1,2-Dichloroethane Induces Neuronal Apoptosis Through AMPK-mTOR-ULK1 Pathway Activation and Autophagic Flux Impairment

Prolonged exposure to 1,2-dichloroethane (1,2-DCE) can lead to cognitive dysfunction, and neuronal loss is a proven key driver. In mice, 1,2-DCE exposure reduced hippocampal ATP levels, triggering AMPK phosphorylation, mTOR suppression, and ULK1 activation, along with increased Beclin 1 and LC3-II/I levels, collectively indicating enhanced autophagy initiation. Meanwhile, p62 accumulation and decreased LAMP1 and CTSD expression indicated impaired autophagic degradation, accompanied by increased neuronal apoptosis. Consistent with these in vivo findings, PC12 cells, a neuron-like cell line, exhibited mitochondrial dysfunction after exposure to 2-chloroethanol (2-CE, a metabolite of 1,2-DCE in vivo), as evidenced by ATP depletion, mitochondrial membrane potential loss, and elevated ROS production. Furthermore, 2-CE activated the AMPK-mTOR-ULK1 signaling pathway to initiate autophagy, while also disrupting lysosomal structure and function, leading to impaired autophagic flux and enhanced apoptosis. In conclusion, prolonged 1,2-DCE exposure induces mitochondrial dysfunction and ATP depletion, activating AMPK-mTOR-ULK1-mediated autophagy initiation. Meanwhile, concomitant lysosomal damage impairs autophagic degradation, and the combined effect promotes neuronal apoptosis. These findings suggest a potential strategy for preventing and treating 1,2-DCE-induced cognitive impairment.

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Publication Details

Journal
Biology
Published
2026-09-09
DOI
https://doi.org/10.3390/biology15181580
Primary Topic
Autophagy in Disease and Therapy
Type
article
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article

1,2-Dichloroethane Induces Neuronal Apoptosis Through AMPK-mTOR-ULK1 Pathway Activation and Autophagic Flux Impairment

Fenghong Zhao, Wanting Cui, Chen Wang, Gaoyang Wang et al.
Biology
Autophagy in Disease and Therapy
article

1,2-Dichloroethane Induces Neuronal Apoptosis Through AMPK-mTOR-ULK1 Pathway Activation and Autophagic Flux Impairment

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

Abstract

Prolonged exposure to 1,2-dichloroethane (1,2-DCE) can lead to cognitive dysfunction, and neuronal loss is a proven key driver. In mice, 1,2-DCE exposure reduced hippocampal ATP levels, triggering AMPK phosphorylation, mTOR suppression, and ULK1 activation, along with increased Beclin 1 and LC3-II/I levels, collectively indicating enhanced autophagy initiation. Meanwhile, p62 accumulation and decreased LAMP1 and CTSD expression indicated impaired autophagic degradation, accompanied by increased neuronal apoptosis. Consistent with these in vivo findings, PC12 cells, a neuron-like cell line, exhibited mitochondrial dysfunction after exposure to 2-chloroethanol (2-CE, a metabolite of 1,2-DCE in vivo), as evidenced by ATP depletion, mitochondrial membrane potential loss, and elevated ROS production. Furthermore, 2-CE activated the AMPK-mTOR-ULK1 signaling pathway to initiate autophagy, while also disrupting lysosomal structure and function, leading to impaired autophagic flux and enhanced apoptosis. In conclusion, prolonged 1,2-DCE exposure induces mitochondrial dysfunction and ATP depletion, activating AMPK-mTOR-ULK1-mediated autophagy initiation. Meanwhile, concomitant lysosomal damage impairs autophagic degradation, and the combined effect promotes neuronal apoptosis. These findings suggest a potential strategy for preventing and treating 1,2-DCE-induced cognitive impairment.

BiologyVol. 15(18)
Shenyang Center for Disease Control and Prevention (CN), China Medical University (CN)
Openalex Percentile: Top 10%
Autophagy in Disease and Therapy
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1,2-Dichloroethane Induces Neuronal Apoptosis Through AMPK-mTOR-ULK1 Pathway Activation and Autophagic Flux Impairment — Fenghong Zhao, Wanting Cui, et al. · Biology (2026) | TGRS Research Map | TGRS