心脏毒性                        
                
                                
                        
                            自噬                        
                
                                
                        
                            安普克                        
                
                                
                        
                            药理学                        
                
                                
                        
                            细胞凋亡                        
                
                                
                        
                            阿霉素                        
                
                                
                        
                            PI3K/AKT/mTOR通路                        
                
                                
                        
                            癌症研究                        
                
                                
                        
                            化学                        
                
                                
                        
                            ULK1                        
                
                                
                        
                            医学                        
                
                                
                        
                            信号转导                        
                
                                
                        
                            蛋白激酶A                        
                
                                
                        
                            毒性                        
                
                                
                        
                            激酶                        
                
                                
                        
                            生物化学                        
                
                                
                        
                            内科学                        
                
                                
                        
                            化疗                        
                
                                
                        
                            有机化学                        
                
                        
                    
            作者
            
                Xiaoqi Li,Xin Wang,Binyu Wang,Wei-Qun Chi,Zhangyi Li,Min Zhang,Yifu Shen,Xu Liu,Youmei Lu,Yu Liu            
         
                    
            出处
            
                                    期刊:Phytomedicine
                                                         [Elsevier BV]
                                                        日期:2022-03-02
                                                        卷期号:99: 154027-154027
                                                        被引量:28
                                 
         
        
    
            
            标识
            
                                    DOI:10.1016/j.phymed.2022.154027
                                    
                                
                                 
         
        
                
            摘要
            
            Doxorubicin (DOX) is a highly effective broad-spectrum antitumor agent, but its clinical administration is limited by self-induced cardiotoxicity. Dihydromyricetin (DHM) is a flavonoid compound extracted from the Japanese raisin tree. Evidence that DHM has neovascular protective properties makes it a candidate for studying cardiotoxicity prevention strategy. However, it remains unknown if DHM can protect against cardiotoxicity caused by DOX. The present study was performed to evaluate the protective effect of DHM on DOX-induced cardiotoxicity in vivo and in vitro. C57BL/6 mice were intraperitoneally injected with DOX to construct cardiac injury model in vivo, and AC16 cells were exposed to DOX to induce cell injury in vitro. Left ventricular function of mice were detected by echocardiography, the apoptosis of mice cardiac tissue and AC16 cells were detected by TUNEL and Hoechst33342/PI double staining. The expression of apoptosis and autophagy related proteins were detected by western blotting, immunohistochemical staining and immunofluorescence staining. Echocardiographic results showed that DOX-induced cardiotoxicity were significantly alleviated by DHM pretreatment. DOX induced cardiotoxicity of mice by inhibiting AMPK activation, increasing apoptosis and decreasing autophagy. However, under the same conditions, the heart tissue of DHM-pretreated mice showed increased autophagy and decreased apoptosis via activation AMPK/mTOR pathway. The same results were observed in vitro, and it was also found that DHM can inhibit the production of intracellular ROS in vitro. DHM protects against cardiotoxicity by inhibiting apoptosis and oxidative stress and it can allevate theautophagy inhibition caused by DOX through AMPK/mTOR pathway. DHM preconditioning may be a breakthrough in protecting DOX-induced cardiotoxicity in the future clinical applications.
         
            
 
                 
                
                    
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