» Articles » PMID: 32587663

(-)-Epicatechin Modulates Mitochondrial Redox in Vascular Cell Models of Oxidative Stress

Overview
Publisher Wiley
Date 2020 Jun 27
PMID 32587663
Citations 11
Authors
Affiliations
Soon will be listed here.
Abstract

Diabetes mellitus affects 451 million people worldwide, and people with diabetes are 3-5 times more likely to develop cardiovascular disease. In vascular tissue, mitochondrial function is important for vasoreactivity. Diabetes-mediated generation of excess reactive oxygen species (ROS) may contribute to vascular dysfunction via damage to mitochondria and regulation of endothelial nitric oxide synthase (eNOS). We have identified (-)-epicatechin (EPICAT), a plant compound and known vasodilator, as a potential therapy. We hypothesized that mitochondrial ROS in cells treated with antimycin A (AA, a compound targeting mitochondrial complex III) or high glucose (HG, global perturbation) could be normalized by EPICAT, and correlate with improved mitochondrial dynamics and cellular signaling. Human umbilical vein endothelial cells (HUVEC) were treated with HG, AA, and/or 0.1 or 1.0 M of EPICAT. Mitochondrial and cellular superoxide, mitochondrial respiration, and cellular signaling upstream of mitochondrial function were assessed. EPICAT at 1.0 M significantly attenuated mitochondrial superoxide in HG-treated cells. At 0.1 M, EPICAT nonsignificantly increased mitochondrial respiration, agreeing with previous reports. EPICAT significantly increased complex I expression in AA-treated cells, and 1.0 M EPICAT significantly decreased mitochondrial complex V expression in HG-treated cells. No significant effects were seen on either AMPK or eNOS expression. Our study suggests that EPICAT is useful in mitigating moderate ROS concentrations from a global perturbation and may modulate mitochondrial complex activity. Our data illustrate that EPICAT acts in the cell in a dose-dependent manner, demonstrating hormesis.

Citing Articles

Mechanisms of Flavonoids and Their Derivatives in Endothelial Dysfunction Induced by Oxidative Stress in Diabetes.

Dou B, Zhu Y, Sun M, Wang L, Tang Y, Tian S Molecules. 2024; 29(14).

PMID: 39064844 PMC: 11279171. DOI: 10.3390/molecules29143265.


Aquaporin-8 overexpression is involved in vascular structure and function changes in placentas of gestational diabetes mellitus patients.

Shan Y, Cui J, Kang X, Tang W, Lu Y, Gao Y Open Life Sci. 2022; 17(1):1473-1486.

PMID: 36448064 PMC: 9664169. DOI: 10.1515/biol-2022-0522.


(-)-Epicatechin Reverses Glucose Intolerance in Rats Housed at Thermoneutrality.

Chun J, Henckel M, Knaub L, Hull S, Pott G, Ramirez D Planta Med. 2022; 88(9-10):735-744.

PMID: 35777366 PMC: 9343939. DOI: 10.1055/a-1843-9855.


(-)-Epicatechin Reduces Neuroinflammation, Protects Mitochondria Function, and Prevents Cognitive Impairment in Sepsis-Associated Encephalopathy.

Ling J, Wu Y, Zou X, Chang Y, Li G, Fang M Oxid Med Cell Longev. 2022; 2022:2657713.

PMID: 35656027 PMC: 9155907. DOI: 10.1155/2022/2657713.


Effect of Dietary Phenolic Compounds on Incidence of Cardiovascular Disease in the SUN Project; 10 Years of Follow-Up.

Vazquez-Ruiz Z, Toledo E, Vitelli-Storelli F, Goni L, de la O V, Bes-Rastrollo M Antioxidants (Basel). 2022; 11(4).

PMID: 35453468 PMC: 9027220. DOI: 10.3390/antiox11040783.


References
1.
Bashan N, Kovsan J, Kachko I, Ovadia H, Rudich A . Positive and negative regulation of insulin signaling by reactive oxygen and nitrogen species. Physiol Rev. 2009; 89(1):27-71. DOI: 10.1152/physrev.00014.2008. View

2.
Nishikawa T, Edelstein D, Du X, Yamagishi S, Matsumura T, Kaneda Y . Normalizing mitochondrial superoxide production blocks three pathways of hyperglycaemic damage. Nature. 2000; 404(6779):787-90. DOI: 10.1038/35008121. View

3.
Chacko S, Cheluvappa R . Increased ceruloplasmin and fibrinogen in type 2 diabetes corresponds to decreased anti-oxidant activity in a preliminary tertiary South Indian hospital study. Exp Clin Endocrinol Diabetes. 2009; 118(1):64-7. DOI: 10.1055/s-0029-1225647. View

4.
Lonn E, Bosch J, Yusuf S, Sheridan P, Pogue J, Arnold J . Effects of long-term vitamin E supplementation on cardiovascular events and cancer: a randomized controlled trial. JAMA. 2005; 293(11):1338-47. DOI: 10.1001/jama.293.11.1338. View

5.
Youn J, Siu K, Lob H, Itani H, Harrison D, Cai H . Role of vascular oxidative stress in obesity and metabolic syndrome. Diabetes. 2014; 63(7):2344-55. PMC: 4066332. DOI: 10.2337/db13-0719. View