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Published on: March 15, 2024
Melatonin Alleviates Erastin-Induced Cell Death by Inhibiting Ferroptosis and Amyloid Precursor Protein Processing in
Suwakon Wongjaikam1,2, Puntita Siengdee1, Alliya Somnus1
1Applied Biological Sciences: Environmental Health Program, Chulabhorn Graduate Institute, Lak Si, Bangkok, 10210, Thailand.
Abstract:
Ferroptosis is an iron-dependent and membrane lipid peroxidation-mediated form of programmed or regulated cell death. A number of recent studies have demonstrated that ferroptosis contributes to Alzheimer's disease (AD)-mediated nerve cell death. Melatonin demonstrates strong antioxidant properties and offers protective benefits for the brain in the context of AD. However, it is not fully known whether melatonin protects against ferroptosis and whether ferroptosis affects amyloid precursor protein (APP) processing. In this study, we studied the effects of melatonin on SH-SY5Y cells-induced ferroptosis using erastin, and ferrostatin-1 was used as a ferroptosis inhibitor. To confirm the occurrence of ferroptosis, we conducted measurements of cell cytotoxicity, intracellular iron, reactive oxygen species (ROS), and 4-hydroxynonenal (4-HNE). The protein expressions that were regulated by either ferroptosis or APP processing were measured. Our results revealed that erastin increased intracellular iron levels, ROS, and 4-HNE lipid peroxidation in SH-SY5Y cells, resulting in an increased percentage of cell death. Erastin disrupted the regulation of proteins involved in ferroptosis and increased the production of amyloid beta (Aβ) through APP proteolysis. Following melatonin treatment, intracellular iron, ROS, and 4-HNE levels were significantly reduced. Additionally, the cystine/glutamate antiporter (system xc-) and glutathione peroxidase 4 (GPX4) were increased, and acyl-CoA synthetase long chain family member 4 (ACSL4) was diminished. APP, β-site-APP cleaving enzyme 1 (BACE1), presenilin 1 (PS1) and Aβ production were alleviated in erastin-treated SH-SY5Y cells. In conclusion, melatonin effectively inhibits ferroptosis-related cell death and AD-like conditions induced by erastin in SH-SY5Y human neuroblastoma cell lines.
Insights
Melatonin inhibits ferroptosis, a cell death pathway implicated in Alzheimer's disease (AD). This study shows melatonin reduces iron, oxidative stress, and amyloid-beta production in brain cells, offering neuroprotection against AD-like conditions.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Ferroptosis, an iron-dependent cell death, is increasingly recognized for its role in Alzheimer's disease (AD) neurodegeneration.
- Melatonin, a potent antioxidant, shows promise for brain protection in AD, but its direct effect on ferroptosis and its link to amyloid precursor protein (APP) processing remain unclear.
Purpose of the Study:
- To investigate the protective effects of melatonin against erastin-induced ferroptosis in SH-SY5Y neuroblastoma cells.
- To determine if melatonin influences amyloid-beta (Aβ) production and APP processing in the context of ferroptosis.
Main Methods:
- SH-SY5Y cells were treated with erastin to induce ferroptosis, with ferrostatin-1 used as a control inhibitor.
- Measurements included cell viability, intracellular iron, reactive oxygen species (ROS), 4-hydroxynonenal (4-HNE), and key protein expressions related to ferroptosis and APP processing.
Main Results:
- Erastin induced ferroptosis, increasing cell death, intracellular iron, ROS, and 4-HNE, while disrupting ferroptosis regulators and elevating Aβ production via APP proteolysis.
- Melatonin treatment significantly reduced iron, ROS, and 4-HNE levels, while increasing the cystine/glutamate antiporter (system xc⁻) and glutathione peroxidase 4 (GPX4), and decreasing acyl-CoA synthetase long chain family member 4 (ACSL4).
- Melatonin alleviated the erastin-induced increases in APP, β-site-APP cleaving enzyme 1 (BACE1), presenilin 1 (PS1), and Aβ production.
Conclusions:
- Melatonin effectively inhibits ferroptosis and ameliorates AD-like pathological changes induced by erastin in a human neuroblastoma cell model.
- These findings highlight melatonin's potential as a therapeutic agent against ferroptosis-driven neurodegeneration in Alzheimer's disease.
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