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Risk Factors for Muscle Loss in Hemodialysis Patients with High Comorbidity
Wesley J Visser1, Anneke M E de Mik-van Egmond1, Reinier Timman2,3
1Department of Internal Medicine, Division of Dietetics, Erasmus MC, University Medical Center, 3015 GD Rotterdam, The Netherlands.
Insights
Muscle loss is common in hemodialysis patients with high comorbidity, accelerated by male sex and inflammation. Stable body weight can mask this decline, highlighting the need for body composition assessment.
Area of Science:
- Nephrology
- Gerontology
- Human Physiology
Background:
- Expanding kidney transplantation programs concentrate complex patients on hemodialysis.
- These patients often have a high comorbidity burden, increasing susceptibility to muscle mass decline.
Purpose of the Study:
- To identify risk factors for muscle loss in hemodialysis patients with significant comorbidities.
- To analyze the impact of sex, inflammation, and baseline body composition on muscle mass changes.
Main Methods:
- Longitudinal study of 54 chronic hemodialysis patients over 20 weeks.
- Regular measurements of lean tissue mass, intracellular water, body cell mass, and handgrip strength.
- Statistical analysis using mixed models to determine covariate effects on lean tissue mass.
Main Results:
- Universal and significant loss of lean tissue mass, intracellular water, and body cell mass observed.
- Handgrip strength decreased, while adipose tissue mass increased, masking body weight changes.
- Independent risk factors for lean tissue mass loss included male sex, elevated C-reactive protein, and low baseline lean tissue index.
Conclusions:
- Hemodialysis patients with high comorbidity experience substantial muscle loss, exacerbated by male sex and inflammation.
- Body weight changes may not reflect muscle wasting due to concurrent fat accumulation.
- Routine assessment of body composition is crucial, and interventions targeting nutrition and exercise should be explored.
Abstract:
With expanding kidney transplantation programs, remaining hemodialysis patients are more likely to have a high comorbidity burden and may therefore be more prone to lose muscle mass. Our aim was to analyze risk factors for muscle loss in hemodialysis patients with high comorbidity. Fifty-four chronic hemodialysis patients (Charlson Comorbidity Index 9.0 ± 3.4) were followed for 20 weeks using 4-weekly measurements of lean tissue mass, intracellular water, and body cell mass (proxies for muscle mass), handgrip strength (HGS), and biochemical parameters. Mixed models were used to analyze covariate effects on LTM. LTM (-6.4 kg, interquartile range [IQR] -8.1 to -4.8), HGS (-1.9 kg, IQR -3.1 to -0.7), intracellular water (-2.11 L, IQR -2.9 to -1.4) and body cell mass (-4.30 kg, IQR -5.9 to -2.9) decreased in all patients. Conversely, adipose tissue mass increased (4.5 kg, IQR 2.7 to 6.2), resulting in no significant change in body weight (-0.5 kg, IQR -1.0 to 0.1). Independent risk factors for LTM loss over time were male sex (-0.26 kg/week, 95% CI -0.33 to -0.19), C-reactive protein above median (-0.1 kg/week, 95% CI -0.2 to -0.001), and baseline lean tissue index ³10th percentile (-1.6 kg/week, 95% CI -2.1 to -1.0). Age, dialysis vintage, serum albumin, comorbidity index, and diabetes did not significantly affect LTM loss over time. In this cohort with high comorbidity, we found universal and prominent muscle loss, which was further accelerated by male sex and inflammation. Stable body weight may mask muscle loss because of concurrent fat gain. Our data emphasize the need to assess body composition in all hemodialysis patients and call for studies to analyze whether intervention with nutrition or exercise may curtail muscle loss in the most vulnerable hemodialysis patients.
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