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Published on: August 17, 2022
Comparing body composition measures in children with end stage liver disease using noninvasive bioimpedance analysis
Maryam Ekramzadeh1,2, Seyed Ali Moosavi3,4, Amirali Mashhadiagha3,4
1Department of Clinical Nutrition, Nutrition Research Center, School of Nutrition and Food Sciences, Shiraz University of Medical Sciences, Shiraz, Iran.
Insights
Sarcopenia, or muscle loss, is common in children with end-stage liver disease (ESLD) and linked to higher mortality. Bioelectrical impedance analysis (BIA) can help assess body composition in these children.
Area of Science:
- Pediatric Gastroenterology
- Hepatology
- Clinical Nutrition
Background:
- Chronic liver disease (CLD) in children often progresses to cirrhosis and end-stage liver disease (ESLD).
- Management and prognosis of pediatric CLD are challenging.
- Body composition assessment, particularly sarcopenia, is crucial for understanding outcomes in pediatric ESLD.
Purpose of the Study:
- To investigate the prevalence of sarcopenia in children with ESLD awaiting liver transplantation.
- To explore the association between body composition and adverse outcomes, including mortality.
- To evaluate the utility of Bioelectrical Impedance Analysis (BIA) in assessing pediatric ESLD patients.
Main Methods:
- A prospective observational study was conducted on 57 children (aged 2-18 years) with ESLD.
- Socio-demographic, clinical, and laboratory data were collected.
- Body composition was assessed using Bioelectrical Impedance Analysis (BIA), with sarcopenia defined by age-specific cut-offs for appendicular skeletal muscle mass (aSMM) and fat-free mass (FFM).
Main Results:
- 19.3% of the 57 children with liver cirrhosis died during the study.
- Deceased children had significantly higher sarcopenia prevalence and lower growth scores compared to survivors (P < 0.05).
- Lower basal metabolic rate, total body and limb lean mass, and altered water-to-FFM percentage were observed in deceased children.
Conclusions:
- Sarcopenia is highly prevalent in pediatric ESLD and associated with adverse outcomes, including increased mortality.
- Bioimpedance analysis (BIA) is a promising, non-invasive tool for body composition assessment in pediatric ESLD.
- Further research and clinical integration of BIA are warranted for managing pediatric ESLD.
Background:
Chronic liver disease (CLD) in children, often leads to cirrhosis and end-stage liver disease (ESLD). CLD poses significant challenges in management and prognosis. Assessing body composition, including sarcopenia, is increasingly recognized as important in understanding outcomes in this population.
Methods:
We conducted a prospective observational study, involving children aged 2 to 18 years with ESLD awaiting liver transplantation. Socio-demographic, clinical, and laboratory data were collected, and body composition was assessed using Bioelectrical Impedance Analysis (BIA). Sarcopenia was defined using age-specific cut-off points for appendicular skeletal muscle mass (aSMM) and fat-free mass (FFM).
Results:
The study included 57 children (42.1% girls, 57.9% boys; median age: 10.9 years) with liver cirrhosis. Of them 11 (19.3%) died during the study. The mean duration of living with end-stage liver disease prior to participation was 5.43 years [IQR: 3.32, 8.39]. The most common etiology was biliary atresia (24.6%), followed by cryptogenic (22.8%). Deceased children exhibited significantly higher sarcopenia prevalence, lower basal metabolic rate and growth scores compared to survivors (P < 0.05), (771.0 vs. 934.0, P = 0.166) (65.0 vs. 80.5, P = 0.005). Total body and limb-specified lean mass were lower in deceased children, although not statistically significant. Similarly, total mineral (90% normal) and bone mineral content were lower in deceased children, with a significant difference observed only in water-to-FFM percentage (72.5 vs. 73.1, P = 0.009).
Conclusion:
This study highlights the high prevalence of sarcopenia among children with ESLD and its association with adverse outcomes, including mortality. Bioimpedance analysis emerges as a promising, non-invasive method for assessing body composition in pediatric ESLD, warranting further investigation and integration into clinical practice.
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