protective role of waterNuri Baris Hasbal, Cicek Nur Bakir, Said Incir, et al.Frontiers in Aging Neuroscience|October 7, 2020
Cerebral Fructose Metabolism as a Potential Mechanism Driving Alzheimer's DiseaseRichard J Johnson, Fernando Gomez-Pinilla, Maria Nagel, et al.American Journal of Nephrology|October 10, 2002
Hyperuricemia causes glomerular hypertrophy in the ratTakahiko Nakagawa, Marilda Mazzali, Duk-Hee Kang, et al.Frontiers in Immunology|July 5, 2021
Endogenous Fructose Metabolism Could Explain the Warburg Effect and the Protection of SGLT2 Inhibitors in Chronic Kidney DiseaseTakahiko Nakagawa, Laura G Sanchez-Lozada, Ana Andres-Hernando, et al.Cancer & Metabolism|July 17, 2020
Fructose contributes to the Warburg effect for cancer growthTakahiko Nakagawa, Miguel A Lanaspa, Inigo San Millan, et al.Nature Reviews. Nephrology|May 8, 2014
Hyperosmolarity drives hypertension and CKD--water and salt revisitedRichard J Johnson, Bernardo Rodriguez-Iturbe, Carlos Roncal-Jimenez, et al.Pageof 3