Liver fat in adult survivors of severe acute malnutrition.

Debbie S Thompson, Tamika Y N Royal-Thomas, Ingrid A Tennant, Deanne P Soares, Christopher D Byrne, Terrence E Forrester, Peter D Gluckman, Michael S Boyne

Journal: Scientific reports 2022;12(1):3690

PMID: 35256686

Abstract

The association between severe acute malnutrition (SAM) in early childhood and liver fat in adults is unknown. We hypothesized that exposure to SAM, especially severe wasting, is associated with fatty liver later in life. In this observational study, abdominal CT was used to quantify mean liver attenuation (MLA) and liver:spleen attenuation ratio (L/S). Birth weight (BW), serum lipids, insulin resistance (homeostatic model assessment), anthropometry and intrabdominal fat were collected. Mean differences between diagnostic groups were tested and hierarchical regression analysis determined the best predictors of liver fat. We studied 88 adult SAM survivors and 84 community participants (CPs); age 29.0 ± 8.4 years, BMI 23.5 ± 5.0 kg/m (mean ± SDs). SAM survivors had less liver fat than CPs (using L/S) (p = 0.025). Severe wasting survivors (SWs) had lower BW (-0.51 kg; p = 0.02), were younger, thinner and had smaller waist circumference than oedematous malnutrition survivors (OMs). In the final regression model adjusting for age, sex, birth weight and SAM phenotype (i.e., oedematous malnutrition or severe wasting), SWs had more liver fat than OMs (using MLA) (B = 2.6 ± 1.3; p = 0.04) but similar liver fat using L/S (p = 0.07) and lower BW infants had less liver fat (MLA) (B = -1.8 ± 0.8; p = 0.03). Greater liver fat in SWs than OMs, despite having less body fat, supports our hypothesis of greater cardiometabolic risk in SWs. Other postnatal factors might influence greater liver fat in survivors of severe wasting, suggesting the need to monitor infants exposed to SAM beyond the acute episode.

© 2022. The Author(s).

Address: Caribbean Institute for Health Research, The University of the West Indies, Kingston 7, Jamaica. [email protected].; Department of Mathematics, The University of the West Indies, Kingston, Jamaica.; Caribbean Institute for Health Research, The University of the West Indies, Kingston 7, Jamaica.; Department of, Surgery, Radiology, Anesthesia and Intensive Care, The University of the West Indies, Kingston, Jamaica.; Nutrition and Metabolism Unit, Faculty of Medicine, University of Southampton, Southampton, UK.; Institute of Developmental Sciences and NIHR Biomedical Research Centre, University of Southampton and University Hospital Southampton, Southampton, UK.; UWI Solutions for Developing Countries, The University of the West Indies, Kingston, Jamaica.; UK Centre for Human Evolution, Adaptation and Disease, Liggins Institute, University of Auckland, Auckland, New Zealand.; Department of Medicine, The University of the West Indies, Kingston, Jamaica.
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