Role of RISK signal pathway in reducing clenbuterol-induced cardiomycytes A/R injury of neonatal rat
	    		
		   		
		   			
		   		
	    	
    	 
    	10.3969/j.issn.1001-1978.2015.10.009
   		
        
        	
        		- VernacularTitle:RISK信号通路在β2-肾上腺素受体激动剂Clenbuterol减轻心肌细胞缺氧/复氧损伤中的作用
 
        	
        	
        	
        		- Author:
	        		
		        		
		        		
			        		Qiufang ZHANG
			        		
			        		;
		        		
		        		
		        		
			        		Yan TAN
			        		
			        		;
		        		
		        		
		        		
			        		Xuanbin WANG
			        		
			        		;
		        		
		        		
		        		
			        		Longrui PAN
			        		
			        		;
		        		
		        		
		        		
			        		Hongliang LI
			        		
			        		;
		        		
		        		
		        		
			        		Hui LIU
			        		
			        		;
		        		
		        		
		        		
			        		Jizhou XIANG
			        		
			        		;
		        		
		        		
		        		
			        		Qin FU
			        		
			        		
		        		
		        		
		        		
		        		
		        		
			        		
			        		
		        		
	        		
        		 
        	
        	
        	
        		- Publication Type:Journal Article
 
        	
        	
        		- Keywords:
        			
	        			
	        				
	        				
			        		
				        		clenbuterol;
			        		
			        		
			        		
				        		anoxia/reoxygenation;
			        		
			        		
			        		
				        		car-diomyocyte;
			        		
			        		
			        		
				        		phosphorylation extracellular signal-activa-ted kinase ( ERK );
			        		
			        		
			        		
				        		PI3 K;
			        		
			        		
			        		
				        		reperfusion injury salvage kinase( RISK)
			        		
			        		
	        			
        			
        		
 
        	
            
            
            	- From:
	            		
	            			Chinese Pharmacological Bulletin
	            		
	            		 2015;(10):1368-1374
	            	
            	
 
            
            
            	- CountryChina
 
            
            
            	- Language:Chinese
 
            
            
            	- 
		        	Abstract:
			       	
			       		
				        
				        	Aims To study the effects of clenbuterol on anoxia/reoxygenation( A/R) injury in neonatal Wistar rat cardiomyocytes and to explore whether its mecha-nism is related to reperfusion injury salvage kinase ( RISK) or not. Methods The cultured primary neo-natal cardiomyocytes were randomly divided into eight groups: ①normal culture group; ②anoxia/reoxygen-ation( A/R) group;③ clenbuterol ( 1 μmol · L-1 ) +A/R;④ICI118,551(10 μmol·L-1) + clenbuterol ( 1 μmol · L-1 ) + A/R; ⑤Metoprolol ( 10μmol · L-1 ) + clenbuterol(1μmol·L-1 ) + A/R group;⑥Metoprolol ( 10 μmol · L-1 ) + A/R group; ⑦PD98059 ( 20 μmol · L-1 ) + clenbuterol ( 1 μmol · L-1 ) + A/R group;⑧ LY294002(10 μmol·L-1 ) +clenbuterol(1 μmol · L-1 ) + A/R group. Cell via-bility was determined by the conventional MTT reduc-tion assay. The content of LDH in cultured medium was measured with colorimetry. Cardiomyocyte apopto-sis was determined by Hoechst33342 . Intracellular re-active species( ROS) were monitored by the fluorescent DCFH-DA. Total ERK2 and phosphorylated ERK were detected by western blot. Results Compared with A/R group, clenbuterol significantly increased vaibility of cells, reduced LDH release, lowered the rate of apop-tosis and ROS production. When addedβ2 receptor an-tagonist ICI118 , 551 , PI3 K inhibitor LY294002 and ERK inhibitor PD98059 , the effects of clenbuterol a-bove were inhibited; but β1 receptor antagonist Meto-prolol protected the cardiomyocytes from A/R injury, as evidenced by decreased LDH release and increased cell viability. There were no synergistic effects in the combined use of clenbuterol and Metoprolol. Conclu-sion clenbuterol exerts cardioprotective effects against A/R injury by inhibiting oxidative stress and apopto-sis. The protection of clenbuterol is inhibited by ICI118 , 551 , LY294002 and PD98059 . clenbuterol protects cardiomyocytes against A/R injury via RISK pathway by activation of β2 receptor.