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Melatonin prevents endothelial cell pyroptosis via regulation of long noncoding RNA MEG3/miR-223/NLRP3 axis
Yong Zhang1,2, Xin Liu1, Xue Bai1
1Department of Pharmacology (the State-Province Key Laboratories of Biomedicine-Pharmaceutics of China Key Laboratory of Cardiovascular Research, Ministry of Education), College of Pharmacy, Harbin Medical University, Harbin, China.
Abstract:
Atherosclerosis (AS) is an inflammatory disease linked to endothelial dysfunction. Melatonin is reported to possess substantial anti-inflammatory properties, which has proven to be effective in AS. Emerging literature suggests that pyroptosis plays a critical role during AS progression. However, whether pyroptosis contributes to endothelial dysfunction and the underlying molecular mechanisms remained unexploited. This study was designed to investigate the antipyroptotic effects of melatonin in atherosclerotic endothelium and to elucidate the potential mechanisms. In this study, high-fat diet (HFD)-treated ApoE-/- mice were used as an atherosclerotic animal model. We found intragastric administration of melatonin for 12 weeks markedly reduced the atherosclerotic plaque in aorta. Meanwhile, melatonin also attenuated the expression of pyroptosis-related genes, including NLRP3, ASC, cleaved caspase1, NF-κB/GSDMD, GSDMD N-termini, IL-1β, and IL-18 in aortic endothelium of melatonin-treated animals. Consistent antipyroptotic effects were also observed in ox-LDL-treated human aortic endothelial cells (HAECs). We found that lncRNA MEG3 enhanced pyroptosis in HAECs. Moreover, MEG3 acted as an endogenous sponge by sequence complementarity to suppress the function of miR-223 and to increase NLRP3 expression and enhance endothelial cell pyroptosis. Furthermore, knockdown of miR-223 blocked the antipyroptotic actions of melatonin in ox-LDL-treated HAECs. Together, our results suggest that melatonin prevents endothelial cell pyroptosis via MEG3/miR-223/NLRP3 axis in atherosclerosis, and therefore, melatonin replacement might be considered a new strategy for protecting endothelium against pyroptosis, thereby for the treatment of atherosclerosis associated with pyroptosis.
Insights
Melatonin reduces atherosclerosis by inhibiting pyroptosis, a cell death process, in endothelial cells. It acts through the MEG3/miR-223/NLRP3 pathway, offering a potential treatment for this inflammatory disease.
Area of Science:
- Cardiovascular Biology
- Inflammation Research
- Molecular Medicine
Background:
- Atherosclerosis (AS) is an inflammatory condition associated with endothelial dysfunction.
- Pyroptosis, a pro-inflammatory form of cell death, is increasingly recognized in AS pathogenesis.
- The role of pyroptosis in endothelial dysfunction and its molecular mechanisms in AS require further investigation.
Purpose of the Study:
- To investigate the anti-pyroptotic effects of melatonin in the context of atherosclerotic endothelium.
- To elucidate the molecular mechanisms underlying melatonin's protective actions against pyroptosis in AS.
Main Methods:
- Utilized a high-fat diet (HFD)-induced atherosclerosis model in ApoE-/- mice.
- Administered melatonin and assessed atherosclerotic plaque formation and pyroptosis-related gene expression in aortic endothelium.
- Investigated the effects of melatonin and lncRNA MEG3/miR-223 axis modulation on pyroptosis in ox-LDL-treated human aortic endothelial cells (HAECs).
Main Results:
- Melatonin treatment significantly reduced aortic atherosclerotic plaque in HFD-fed ApoE-/- mice.
- Melatonin attenuated the expression of key pyroptosis markers (NLRP3, ASC, cleaved caspase-1, GSDMD, IL-1β, IL-18) in the aortic endothelium.
- In HAECs, melatonin inhibited pyroptosis, an effect mediated by suppressing the lncRNA MEG3/miR-223/NLRP3 axis.
Conclusions:
- Melatonin exerts protective effects against endothelial cell pyroptosis in atherosclerosis.
- The mechanism involves the regulation of the lncRNA MEG3/miR-223/NLRP3 pathway.
- Melatonin represents a potential therapeutic strategy for AS by mitigating endothelial pyroptosis.
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