Literature DB >> 3517112

Plasma fructose, uric acid, and inorganic phosphorus responses of hyperinsulinemic men fed fructose.

J Hallfrisch, K Ellwood, O E Michaelis, S Reiser, E S Prather.   

Abstract

We fed 12 men with abnormally high insulin responses to a sucrose load and 12 controls normal diets containing 0, 7.5, or 15% of the calories as pure fructose for 5 weeks each in a crossover design. Purified wheat starch replaced the fructose in the 0 and 7.5% diets. The two groups were matched for age, height, and weight. At the beginning of the study and at the end of each of the three 5-week periods, plasma responses to a sucrose load (2 gm/kg body weight) were measured. Initially there were no significant differences in the plasma fructose, uric acid, or inorganic phosphorus responses of the two groups. Plasma fructose responses to a sucrose load were significantly higher after the men consumed the 7.5 and 15% fructose diets than after the 0% diet. Uric acid responses tended to be greater in the hyperinsulinemic men than in controls and increased as the levels of fructose in the diet increased. The inorganic phosphorus levels after a sucrose load were higher in the hyperinsulinemic men than in controls when they consumed the 7.5 and 15% fructose diets. These results indicate that moderate levels of dietary fructose can affect plasma fructose, uric acid, and inorganic phosphorus levels, especially in hyperinsulinemic men.

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Year:  1986        PMID: 3517112     DOI: 10.1080/07315724.1986.10720113

Source DB:  PubMed          Journal:  J Am Coll Nutr        ISSN: 0731-5724            Impact factor:   3.169


  13 in total

1.  Opposing effects of fructokinase C and A isoforms on fructose-induced metabolic syndrome in mice.

Authors:  Takuji Ishimoto; Miguel A Lanaspa; Myphuong T Le; Gabriela E Garcia; Christine P Diggle; Paul S Maclean; Matthew R Jackman; Aruna Asipu; Carlos A Roncal-Jimenez; Tomoki Kosugi; Christopher J Rivard; Shoichi Maruyama; Bernardo Rodriguez-Iturbe; Laura G Sánchez-Lozada; David T Bonthron; Yuri Y Sautin; Richard J Johnson
Journal:  Proc Natl Acad Sci U S A       Date:  2012-02-27       Impact factor: 11.205

2.  Fructose tolerance test in obese people with and without type 2 diabetes.

Authors:  Ebaa Al-Ozairi; Christopher J Rivard; Laura Gabriela Sanchez Lozada; Miguel A Lanaspa; Petter Bjornstad; Danah Al Salem; Asma Alhubail; Amira Megahed; Masanari Kuwabara; Richard J Johnson; Reem A Asad
Journal:  J Diabetes       Date:  2019-09-18       Impact factor: 4.006

3.  Endocrine and metabolic effects of consuming fructose- and glucose-sweetened beverages with meals in obese men and women: influence of insulin resistance on plasma triglyceride responses.

Authors:  Karen L Teff; Joanne Grudziak; Raymond R Townsend; Tamara N Dunn; Ryan W Grant; Sean H Adams; Nancy L Keim; Bethany P Cummings; Kimber L Stanhope; Peter J Havel
Journal:  J Clin Endocrinol Metab       Date:  2009-02-10       Impact factor: 5.958

4.  The impact of fructose on renal function and blood pressure.

Authors:  Marek Kretowicz; Richard J Johnson; Takuji Ishimoto; Takahiko Nakagawa; Jacek Manitius
Journal:  Int J Nephrol       Date:  2011-07-17

Review 5.  The effects of fructose intake on serum uric acid vary among controlled dietary trials.

Authors:  D David Wang; John L Sievenpiper; Russell J de Souza; Laura Chiavaroli; Vanessa Ha; Adrian I Cozma; Arash Mirrahimi; Matthew E Yu; Amanda J Carleton; Marco Di Buono; Alexandra L Jenkins; Lawrence A Leiter; Thomas M S Wolever; Joseph Beyene; Cyril W C Kendall; David J A Jenkins
Journal:  J Nutr       Date:  2012-03-28       Impact factor: 4.798

6.  Dietary-induced cancer prevention: An expanding research arena of emerging diet related to healthcare system.

Authors:  Dilipkumar Pal; Subham Banerjee; Ashoke Kumar Ghosh
Journal:  J Adv Pharm Technol Res       Date:  2012-01

7.  Different Food Sources of Fructose-Containing Sugars and Fasting Blood Uric Acid Levels: A Systematic Review and Meta-Analysis of Controlled Feeding Trials.

Authors:  Sabrina Ayoub-Charette; Laura Chiavaroli; Qi Liu; Tauseef Ahmad Khan; Andreea Zurbau; Fei Au-Yeung; Annette Cheung; Amna Ahmed; Danielle Lee; Vivian L Choo; Sonia Blanco Mejia; Russell J de Souza; Thomas Ms Wolever; Lawrence A Leiter; Cyril Wc Kendall; David Ja Jenkins; John L Sievenpiper
Journal:  J Nutr       Date:  2021-08-07       Impact factor: 4.687

8.  The fructose tolerance test in patients with chronic kidney disease and metabolic syndrome in comparison to healthy controls.

Authors:  Rafał Donderski; Ilona Miśkowiec-Wiśniewska; Marek Kretowicz; Magdalena Grajewska; Jacek Manitius; Anna Kamińska; Roman Junik; Joanna Siódmiak; Anna Stefańska; Grażyna Odrowąż-Sypniewska; Agnieszka Pluta; Miguel Lanaspa; Richard J Johnson
Journal:  BMC Nephrol       Date:  2015-05-03       Impact factor: 2.388

9.  The Speed of Ingestion of a Sugary Beverage Has an Effect on the Acute Metabolic Response to Fructose.

Authors:  Mehmet Kanbay; Begum Guler; Lale A Ertuglu; Tuncay Dagel; Baris Afsar; Said Incir; Arzu Baygul; Adrian Covic; Ana Andres-Hernando; Laura Gabriela Sánchez-Lozada; Miguel A Lanaspa; Richard J Johnson
Journal:  Nutrients       Date:  2021-06-02       Impact factor: 5.717

10.  Uric acid stimulates fructokinase and accelerates fructose metabolism in the development of fatty liver.

Authors:  Miguel A Lanaspa; Laura G Sanchez-Lozada; Christina Cicerchi; Nanxing Li; Carlos A Roncal-Jimenez; Takuji Ishimoto; Myphuong Le; Gabriela E Garcia; Jeffrey B Thomas; Christopher J Rivard; Ana Andres-Hernando; Brandi Hunter; George Schreiner; Bernardo Rodriguez-Iturbe; Yuri Y Sautin; Richard J Johnson
Journal:  PLoS One       Date:  2012-10-24       Impact factor: 3.240

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