4.6 Article

Changes in liver function and size after a severe thermal injury

Journal

SHOCK
Volume 28, Issue 2, Pages 172-177

Publisher

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1097/shk.0b013e318047b9e2

Keywords

hepatomegaly; liver enzymes; pediatrics; thermal injury

Funding

  1. NIAID NIH HHS [H133 AO 20102] Funding Source: Medline
  2. NIGMS NIH HHS [R01 GM 56687, P50 GM 60338, T32 GM 008256] Funding Source: Medline

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Hepatic homeostasis and metabolism are essential for survival in critically ill and severely burned patients. There is evidence that the liver undergoes hypertrophy after burn. However, the extension and the duration of liver enlargement are not known. The aim of the present study was to determine the changes in liver size, weight, and hepatic protein synthesis in a large prospective clinical trial throughout acute hospitalization and up to 12 months after burn. Liver size was measured by means of ultrasound, and liver weight was calculated weekly during short-term hospital stay and at 6, 9, and 12 months after burn. The liver size was then compared with the predicted liver size for each individual. The levels of hepatic proteins and enzymes were determined by using standard laboratory techniques. One hundred two children were included in the study, with 58% +/- 2% total body surface area and 45% +/- 2% third-degree burn. Liver size and weight significantly increased during the first week after burn (mean +/- SEM, 85% +/- 5%), peeked at 2 weeks after burn (mean +/- SEM, 126% +/- 19%), and, at discharge, increased by 89% +/- 10%. At 6, 9, and 12 months, the liver weight increased by 40% to 50% compared with the predicted liver weight. The hepatic protein synthesis was affected up to 9 months after burn. The liver demonstrates a significant enlargement during short-term hospitalization, accompanied with impairment in the hepatic protein synthesis. The treatment to prevent liver enlargement and the improved impaired function may result in a reduction of complications accompanied with liver hypertrophy and failure.

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