Metabolomic Analysis of Pediatric Patients with Idiosyncratic Drug-Induced Liver Injury According to the Updated RUCAM

Author:

Andújar-Vera Francisco1ORCID,Alés-Palmer María Luisa23,Muñoz-de-Rueda Paloma4,Iglesias-Baena Iván5,Ocete-Hita Esther236ORCID

Affiliation:

1. Bioinformatic Unit, Biosanitary Research Institute ibs.GRANADA, 18012 Granada, Spain

2. Department of Pediatrics, University of Granada, 18016 Granada, Spain

3. Department of Pediatrics, “Virgen de las Nieves” University Hospital, 18014 Granada, Spain

4. Research Support Unit, Biosanitary Research Institute ibs.GRANADA, 18012 Granada, Spain

5. Research Unit, GenActive Clinic & Research, 18193 Granada, Spain

6. Biosanitary Research Institute ibs.GRANADA, 18012 Granada, Spain

Abstract

Hepatotoxicity, a common adverse drug effect, has been extensively studied in adult patients. However, it is equally important to investigate this condition in pediatric patients to develop personalized treatment strategies for children. This study aimed to identify plasma biomarkers that characterize hepatotoxicity in pediatric patients through an observational case–control study. Metabolomic analysis was conducted on 55 pediatric patients with xenobiotic liver toxicity and 88 healthy controls. The results revealed clear differences between the two groups. Several metabolites, including hydroxydecanoylcarnitine, octanoylcarnitine, lysophosphatidylcholine, glycocholic acid, and taurocholic acid, were identified as potential biomarkers (area under the curve: 0.817; 95% confidence interval: 0.696–0.913). Pathway analysis indicated involvement of primary bile acid biosynthesis and the metabolism of taurine and hypotaurine (p < 0.05). The findings from untargeted metabolomic analysis demonstrated an increase in bile acids in children with hepatotoxicity. The accumulation of cytotoxic bile acids should be further investigated to elucidate the role of these metabolites in drug-induced liver injury.

Funder

Institute of Health Carlos III

Servicio Andaluz de Salud

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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