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The MicroRNA-based Liquid Biopsy Improves Early Assessment of Lethal Acetaminophen Poisoning: A Case Report
Julian Krauskopf1, Mark M Gosink2, Shelli Schomaker3
1Department of Toxicogenomics, Maastricht University, Maastricht, Netherlands.
Abstract:
BACKGROUND Acetaminophen overdose is the most common cause of acute liver failure. Nevertheless, new biomarker approaches enabling early prediction of the outcome of the acetaminophen overdose are needed. Recently, using next-generation sequencing analysis of serum from human study participants we uncovered injury-specific signatures of circulating microRNAs (miRNAs) that represented underlying molecular mechanisms of toxicity. This case study is first to show the application of miRNA profiling to assess prognosis of acetaminophen poisoning. CASE REPORT The patient was admitted to the hospital following supra therapeutic acetaminophen ingestion. The patient showed elevated levels of biomarkers of hepatocellular injury alanine aminotransferase, aspartate transaminase, and glutamate dehydrogenase. Even though treatment with N-acetyl cysteine was initiated 24 hours post-ingestion, levels of alanine-aminotransferase and aspartate transaminase peaked at about 40 hours post ingestion of acetaminophen. We analyzed global circulating miRNA levels from 24 consecutive serum samples from this study participant covering the period from admission to time of death. CONCLUSIONS The resulting global miRNA profiles were compared with profiles from study participants with non-lethal acetaminophen poisoning and healthy controls. At the admission, the miRNA profiles of both lethal and non-lethal acetaminophen poisoning showed induction of cellular stress and oxidative damage. Later, the miRNA profiles of the lethal poisoning featured fibrosis and coagulation pathways while profiles of non-lethal cases resembled those of healthy study participants. Although additional confirmatory studies are needed, our case study is first to indicate that global miRNA profiles to be used as liquid biopsies have potential to facilitate the assessment of acetaminophen poisoning.
Insights
Acetaminophen overdose can cause acute liver failure. MicroRNA (miRNA) profiling of serum shows potential for early prognosis of poisoning severity, distinguishing lethal from non-lethal cases.
Area of Science:
- Biochemistry
- Genomics
- Toxicology
Background:
- Acetaminophen overdose is a leading cause of acute liver failure.
- Early prediction biomarkers for acetaminophen poisoning outcomes are needed.
- MicroRNA (miRNA) signatures in serum may indicate toxicity mechanisms.
Observation:
- A case study analyzed circulating miRNA profiles from a patient with fatal acetaminophen overdose.
- miRNA profiles were compared to non-lethal poisoning cases and healthy controls.
- Biomarkers of hepatocellular injury were elevated in the patient.
Findings:
- Admission miRNA profiles indicated cellular stress and oxidative damage in both lethal and non-lethal acetaminophen poisoning.
- Fatal cases later showed fibrosis and coagulation pathway activation in miRNA profiles.
- Non-lethal cases' miRNA profiles resembled those of healthy individuals.
Implications:
- Global miRNA profiling may serve as a non-invasive "liquid biopsy" for assessing acetaminophen poisoning severity.
- This approach could aid in early prognosis and treatment decisions.
- Further studies are required to validate these findings in larger cohorts.
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