Longitudinal association of dietary acid load with kidney function decline in an older adult population with metabolic syndrome
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D. Corella | J. Vidal | D. Romaguera | J. Vioque | M. Fitó | F. Tinahones | L. Daimiel | A. Goday | A. Bueno-Cavanillas | J. Tur | L. Serra-Majem | J. López-Miranda | E. Ros | R. Estruch | R. Casas | O. Castañer | A. Garcia-Rios | J. Wärnberg | J. Salas-Salvadó | E. Gómez-Gracia | J. Lapetra | J. Gaforio | C. Ortega-Azorín | X. Pintó | A. García-Arellano | N. Becerra-Tomás | R. Barragán | N. Babio | A. Díaz-López | Á. Alonso-Gómez | H. Schröder | Patricia J. Peña-Orihuela | Z. Vázquez-Ruiz | C. Sayón-Orea | M. Damas-Fuentes | D. Martínez-Urbistondo | Cristina Valle-Hita | J. A. Martínez | P. Matía-Martín | M. Morey | L. Tojal-Sierra | V. Martín-Sánchez | E. Goñi | Alberto Asencio-Aznar | I. Megías | Angela Amengual-Galbarte | E. M. Garrido-Garrido | Cristina Gisbert-Sellés | J. A. Martínez | J. A. Martínez | J. Salas‐Salvadó | P. Peña-Orihuela | E. Garrido-Garrido
[1] J. Martínez,et al. Validity of the energy-restricted Mediterranean Diet Adherence Screener. , 2021, Clinical nutrition.
[2] J. Martínez,et al. Energy Expenditure Improved Risk Factors Associated with Renal Function Loss in NAFLD and MetS Patients , 2021, Nutrients.
[3] L. G. Vu,et al. Global, regional, and national burden of chronic kidney disease, 1990–2017: a systematic analysis for the Global Burden of Disease Study 2017 , 2020, The Lancet.
[4] J. Geleijnse,et al. Diet and Kidney Function: a Literature Review , 2020, Current Hypertension Reports.
[5] K. Campbell,et al. Healthy Dietary Patterns and Incidence of CKD: A Meta-Analysis of Cohort Studies. , 2019, Clinical journal of the American Society of Nephrology : CJASN.
[6] S. Tsugane,et al. Association of estimated dietary acid load with albuminuria in Japanese adults: a cross-sectional study , 2019, BMC Nephrology.
[7] E. Daneshzad,et al. Dietary acid load, kidney function and risk of Chronic Kidney Disease: A Systematic Review and Meta-analysis of Observational Studies. , 2019, International journal for vitamin and nutrition research. Internationale Zeitschrift fur Vitamin- und Ernahrungsforschung. Journal international de vitaminologie et de nutrition.
[8] J. Martínez,et al. Cohort Profile: Design and methods of the PREDIMED-Plus randomized trial. , 2018, International journal of epidemiology.
[9] N. Powe,et al. Dietary Potential Renal Acid Load and Risk of Albuminuria and Reduced Kidney Function in the Jackson Heart Study. , 2018, Journal of renal nutrition : the official journal of the Council on Renal Nutrition of the National Kidney Foundation.
[10] D. Tripathy,et al. KEYWORDS Chronic Kidney Disease (CKD), Haemodialysis, Glomerular Filtration Rate (GFR), End Stage Kidney Disease (ESKD), Kidney Disease Improving Global Outcomes (KDIGO) CKD Work Group. , 2018 .
[11] J. Gagné. Literature Review , 2018, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[12] Yoosoo Chang,et al. Dietary acid load and chronic kidney disease in elderly adults: Protein and potassium intake , 2017, PloS one.
[13] L. Hamm,et al. Regulation of Acid-Base Balance in Chronic Kidney Disease. , 2017, Advances in chronic kidney disease.
[14] J. Hughes,et al. Renal Aging: Causes and Consequences. , 2017, Journal of the American Society of Nephrology : JASN.
[15] K. Kalantar-Zadeh,et al. Dietary protein intake and chronic kidney disease , 2017, Current opinion in clinical nutrition and metabolic care.
[16] Jian-Min Yuan,et al. Red Meat Intake and Risk of ESRD. , 2017, Journal of the American Society of Nephrology : JASN.
[17] M. Wolf,et al. Higher net acid excretion is associated with a lower risk of kidney disease progression in patients with diabetes. , 2017, Kidney International.
[18] H. Yoon,et al. The Association between Renal Hyperfiltration and the Sources of Habitual Protein Intake and Dietary Acid Load in a General Population with Preserved Renal Function: The KoGES Study , 2016, PloS one.
[19] F. Azizi,et al. Dietary Acid-Base Load and Risk of Chronic Kidney Disease in Adults: Tehran Lipid and Glucose Study. , 2016, Iranian journal of kidney diseases.
[20] F. Azizi,et al. Tehran Lipid and Glucose Study , 2016 .
[21] J. Coresh,et al. Dietary Acid Load and Incident Chronic Kidney Disease: Results from the ARIC Study , 2015, American Journal of Nephrology.
[22] Mahboob Rahman,et al. Chronic Kidney Disease , 2015, Annals of Internal Medicine.
[23] A. Cheung,et al. GFR decline as an end point for clinical trials in CKD: a scientific workshop sponsored by the National Kidney Foundation and the US Food and Drug Administration. , 2014, American journal of kidney diseases : the official journal of the National Kidney Foundation.
[24] L. Chiavaroli,et al. Dietary fiber effects in chronic kidney disease: a systematic review and meta-analysis of controlled feeding trials , 2014, European Journal of Clinical Nutrition.
[25] N. Powe,et al. Dietary acid load and chronic kidney disease among adults in the United States , 2014, BMC Nephrology.
[26] T. Shiigai,et al. Dietary Acid Intake and Kidney Disease Progression in the Elderly , 2014, American Journal of Nephrology.
[27] G. Remuzzi,et al. Pathophysiology of proteinuria and its value as an outcome measure in chronic kidney disease , 2013, British journal of clinical pharmacology.
[28] C. Anderson,et al. Dietary acid load: a novel nutritional target in chronic kidney disease? , 2013, Advances in chronic kidney disease.
[29] D. Shoham,et al. Dietary sugar and artificial sweetener intake and chronic kidney disease: a review. , 2013, Advances in chronic kidney disease.
[30] Brenda R. Hemmelgarn,et al. Notice , 2012, Kidney International Supplements.
[31] M. Woodward,et al. Net endogenous acid production is associated with a faster decline in GFR in African Americans , 2012, Kidney international.
[32] H. Chen,et al. Activation of Intrarenal Renin-Angiotensin System during Metabolic Acidosis , 2011, American Journal of Nephrology.
[33] S. Sheather,et al. Acid retention accompanies reduced GFR in humans and increases plasma levels of endothelin and aldosterone. , 2011, American journal of physiology. Renal physiology.
[34] S. Sheather,et al. Amelioration of metabolic acidosis in patients with low GFR reduced kidney endothelin production and kidney injury, and better preserved GFR. , 2010, Kidney international.
[35] Dolores Corella,et al. Relative validity of a semi-quantitative food-frequency questionnaire in an elderly Mediterranean population of Spain , 2010, British Journal of Nutrition.
[36] S. Grundy,et al. Harmonizing the metabolic syndrome: a joint interim statement of the International Diabetes Federation Task Force on Epidemiology and Prevention; National Heart, Lung, and Blood Institute; American Heart Association; World Heart Federation; International Atherosclerosis Society; and International As , 2009, Circulation.
[37] C. Schmid,et al. A new equation to estimate glomerular filtration rate. , 2009, Annals of internal medicine.
[38] José Mataix Verdú,et al. TABLA DE COMPOSICIÓN DE ALIMENTOS , 2009 .
[39] S. Sasaki,et al. Association between dietary acid–base load and cardiometabolic risk factors in young Japanese women , 2008, British Journal of Nutrition.
[40] Pedagógia,et al. Cross Sectional Study , 2019 .
[41] N. Perico,et al. The role of renin-angiotensin-aldosterone system in the progression of chronic kidney disease. , 2005, Kidney international. Supplement.
[42] J. Terdiman,et al. Effect of 5-Aminosalicylate Use on Colorectal Cancer and Dysplasia Risk: A Systematic Review and Metaanalysis of Observational Studies , 2005, The American Journal of Gastroenterology.
[43] G. Eknoyan,et al. Definition and classification of chronic kidney disease: a position statement from Kidney Disease: Improving Global Outcomes (KDIGO). , 2005, Kidney international.
[44] J. Simoni,et al. Increased endothelin activity mediates augmented distal nephron acidification induced by dietary protein. , 2004, Transactions of the American Clinical and Climatological Association.
[45] T. Remer. ACID‐BASE IN RENAL FAILURE: Influence of Diet on Acid‐Base Balance , 2001, Seminars in dialysis.
[46] R. Morris,et al. Estimation of net endogenous noncarbonic acid production in humans from diet potassium and protein contents. , 1998, The American journal of clinical nutrition.
[47] G. Taylor,et al. Oxygen free radicals and contrast nephropathy. , 1998, American journal of kidney diseases : the official journal of the National Kidney Foundation.
[48] W C Willett,et al. Adjustment for total energy intake in epidemiologic studies. , 1997, The American journal of clinical nutrition.
[49] T. Remer,et al. Potential renal acid load of foods and its influence on urine pH. , 1995, Journal of the American Dietetic Association.
[50] T. Hostetter,et al. Increased ammoniagenesis as a determinant of progressive renal injury. , 1991, American journal of kidney diseases : the official journal of the National Kidney Foundation.
[51] T. Hostetter,et al. Pathophysiology of chronic tubulo-interstitial disease in rats. Interactions of dietary acid load, ammonia, and complement component C3. , 1985, The Journal of clinical investigation.
[52] Robert C. Wolpert,et al. A Review of the , 1985 .
[53] F. Welch,et al. Causes and Consequences , 2017, Nature.