Study2021Open access

Creatine homeostasis and protein energy wasting in hemodialysis patients

Post A, Schutten JC, Kremer D, van der Veen Y, Groothof D, Sotomayor CG, Koops CA, de Blaauw P, Kema IP, Westerhuis R, Wallimann T, Heiner-Fokkema MR, Bakker SJL, Franssen CFM

Journal of translational medicine · 12 citations

Review labels

Funding not disclosed

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

How it was studied

Design
Cross-sectional study (classified by our AI screen)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Funding not disclosed

Publication

Published
2021-03-20 · J Transl Med · vol. 19 · issue 1 · p. 115
Publisher
BioMed Central
Cited
70 citations · more than 99% of similar papers · 8.3× the field average
Impact
Top 10% most cited in its field
References
75 works
Access
Open access (journal) · CC-BY
Research areas
Dialysis and Renal Disease Management · Muscle metabolism and nutrition · Muscle and Compartmental Disorders
Keywords
Hypoalbuminemia, Creatine, Hemodialysis, Internal medicine, Creatinine, Endocrinology, Medicine, Arginine, Wasting, Creatine Monohydrate, Chemistry, Biochemistry, Pathology, Amino acid
MeSH
humans, creatine, creatinine, renal dialysis, homeostasis, aged, aged, 80 and over, middle aged, female, male

14 authors

From NL, CH

  • Adrian Post · correspondingUniversity Medical Center Groningen; University of Groningen
  • Joëlle C. SchuttenUniversity Medical Center Groningen; University of Groningen
  • Daan KremerUniversity Medical Center Groningen; University of Groningen
  • Yvonne van der VeenUniversity Medical Center Groningen; University of Groningen
  • Dion GroothofUniversity Medical Center Groningen; University of Groningen
  • Camilo G. SotomayorUniversity Medical Center Groningen; University of Groningen

Abstract

Muscle wasting, low protein intake, hypoalbuminemia, low body mass, and chronic fatigue are prevalent in hemodialysis patients. Impaired creatine status may be an often overlooked, potential contributor to these symptoms. However, little is known about creatine homeostasis in hemodialysis patients. We aimed to elucidate creatine homeostasis in hemodialysis patients by assessing intradialytic plasma changes as well as intra- and interdialytic losses of arginine, guanidinoacetate, creatine and creatinine. Additionally, we investigated associations of plasma creatine concentrations with low muscle mass, low protein intake, hypoalbuminemia, low body mass index, and chronic fatigue. Arginine, guanidinoacetate, creatine and creatinine were measured in plasma, dialysate, and urinary samples of 59 hemodialysis patients. Mean age was 65 ± 15 years and 63% were male. During hemodialysis, plasma concentrations of arginine (77 ± 22 to 60 ± 19 μmol/L), guanidinoacetate (1.8 ± 0.6 to 1.0 ± 0.3 μmol/L), creatine (26 [16-41] to 21 [15-30] μmol/L) and creatinine (689 ± 207 to 257 ± 92 μmol/L) decreased (all P < 0.001). During a hemodialysis session, patients lost 1939 ± 871 μmol arginine, 37 ± 20 μmol guanidinoacetate, 719 [399-1070] μmol creatine and 15.5 ± 8.4 mmol creatinine. In sex-adjusted models, lower plasma creatine was associated with a higher odds of low muscle mass (OR per halving: 2.00 [1.05-4.14]; P = 0.04), low protein intake (OR: 2.13 [1.17-4.27]; P = 0.02), hypoalbuminemia (OR: 3.13 [1.46-8.02]; P = 0.008) and severe fatigue (OR: 3.20 [1.52-8.05]; P = 0.006). After adjustment for potential confounders, these associations remained materially unchanged. Creatine is iatrogenically removed during hemodialysis and lower plasma creatine concentrations were associated with higher odds of low muscle mass, low protein intake, hypoalbuminemia, and severe fatigue, indicating a potential role for creatine supplementation.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

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