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Biochemistry and Biophysics Reports· 2026Q2

Scoparone protects against acetaminophen-induced acute liver injury: Insights from In vivo experiments and RNA sequencing

Jianlin Lv, Linlin Liu, Meng Xia, Yuanqian Yao et al.

Short summary

Scoparone (Sco) alleviates acetaminophen-induced acute liver injury (ALI) in rats by reversing changes in gene expression related to glycolysis/gluconeogenesis and the plasma membrane.

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Key points

  • Scoparone (Sco) alleviates acetaminophen-induced acute liver injury (ALI) in rats, confirmed by histopathology and biochemical indicators.
  • RNA sequencing identified 50 mRNAs and 93 lncRNAs altered by acetaminophen, with Sco reversing these changes.
  • Sco counteracted acetaminophen-induced alterations in genes related to Glycolysis/Gluconeogenesis and the 'external side of plasma membrane' GO term.
  • 17 lncRNA-mRNA pairs potentially linked to Sco's hepatoprotective effects were identified.
  • In silico analysis suggests TNFRSF14 may play a key role in the protective mechanism.

AI-generated from the title and abstract; the full text is not read.

Abstract

Background Scoparone (Sco) is known for its therapeutic effects in alleviating liver injury. This study aims to investigate the protective effects of Sco against acetaminophen-induced acute liver injury (ALI) and explore its underlying mechanisms through in vivo experiments and RNA sequencing. Methods Male Wistar rats were administered acetaminophen (400 mg/kg) to induce ALI, and Sco was given as an intervention. Liver injury and Sco's therapeutic efficacy were evaluated using histopathological analysis and biochemical indicators. RNA sequencing of liver tissue was performed to explore the molecular mechanisms, and differentially expressed genes were validated by qRT-PCR and in silico analysis. Results Histopathological analysis showed that Sco alleviated liver injury caused by acetaminophen. RNA sequencing identified 50 mRNAs and 93 lncRNAs whose expression was significantly altered by acetaminophen, with Sco reversing these changes. Gene enrichment analysis revealed that Sco counteracted alterations in genes involved in the Glycolysis/Gluconeogenesis pathway and the “external side of plasma membrane” GO term, which were induced by acetaminophen. Moreover, 17 lncRNA-mRNA pairs potentially associated with Sco-mediated liver protection were identified. qPCR validation confirmed the RNA sequencing results. In silico analysis suggested that TNFRSF1 4 might play a key role in the hepatoprotective mechanism, although this relationship requires further validation. Conclusions This study demonstrates that Scoparone effectively protects the liver from acetaminophen-induced injury. The results provide novel insights into the anti-inflammatory and antioxidative effects of Sco and suggest it as a potential therapeutic strategy for liver injury.

The authors' abstract, as published at the source. Biochemistry and Biophysics Reports, 2026 · DOI ↗

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Field: Pharmacology (Pharmacology, Toxicology and Pharmaceutics)

PharmacologyPharmacology, Toxicology and Pharmaceutics