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Published on: October 28, 2019
Autophagy regulates chlorpyrifos-induced apoptosis in SH-SY5Y cells
Jae Hyeon Park1, Jeong Eun Lee, In Chul Shin
1Department of Pharmacology, Hanyang University, Republic of Korea.
Abstract:
Recent studies have shown that up-regulation of autophagy may be a tractable therapeutic intervention for clearing disease-causing proteins, including α-synuclein, ubiquitin, and other misfolded or aggregated proteins in pesticide-induced neurodegeneration. In a previous study, we reported that chlorpyrifos (CPF)-induced mitochondria-dependent apoptosis is mediated through reactive oxygen species in SH-SY5Y cells. In this study, we explored a novel pharmacotherapeutic approach to prevent CPF neurotoxicity involving the regulation of autophagy. We investigated the modulation of CPF-induced apoptosis according to autophagy regulation. We found that CPF induced apoptosis in SH-SY5Y cells, as demonstrated by the activation of caspase-3 and nuclear condensation. In addition, we observed that cells treated with CPF underwent autophagic cell death by monitoring the expression of LC3-II and p62. Pretreatment with the autophagy inducer rapamycin significantly enhanced the cell viability of CPF-exposed cells, and the enhancement of cell viability was partially due to alleviation of CPF-induced apoptosis via a decrease in levels of cleaved caspase-3. Specifically, rapamycin pretreatment decreased Bax and increased Bcl-2 expression in mitochondria. In addition, rapamycin significantly decreased cytochrome c release in from mitochondria into the cytosol. However, pretreatment of cells with the autophagy inhibitor, 3-methyladenine (3MA), remarkably increased CPF toxicity in these cells; this with correlated with increased expression of Bax and decreased expression of Bcl-2 in mitochondria. Our results suggest that CPF-induced cytotoxicity is modified by autophagy regulation and that rapamycin protects against CPF-induced apoptosis by enhancing autophagy. Pharmacologic induction of autophagy by rapamycin may be a useful treatment strategy in neurodegenerative disorders.
Insights
Rapamycin enhances autophagy to protect against chlorpyrifos (CPF) neurotoxicity by reducing apoptosis. This suggests pharmacologic induction of autophagy could treat neurodegenerative disorders.
Area of Science:
- Neuroscience
- Cell Biology
- Toxicology
Background:
- Autophagy up-regulation shows therapeutic potential for clearing toxic proteins in neurodegeneration.
- Chlorpyrifos (CPF) induces apoptosis via reactive oxygen species in SH-SY5Y cells.
Purpose of the Study:
- To investigate autophagy regulation as a pharmacotherapeutic strategy against CPF-induced neurotoxicity.
- To explore the modulation of CPF-induced apoptosis through autophagy.
Main Methods:
- SH-SY5Y cells were treated with CPF, rapamycin (autophagy inducer), or 3-methyladenine (3MA, autophagy inhibitor).
- Apoptosis was assessed via caspase-3 activation and nuclear condensation.
- Autophagic cell death was monitored by LC3-II and p62 expression.
- Mitochondrial apoptosis markers (Bax, Bcl-2, cytochrome c) were analyzed.
Main Results:
- CPF induced apoptosis and autophagic cell death in SH-SY5Y cells.
- Rapamycin pretreatment increased cell viability, reduced apoptosis, and modulated mitochondrial markers.
- 3MA pretreatment exacerbated CPF toxicity and altered mitochondrial apoptosis markers.
Conclusions:
- CPF-induced cytotoxicity is modulated by autophagy.
- Rapamycin protects against CPF-induced apoptosis by enhancing autophagy.
- Pharmacologic induction of autophagy may be a viable treatment for neurodegenerative disorders.
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