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February 28, 2026International Journal of Molecular Sciences0 citationsOpen Access

Forchlorfenuron Exposure Induces Hepatocyte Apoptosis via MKK3/P38/ATF2 Pathway

YZYunqi ZhangYLYun LuoXCXiaoyang Che

Key Points

  • The study aims to investigate the hepatotoxic effects of forchlorfenuron on hepatocytes and the underlying molecular mechanisms.
  • In vitro exposure of HepaRG cells to forchlorfenuron at various concentrations and time points.
  • Assessment of cell viability and apoptosis through reactive oxygen species (ROS) measurements.
  • Molecular docking and network pharmacology analysis to explore involved signaling pathways.
  • Use of P38 inhibitor SB203580 to evaluate its effect on apoptosis under forchlorfenuron exposure.
  • Forchlorfenuron decreased HepaRG cell viability in a concentration and time-dependent manner.
  • Increased ROS levels indicated oxidative stress occurring in treated cells.
  • MKK3/P38/ATF2 signaling pathway was activated after 24 hours of exposure.
  • Pretreatment with P38 inhibitor significantly reduced apoptosis caused by forchlorfenuron.

Abstract

Forchlorfenuron is a widely used plant cytokinin in Traditional Chinese Medicine and agricultural cultivation to boost resistance, postpone senescence, and increase productivity. However, the improper use of forchlorfenuron results in excessive residues and contamination, raising health and safety concerns. Our research investigated the toxicity of forchlorfenuron on hepatocytes in vitro. Results showed that forchlorfenuron inhibited HepaRG cell viability in a concentration and time-dependent manner. Forchlorfenuron-induced cellular apoptosis and the increased intracellular reactive oxygen species (ROS) indicated the participation of oxidative stress. Molecular docking and network pharmacology data suggested that the hepatotoxicity of forchlorfenuron might involve the MAPK signaling pathway. After 24 h of forchlorfenuron exposure, the P38-MAP kinase, upstream kinases MKK3, and the transcription factor ATF2 were maximally activated. Apoptosis induced by forchlorfenuron was significantly reduced by pretreatment with the P38 inhibitor SB203580. These findings implicated that HepaRG hepatocyte injuries were generated by forchlorfenuron through the induction of cellular apoptosis via the MKK3/P38/ATF2 pathway. Forchlorfenuron application should be closely managed to prevent potential liver damage.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69a287460a974eb0d3c02e9fhttps://doi.org/10.3390/ijms27052173
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