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A Colorimetric Assay of Citrate Synthase Activity in Drosophila Melanogaster
Published on: January 16, 2020
Dietary Citrate Restores Age-Related Endothelial Cell Mitochondrial Dysfunction and Alleviates Atherosclerosis
Ya Zhao1, Jia-Yu Qiu1, Fang Wu1
1Aging and Vascular Diseases, Human Aging Research Institute (HARI) and School of Life Science, Nanchang University, and Jiangxi Province Key Laboratory of Aging and Disease, Nanchang, Jiangxi, China.
Insights
Dietary citrate delays vascular aging and improves cardiovascular health. This study shows citrate enhances mitochondrial function and activates AMPK pathways, offering potential for treating age-related vascular diseases.
Area of Science:
- Gerontology
- Cardiovascular Science
- Nutritional Science
Background:
- Vascular aging contributes to cardiovascular diseases like atherosclerosis and hypertension, major causes of mortality.
- Dietary citrate is known to extend lifespan in model organisms and improve memory, but its effects on vascular aging were unknown.
Purpose of the Study:
- To investigate the impact of dietary citrate supplementation on vascular aging and related diseases.
- To elucidate the underlying mechanisms of citrate's effects on vascular health and cellular aging.
Main Methods:
- Supplementation of citrate in aged and high-fat diet-fed ApoE-/- mice models.
- Assessment of vascular integrity, blood pressure, and atherosclerotic plaque characteristics.
- Analysis of cellular senescence markers, mitochondrial function, and AMPK pathway activation in endothelial cells.
Main Results:
- Citrate supplementation delayed vascular aging, preserving elastic fibers and reducing p21 levels.
- Improved endothelial-dependent vasodilation, lowered blood pressure, and reduced atherosclerotic plaque size and vulnerability.
- Decreased frailty, increased bone density, and enhanced physical performance in aged mice.
- Citrate delayed endothelial cell senescence, enhanced mitochondrial function, and activated AMPK pathways, effects abolished by AMPK inhibition or increased ROS.
Conclusions:
- Dietary citrate delays vascular aging and mitigates age-related vascular diseases by enhancing mitochondrial function through AMPK activation.
- Citrate demonstrates potential as a therapeutic agent for vascular aging and associated conditions.
Abstract:
Vascular aging increases the susceptibility to cardio-cerebrovascular conditions, such as atherosclerotic diseases and hypertension, the leading causes of global disability and mortality. Dietary citrate extends the lifespan of Drosophila melanogaster and Caenorhabditis elegans as well as improves the memory of mice injured by a high-fat diet (HFD); whether it alleviates vascular aging and age-related vascular diseases; however, remains unknown. Here, we showed that dietary supplementation of citrate delayed vascular aging, as evidenced by maintaining the integrity of elastic fibers and decreasing the level of the aging-related marker, CDKN1A (p21). Functionally, citrate improved the sensitivity to endothelial-dependent vasodilators and lowered blood pressure, and in HFD-fed ApoE-/- mice, it reduced the size of atherosclerotic plaques, decreased the necrotic core area and vulnerability index in aortic root plaques. Additionally, citrate decreased the frailty index, increased bone density, and improved maximal grip strength and balance speed in both aged and HFD-fed ApoE-/- mice. Mechanistically, we showed that citrate exposure delayed human umbilical vein endothelial cell senescence with a decreased percentage of cells stained with senescence-associated β-galactosidase and p21 levels. Moreover, citrate activated AMPK-related pathways and reversed senescence-related mitochondrial dysfunction in basal respiration, maximal respiration, and ATP production and reduced the production of reactive oxygen species (ROS). The citrate-promoted beneficial effects were abolished due to inactivated AMPK and the increased mitochondrial ROS. Thus, we demonstrate that dietary citrate delays vascular aging and alleviates age-related vascular diseases by improving mitochondrial function via activation of AMPK-related pathways. Citrate may have potential clinical implications for interventions against vascular aging and age-related vascular diseases.
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