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Published on: June 28, 2019
Hepatic dysfunction secondary to Kawasaki disease: characteristics, etiology and predictive role in coronary artery
Goshgar Mammadov1, Hui Hui Liu1, Wei Xia Chen1
1Department of Pediatrics, The First Affiliated Hospital of Anhui Medical University, No. 218 Ji-Xi Road, Hefei, 230022, People's Republic of China.
Insights
Hepatic dysfunction is common in Kawasaki disease (KD) and linked to coronary artery abnormalities (CAAs). A low albumin/globulin ratio (A/G) independently predicts CAAs in KD patients, highlighting liver function
Area of Science:
- Pediatrics
- Hepatology
- Cardiology
Background:
- Coronary artery abnormalities (CAAs) are a major concern in acute Kawasaki disease (KD).
- Hepatic dysfunction is recognized as an independent predictor of CAA risk.
- Understanding biomarkers for CAAs in KD is crucial for prognosis.
Purpose of the Study:
- To identify reliable biomarkers for predicting CAAs in pediatric patients with KD.
- To investigate the association between hepatic dysfunction and CAAs in KD.
Main Methods:
- Review of medical records for 210 KD children.
- Analysis of liver function tests (LFTs) and inflammatory mediators pre- and post-therapy.
- Multivariate logistic regression to identify independent predictors of CAAs.
Main Results:
- Over 90% of KD patients exhibited abnormal LFTs, with hypoalbuminemia being most prevalent.
- Elevated inflammatory mediators and aspirin contributed to KD-related hepatic dysfunction.
- A lower albumin/globulin ratio (A/G < 1.48) was an independent predictor of CAAs (OR 13.50).
Conclusions:
- Hepatic dysfunction, including abnormal LFTs and hypoalbuminemia, is a common complication in acute KD.
- Systemic inflammation and aspirin, not infection, are key contributors to KD-associated hepatic dysfunction.
- A reduced A/G ratio is a significant independent predictor of CAAs in KD patients.
Abstract:
Coronary artery abnormalities (CAAs) are prominent during the acute Kawasaki disease (KD) episode and represent the major contributors to the long-term prognosis. Several meta-analysis and published scoring systems have identified hepatic dysfunction as an independent predictor of CAA risks. The medical records of 210 KD children were reviewed. Blood samples were collected from all subjects at 24 h pre-therapy and 48 h post-therapy, respectively. Liver function test (LFT) and inflammatory mediators were detected. Multivariate logistic regression analysis was conducted to identify the reliable biomarkers predicting whether CAAs existed or not in KD patients. 90.95% of KD patients had at least 1 abnormal LFT. Hypoalbuminemia was the most prevalent type of hepatic dysfunction, followed by elevated aspartate aminotransferase, low TP, low A/G and hyperbilirubinemia, respectively. The elevated inflammatory mediators (procalcitonin and C-reactive protein) and moderate dose of aspirin played a synthetic role in hepatic dysfunction secondary to KD. However, LFT presented no significant differences between infectious and noninfectious conditions. By a multivariate analysis, a lower albumin/globulin ratio (A/G, OR 13.50, 95% CI 3.944-46.23) served as an independent predictor of CAAs and had a sensitivity of 56.25%, and a specificity of 61.11% at a cutoff value of < 1.48. In conclusion, hepatic dysfunction is a common complication during the acute KD episode, characterized by elevated serum liver enzymes, hypoalbuminemia and hyperbilirubinemia. Systemic inflammation and aspirin, rather than infectious agents, are both the major contributors of hepatic dysfunction secondary to KD. A lower A/G serves as an independent predictor of CAAs.
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