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Published on: January 23, 2018
SIRT1 activation inhibits hyperglycemia-induced apoptosis by reducing oxidative stress and mitochondrial dysfunction
Shengqiang Wang1, Jian Wang1, Airong Zhao1
1Department of Cardiology, The 148th Central Hospital of The People's Liberation Army, Zibo, Shandong 255300, P.R. China.
Abstract:
Sustained hyperglycemic stimulation of vascular cells is involved in the pathogenesis of diabetes mellitus‑induced cardiovascular complications. Silent information regulator T1 (SIRT1), a mammalian sirtuin, has been previously recognized to protect endothelial cells against hyperglycemia‑induced oxidative stress. In the present study, human umbilical vein endothelial cells (HUV‑EC‑C) were treated with D‑glucose, and the levels of oxidative stress, mitochondrial dysfunction, the rate of apoptosis and SIRT1 activity were measured. The effect of manipulated SIRT1 activity on hyperglycemia‑induced oxidative stress, mitochondrial dysfunction and apoptosis was then assessed using the SIRT1 activator, resveratrol (RSV), and the SIRT1 inhibitor, sirtinol. The present study confirmed that hyperglycemia promotes oxidative stress and mitochondrial dysfunction in HUV‑EC‑C cells. The accumulation of reactive oxygen species, the swelling of mitochondria, the ratio of adenosine 5'‑diphosphate to adenosine 5'‑triphosphate and localized mitochondrial superoxide levels were all increased following D‑glucose treatment, whereas the mitochondrial membrane potential was significantly reduced by >50 mg/ml D‑glucose treatment. In addition, hyperglycemia was confirmed to induce apoptosis in HUV‑EC‑C cells. Furthermore, the results confirmed the prevention and aggravation of hyperglycemia‑induced apoptosis by RSV treatment and sirtinol treatment, via the amelioration and enhancement of oxidative stress and mitochondrial dysfunction in HUV‑EC‑C cells, respectively. In conclusion, the present study revealed that hyperglycemia promotes oxidative stress, mitochondrial dysfunction and apoptosis in HUV‑EC‑C cells, and manipulation of SIRT1 activity regulated hyperglycemia‑induced mitochondrial dysfunction and apoptosis in HUV‑EC‑C cells. The data revealed the protective effect of SIRT1 against hyperglycemia‑induced apoptosis via the alleviation of mitochondrial dysfunction and oxidative stress.
Insights
High blood sugar damages blood vessel cells, increasing heart risks in diabetes. Silent information regulator T1 (SIRT1) protects cells from this damage by reducing oxidative stress and improving mitochondrial function, preventing cell death.
Area of Science:
- Endocrinology
- Cardiovascular Biology
- Cellular Biology
Background:
- Diabetes mellitus contributes to cardiovascular complications through sustained hyperglycemic stimulation of vascular cells.
- Silent information regulator T1 (SIRT1) is a known protective factor for endothelial cells against hyperglycemia-induced oxidative stress.
Purpose of the Study:
- To investigate the impact of hyperglycemia on oxidative stress, mitochondrial dysfunction, and apoptosis in human umbilical vein endothelial cells (HUV-EC-C).
- To assess the role of Silent information regulator T1 (SIRT1) activity in modulating these hyperglycemia-induced cellular changes.
Main Methods:
- HUV-EC-C cells were exposed to D-glucose to simulate hyperglycemic conditions.
- Measurements included oxidative stress markers, mitochondrial dysfunction indicators (e.g., membrane potential, swelling), apoptosis rates, and SIRT1 activity.
- The effects of the SIRT1 activator resveratrol (RSV) and inhibitor sirtinol were evaluated.
Main Results:
- Hyperglycemia significantly increased oxidative stress, mitochondrial dysfunction (ROS accumulation, mitochondrial swelling, altered ATP ratio, reduced membrane potential), and apoptosis in HUV-EC-C cells.
- Resveratrol treatment ameliorated hyperglycemia-induced oxidative stress and mitochondrial dysfunction, thereby preventing apoptosis.
- Sirtinol treatment aggravated these cellular damages and enhanced apoptosis.
Conclusions:
- Hyperglycemia induces oxidative stress, mitochondrial dysfunction, and apoptosis in endothelial cells.
- Modulating SIRT1 activity influences hyperglycemia-induced mitochondrial dysfunction and apoptosis.
- SIRT1 activation demonstrates a protective effect against hyperglycemia-induced endothelial cell apoptosis by alleviating mitochondrial dysfunction and oxidative stress.
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