4.7 Article

Protective Role of Short-Chain Fatty Acids against Ang- II-Induced Mitochondrial Dysfunction in Brain Endothelial Cells: A Potential Role of Heme Oxygenase 2

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ANTIOXIDANTS
卷 12, 期 1, 页码 -

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MDPI
DOI: 10.3390/antiox12010160

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mitochondrial dysfunction; heme oxygenase 2; SCFAs; brain endothelial cells

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In this study, the in vitro effect of short-chain fatty acids (SCFAs) on cerebrovascular endothelial cells and mitochondrial function after angiotensin II (Ang-II) treatment was investigated. The results showed that SCFAs restored the oxidative damage induced by Ang-II and exerted their beneficial effects through heme oxygenase 2 (HO-2). These findings provide new insights into the effect of the SCFAs/HO-2 axis on cerebrovascular diseases induced by hypertension and obesity.
Objectives: Short-chain fatty acids (SCFAs), the main metabolites released from the gut microbiota, are altered during hypertension and obesity. SCFAs play a beneficial role in the cardiovascular system. However, the effect of SCFAs on cerebrovascular endothelial cells is yet to be uncovered. In this study, we use brain endothelial cells to investigate the in vitro effect of SCFAs on heme oxygenase 2 (HO-2) and mitochondrial function after angiotensin II (Ang-II) treatment. Methods: Brain human microvascular endothelial cells were treated with Ang-II (500 nM for 24 h) in the presence and absence of an SCFAs cocktail (1 mu M; acetate, propionate, and butyrate) and/or HO-2 inhibitor (SnPP 5 mu M). At the end of the treatment, HO-2, endothelial markers (p-eNOS and NO production), inflammatory markers (TNF alpha, NF kappa B-p50, and -p65), calcium homeostasis, mitochondrial membrane potential, mitochondrial ROS and H2O2, and mitochondrial respiration were determined in all groups of treated cells. Key Results: Our data showed that SCFAs rescued HO-2 after Ang-II treatment. Additionally, SCFAs rescued Ang-II-induced eNOS reduction and mitochondrial membrane potential impairment and mitochondrial respiration damage. On the other hand, SCFAs reduced Ang-II-induced inflammation, calcium dysregulation, mitochondrial ROS, and H2O2. All of the beneficial effects of SCFAs on endothelial cells and mitochondrial function occurred through HO-2. Conclusions: SCFAs treatment restored endothelial cells and mitochondrial function following Ang-II-induced oxidative stress. SCFAs exert these beneficial effects by acting on HO-2. Our results are opening the door for more studies to investigate the effect the of SCFAs/HO-2 axis on hypertension and obesity-induced cerebrovascular diseases.

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