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Published on: May 31, 2016
The Ameliorative Effect of Berberine on Vascular Calcification by Inhibiting Endoplasmic Reticulum Stress
Liuying Li1, Gang Zheng2, Chengjian Cao3
1Heart Disease of Traditional Chinese Medicine.
Insights
Berberine effectively treats vascular calcification (VC) by activating Akt signaling and reducing endoplasmic reticulum stress (ERS). This natural compound shows promise for preventing and treating cardiovascular events linked to VC.
Area of Science:
- Biochemistry
- Pharmacology
- Cardiovascular Research
Background:
- Vascular calcification (VC) is a significant risk factor for cardiovascular events.
- Currently, no effective treatments or preventative measures exist for VC.
Purpose of the Study:
- To investigate the potential of berberine in ameliorating VC.
- To explore the underlying mechanisms involving Akt signaling activation and endoplasmic reticulum stress (ERS) inhibition.
Main Methods:
- VC models were induced in rats (Vitamin D3) and primary rat vascular smooth muscle cells (beta-glycerophosphate).
- Evaluated calcium content, alkaline phosphatase activity, ERS markers (GRP78, CHOP), and Akt signaling pathway components (p-Akt, p-GSK3β).
- Utilized ERS activator (tunicamycin) and inhibitors (Inhibitor IV, 4-phenylbutyric acid) to probe mechanisms.
Main Results:
- Berberine significantly ameliorated VC in vivo and in vitro.
- Berberine treatment inhibited ERS and activated the Akt/GSK3 signaling pathway.
- ERS activation blocked berberine's effect on VC, while ERS inhibition restored it, confirming the role of ERS.
Conclusions:
- Berberine demonstrates a significant ameliorative effect on vascular calcification.
- This effect is mediated through the activation of the Akt signaling pathway and the inhibition of endoplasmic reticulum stress.
- Berberine represents a potential new therapeutic candidate for preventing and treating vascular calcification.
Abstract:
Vascular calcification (VC), which currently cannot be prevented or treated, is an independent risk factor for cardiovascular events. We aimed to investigate the ameliorative effect of berberine on VC via the activation of Akt signaling and inhibition of endoplasmic reticulum stress (ERS). The VC model was induced by high-dose Vitamin D 3 in rats and beta-glycerophosphate in primary vascular smooth muscle cells of rat aortas, which were evaluated by Alizarin red staining to determine the calcium content and alkaline phosphatase activity. ERS was determined by the levels of GRP78 and CHOP, whereas that of the Akt signaling pathway was determined by the levels of phosphorylated Akt and GSK3β. VC was significantly ameliorated by berberine treatment in vivo and in vitro, and the inhibition of ERS and the activation of the Akt/GSK3 signaling pathway. In the vascular smooth muscle cells of primary rats, tunicamycin, an ERS activator, blocked the ameliorative effect of berberine on VC and ERS, but not the activation of Akt/GSK3. The ameliorative effects of berberine on VC, ERS, and the Akt signaling pathway were all prevented by inhibitor IV. Four-phenylbutyric acid, an ERS inhibitor, can restore the ameliorative effect of berberine on VC and ERS that was blocked by inhibitor IV. Our results are the first to demonstrate the ameliorative effect of VC that was mediated by the activation of the Akt signaling pathway and inhibition of ERS. These results may provide a new pharmaceutical candidate for the prevention and treatment of VC.
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