Atherosclerosis (AS) is a systemic disease associated with lipid metabolic disorders and abnormal proliferation of smooth muscle cells. Baicalin is a flavonoid compound isolated from the dry roots of Scutellaria baicalensis Georgi and exerts antiâproliferative effects in various types of cells. However, the effect of baicalin on AS remains unclear. In the present study, serum samples were collected from patients with AS and an in vitro model of AS was established using oxidized lowâdensity lipoprotein (oxâLDL)âtreated human aorta vascular smooth muscle cells (HAâVSMCs). The siRNA transfection and overexpression efficiency of endogenous maternally expressed gene 3 (MEG3) and the expression level of MEG3 were analyzed by reverse transcriptionâquantitative polymerase chain reaction (RTâqPCR). The effects of alterations in expression levels of MEG3 were assessed by MTT assay, bromodeoxyuridine incorporation assay, 5âethynylâ2'âdeoxyuridine staining, wound healing assay, immunofluorescence and western blotting in HAâVSMCs. qPCR indicated that the expression of MEG3 was reduced in serum samples from patients with AS and oxâLDLâtreated HAâVSMCs, compared with serum samples from healthy patients and untreated HAâVSMCs, respectively. Further experiments indicated that oxâLDLâinduced decrease of MEG3 expression was reversed by treatment with baicalin in a concentrationâdependent manner. Following treatment with oxâLDL, decreased expression of MEG3 promoted proliferation and migration, and suppressed apoptosis in HAâVSMCs. Furthermore, treatment with baicalin reversed these effects on proliferation and apoptosis in oxâLDLâtreated HAâVSMCs. The current study indicated that downregulated expression of MEG3 increased cell cycleâassociated protein expression. However, treatment with baicalin inhibited the expression of cellâcycle associated proteins in HAâVSMCs with MEG3 knockdown. In addition, baicalin activated the p53 signaling pathway and promoted the expression and transport of p53 from the cytoplasm to nucleus following MEG3 knockdown in oxâLDLâtreated HAâVSMCs. Baicalin inhibited proliferation and promoted apoptosis by regulating the expression of MEG3/p53, indicating that baicalin may serve a role in AS by activating the MEG3/p53 signaling pathway. The present study suggested a potential mechanism underlying the protective role of baicalin in the in vitro model of AS, and these results may be used to develop novel therapeutic approaches for the affected patients.
Baicalin inhibits proliferation and promotes apoptosis of vascular smooth muscle cells by regulating the MEG3/p53 pathway following treatment with oxâLDL.
黄芩苷通过调节MEG3/p53通路抑制血管平滑肌细胞增殖并促进其凋亡,该通路在ox-LDL处理后发挥作用
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作者:Liu Yun, Jia Lianqun, Min Dongyu, Xu Yi, Zhu Jinquan, Sun Zengxian
| 期刊: | International Journal of Molecular Medicine | 影响因子: | 5.800 |
| 时间: | 2019 | 起止号: | 2019 Feb;43(2):901-913 |
| doi: | 10.3892/ijmm.2018.4009 | 靶点: | P53 |
| 研究方向: | 细胞生物学 | 信号通路: | Apoptosis |
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