1,2-DCE exposure induces autophagosome accumulation and neuronal death via the ROS-JNK/c-Fos/c-Jun/FoxO1/FoxO3a axis

As a ubiquitous organic pollutant in industrial settings, 1,2-dichloroethane (1,2-DCE) has been documented to induce cognitive impairment; however, the underlying molecular mechanisms remain poorly understood. In our animal experiments, mice were exposed to 0, 0.225, 0.45, and 0.9 g/m 3 of 1,2-DCE via static whole-body inhalation for 3.5 h daily over 56 days. Our results demonstrate that 56-day repeated 1,2-DCE exposure induces oxidative damage, activates autophagy, and promotes apoptosis in mouse hippocampal neural cells. We also observed impaired lysosomal function following 1,2-DCE treatment. On this basis, we hypothesized that 1,2-DCE disrupted autophagic flux, which was verified by blocked p62 degradation and an elevated LC3-II/I ratio, ultimately leading to neuronal apoptosis. These findings were further validated in vitro using the autophagy agonist rapamycin and the inhibitor chloroquine. In addition, 2-chloroethanol (2-CE), the primary metabolite of 1,2-DCE in vivo, increased p62 and LC3-II/I levels in PC12 cells in both dose- and time-dependent manners. Importantly, in vivo studies revealed that the ROS-JNK/c-Fos/c-Jun/FoxO1/FoxO3a axis acts as a critical upstream regulator, modulating transcription of core autophagy-related genes to initiate and enhance autophagy. These results were confirmed in vitro via pharmacological inhibition of ROS and JNK. Furthermore, activated JNK may promote autophagy through Bcl-2 phosphorylation, thereby facilitating subsequent apoptosis. Collectively, our study demonstrates for the first time that 1,2-DCE exposure triggers ROS-mediated and JNK-dependent autophagy, thereby inducing autophagic flux blockade and subsequent neuronal apoptosis.

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Journal
Ecotoxicology and Environmental Safety
Published
2026-09-30
DOI
https://doi.org/10.1016/j.ecoenv.2026.120873
Primary Topic
Autophagy in Disease and Therapy
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article
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article

1,2-DCE exposure induces autophagosome accumulation and neuronal death via the ROS-JNK/c-Fos/c-Jun/FoxO1/FoxO3a axis

Fenghong Zhao, Gaoyang Wang, Zijiang Wang, Zhenlin Luo et al.
Ecotoxicology and Environmental Safety
Autophagy in Disease and Therapy
article

1,2-DCE exposure induces autophagosome accumulation and neuronal death via the ROS-JNK/c-Fos/c-Jun/FoxO1/FoxO3a axis

Fenghong Zhao, Gaoyang Wang, Zijiang Wang, Zhenlin Luo, Chunting Wang, Wanting Cui, Chen Wang, Taotao Li
article en

Abstract

As a ubiquitous organic pollutant in industrial settings, 1,2-dichloroethane (1,2-DCE) has been documented to induce cognitive impairment; however, the underlying molecular mechanisms remain poorly understood. In our animal experiments, mice were exposed to 0, 0.225, 0.45, and 0.9 g/m 3 of 1,2-DCE via static whole-body inhalation for 3.5 h daily over 56 days. Our results demonstrate that 56-day repeated 1,2-DCE exposure induces oxidative damage, activates autophagy, and promotes apoptosis in mouse hippocampal neural cells. We also observed impaired lysosomal function following 1,2-DCE treatment. On this basis, we hypothesized that 1,2-DCE disrupted autophagic flux, which was verified by blocked p62 degradation and an elevated LC3-II/I ratio, ultimately leading to neuronal apoptosis. These findings were further validated in vitro using the autophagy agonist rapamycin and the inhibitor chloroquine. In addition, 2-chloroethanol (2-CE), the primary metabolite of 1,2-DCE in vivo, increased p62 and LC3-II/I levels in PC12 cells in both dose- and time-dependent manners. Importantly, in vivo studies revealed that the ROS-JNK/c-Fos/c-Jun/FoxO1/FoxO3a axis acts as a critical upstream regulator, modulating transcription of core autophagy-related genes to initiate and enhance autophagy. These results were confirmed in vitro via pharmacological inhibition of ROS and JNK. Furthermore, activated JNK may promote autophagy through Bcl-2 phosphorylation, thereby facilitating subsequent apoptosis. Collectively, our study demonstrates for the first time that 1,2-DCE exposure triggers ROS-mediated and JNK-dependent autophagy, thereby inducing autophagic flux blockade and subsequent neuronal apoptosis.

Ecotoxicology and Environmental SafetyVol. 324
Sheng Jing Hospital (CN), China Medical University (CN)
Openalex Percentile: Top 11%
Autophagy in Disease and Therapy
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1,2-DCE exposure induces autophagosome accumulation and neuronal death via the ROS-JNK/c-Fos/c-Jun/FoxO1/FoxO3a axis — Fenghong Zhao, Gaoyang Wang, et al. · Ecotoxicology and Environmental Safety (2026) | TGRS Research Map | TGRS