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Serum urate lowering with allopurinol and kidney function in type 1 diabetes

  • A. Doria
  • , A. T. Galecki
  • , C. Spino
  • , R. Pop-Busui
  • , D. Z. Cherney
  • , I. Lingvay
  • , A. Parsa
  • , P. Rossing
  • , R. J. Sigal
  • , M. Afkarian
  • , R. Aronson
  • , M. L. Caramori
  • , J. P. Crandall
  • , I. H. De Boer
  • , T. G. Elliott
  • , A. B. Goldfine
  • , J. S. Haw
  • , I. B. Hirsch
  • , A. B. Karger
  • , D. M. Maahs
  • J. B. McGill, M. E. Molitch, B. A. Perkins, S. Polsky, M. Pragnell, W. N. Robiner, S. E. Rosas, P. Senior, K. R. Tuttle, G. E. Umpierrez, A. Wallia, R. S. Weinstock, C. Wu, M. Mauer
  • Harvard University
  • University of Michigan, Ann Arbor
  • University of Toronto
  • University Health Network
  • University of Texas Southwestern Medical Center
  • National Institutes of Health
  • University of Copenhagen
  • University of Calgary
  • University of California at Davis
  • LMC Diabetes and Endocrinology
  • University of Minnesota Twin Cities
  • Albert Einstein College of Medicine
  • University of Washington
  • BC Diabetes
  • Emory University
  • Stanford University
  • Washington University St. Louis
  • Northwestern University
  • Barbara Davis Center for Childhood Diabetes
  • Juvenile Diabetes Research Foundation International
  • University of Alberta
  • Kidney Research Institute
  • Saint John's Health Center

Research output: Contribution to journalArticlepeer-review

326 Scopus citations

Abstract

BACKGROUND: Higher serum urate levels are associated with an increased risk of diabetic kidney disease. Lowering of the serum urate level with allopurinol may slow the decrease in the glomerular filtration rate (GFR) in persons with type 1 diabetes and early-to-moderate diabetic kidney disease. METHODS: In a double-blind trial, we randomly assigned participants with type 1 diabetes, a serum urate level of at least 4.5 mg per deciliter, an estimated GFR of 40.0 to 99.9 ml per minute per 1.73 m2 of body-surface area, and evidence of diabetic kidney disease to receive allopurinol or placebo. The primary outcome was the baseline-adjusted GFR, as measured with iohexol, after 3 years plus a 2-month washout period. Secondary outcomes included the decrease in the iohexol-based GFR per year and the urinary albumin excretion rate after washout. Safety was also assessed. RESULTS: A total of 267 patients were assigned to receive allopurinol and 263 to receive placebo. The mean age was 51.1 years, the mean duration of diabetes 34.6 years, and the mean glycated hemoglobin level 8.2%. The mean baseline iohexol-based GFR was 68.7 ml per minute per 1.73 m2 in the allopurinol group and 67.3 ml per minute per 1.73 m2 in the placebo group. During the intervention period, the mean serum urate level decreased from 6.1 to 3.9 mg per deciliter with allopurinol and remained at 6.1 mg per deciliter with placebo. After washout, the between-group difference in the mean iohexol-based GFR was 0.001 ml per minute per 1.73 m2 (95% confidence interval [CI], -1.9 to 1.9; P = 0.99). The mean decrease in the iohexol-based GFR was -3.0 ml per minute per 1.73 m2 per year with allopurinol and -2.5 ml per minute per 1.73 m2 per year with placebo (between-group difference, -0.6 ml per minute per 1.73 m2 per year; 95% CI, -1.5 to 0.4). The mean urinary albumin excretion rate after washout was 40% (95% CI, 0 to 80) higher with allopurinol than with placebo. The frequency of serious adverse events was similar in the two groups. CONCLUSIONS: We found no evidence of clinically meaningful benefits of serum urate reduction with allopurinol on kidney outcomes among patients with type 1 diabetes and early-to-moderate diabetic kidney disease.

Original languageEnglish
Pages (from-to)2493-2503
Number of pages11
JournalNew England Journal of Medicine
Volume382
Issue number26
DOIs
StatePublished - Jun 25 2020

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