Chloroquine inhibits autophagy and deteriorates the mitochondrial dysfunction and apoptosis in hypoxic rat neurons
Peng Li, Lei Hao, Yan-Yan Guo, Guang-Lu Yang, Hua Mei, Xiao-Hua Li, Qiong-Xiang Zhai
Journal:LIFE SCIENCES
IF:3.23
DOI:10.1016/j.lfs.2018.01.011
PMID:29331314
Published:2018-01-11
research field:神经科学药理学细胞生物学
Abstract
Aims Mitochondrial dysfunction (MD) and apoptosis in the neurons are associated with neonatal hypoxic–ischemic (HI) encephalopathy (HIE). The present study was to explore the influence of autophagy on the induction of MD and apoptosis in the neurons in a neonatal HIE rats and in hypoxia-treated neurons in vitro . Materials and methods Ten-day-old HI rat pups were sacrificed for brain pathological examination and immunohistochemical analysis. The induction of autophagy, apoptosis and MD were also determined in the neurons under hypoxia, with or without autophagy inhibitor, chloroquine (CQ) treatment. Key findings HI treatment caused atrophy and apoptosis of neurons, with a significantly increased levels of apoptosis- and autophagy-associated proteins, such as cleaved caspase 3 and the B subunit of autophagy-related microtubule-associated protein 1 light chain 3 (LC3-B). in vitro experiments demonstrated that the hypoxia induced autophagy in neurons, as was inhibited by CQ. The hypoxia-induced cytochrome c release, cleaved caspase 3 and cleaved caspase 9 were aggravated by CQ. Moreover, there were higher levels of reactive oxygen species, more mitochondrial superoxide and less mitochondrial membrane potential in the CQ-treated neurons under hypoxia than in the neurons singularly under hypoxia. Significance Apoptosis and autophagy were induced in HI neonatal rat neurons, autophagy inhibition deteriorates the hypoxia-induced neuron MD and apoptosis. It implies a neuroprotection of autophagy in the hypoxic–ischemic encephalopathy. Administration of autophagy inducer agents might be promising in HIE treatment.
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