Associations between bioelectrical impedance analysis-derived phase angle, protein-energy wasting and all-cause mortality in older patients undergoing haemodialysis

Nephrology (Carlton). 2024 Oct;29(10):655-662. doi: 10.1111/nep.14333. Epub 2024 Jun 10.

Abstract

Aim: Protein-energy wasting (PEW) is a common syndrome in patients undergoing haemodialysis (HD) and is associated with poor prognosis. Bioelectrical impedance analysis (BIA)-derived phase angle (PA) is useful for predicting PEW, but sex and age need to be considered. We aimed to reveal sex-specific cut-off values of PA predicting PEW in HD patients aged ≥65.

Methods: This two-centre retrospective cohort study included patients on HD who underwent BIA. PEW was detected using the International Society of Renal Nutrition and Metabolism (ISRNM) criteria as a reference. The PA was measured using a multifrequency bioimpedance device. Sex-specific cut-off values of PA predicting PEW were detected by receiver-operator characteristic analysis. We investigated the association between PEW determined using sex-specific cut-off values for PA and all-cause mortality.

Results: This study included 274 patients undergoing HD, with a median age of 75 (70-80) years, mean PA of 3.8 ± 1.1° and PEW of 43%. Over a median follow-up duration of 1095 (400-1095) days, 111 patients died. Cut-off values of PA predicting PEW were as follows: female, 3.00° (sensitivity, 87.3%; specificity, 77.5%), and male, 3.84° (sensitivity, 77.6%; specificity, 71.4%). The kappa coefficient between sex-specific cut-off values of the PA and ISRNM criteria had a moderate coincidence level of 0.55. PEW detected by PA was independently associated with all-cause mortality (hazard ratio: 2.40; 95% confidence interval: 1.51-3.85; p < .001).

Conclusions: Sex-specific cut-off values for PA in older HD patients may be useful as a screening tool for predicting PEW and mortality.

Keywords: bioelectrical impedance analysis; haemodialysis; older; phase angle; protein‐energy wasting; sex difference.

Publication types

  • Multicenter Study

MeSH terms

  • Age Factors
  • Aged
  • Aged, 80 and over
  • Body Composition
  • Cause of Death
  • Electric Impedance*
  • Female
  • Humans
  • Male
  • Nutritional Status
  • Predictive Value of Tests*
  • Protein-Energy Malnutrition* / diagnosis
  • Protein-Energy Malnutrition* / etiology
  • Protein-Energy Malnutrition* / mortality
  • Protein-Energy Malnutrition* / physiopathology
  • Renal Dialysis* / adverse effects
  • Renal Dialysis* / mortality
  • Retrospective Studies
  • Risk Factors
  • Sex Factors
  • Time Factors
  • Treatment Outcome