1. Academic Validation
  2. Soman induces endoplasmic reticulum stress and apoptosis of cerebral organoids via the GRP78-ATF6-CHOP signaling pathway

Soman induces endoplasmic reticulum stress and apoptosis of cerebral organoids via the GRP78-ATF6-CHOP signaling pathway

  • FEBS Open Bio. 2025 Jul;15(7):1041-1053. doi: 10.1002/2211-5463.70027.
Yue Wei 1 2 Zhanbiao Liu 2 Jingjing Shi 2 Qian Jin 2 Wenqian Chen 2 Xuejun Chen 2 Liqin Li 2 Hui Chen 1 3
Affiliations

Affiliations

  • 1 College of Pharmacy, Guilin Medical University, China.
  • 2 State Key Laboratory of NBC Protection for Civilian, Beijing, China.
  • 3 Key Laboratory of Pharmacology for Prevention and Treatment of High Incidence Diseases in Guangxi Higher Education Institutions, Guilin Medical University, China.
Abstract

Soman is an organophosphorus compound that induces neurotoxicity. In addition to its direct toxic effects resulting from acetylcholine accumulation, neurotoxicity may also be exacerbated by inducing endoplasmic reticulum (ER) stress. In light of the current scarcity of appropriate in vitro assessment models, in the present study, we used cerebral organoids derived from human pluripotent stem cells, a new tool for investigating the mechanisms of neurotoxicity, to investigate soman-induced ER stress. The results demonstrated that soman significantly suppressed acetylcholinesterase activity and activated the GRP78-ATF6-CHOP (i.e. glucose-regulated protein 78-activating transcription factor 6-C/EBP homologous protein) ER stress cascade, driving Apoptosis in cerebral organoids. Pharmacological inhibition of ER stress by pre-treating cerebral organoids with the ER stress inhibitor 4-phenylbutyric acid prior to soman exposure attenuated apoptotic signaling and downregulated GRP78, ATF6 and CHOP expression. Parallel in vivo validation utilized a rat model with subcutaneous soman exposure, focusing on hippocampal and striatal ER stress markers. Consistent with the in vitro findings, soman-exposed rats exhibited marked ER stress activation in brain regions critical for neurotoxicity. This study establishes ER stress as a key contributor to soman-induced neurotoxicity and highlights cerebral organoids as a physiologically relevant model for organophosphorus compound research. We propose ER stress modulation as a potential therapeutic strategy to mitigate neurotoxic outcomes.

Keywords

ATF6; ER stress; cerebral organoids; organophosphates; soman.

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