- 
                                        
miR-210 Regulates Autophagy Through the AMPK/mTOR Signaling Pathway, Reduces Neuronal Cell Death and Inflammatory Responses, and Enhances Functional Recovery Following Cerebral Hemorrhage in Mice
                                        
                                            
                                                Journal: NEUROCHEMICAL RESEARCH
                                                 引用产品:anti-β-actin antibody(AP0731)
                                                  
                                            
                                            
                                                ApplicationWB
                                                IF3.8
                                                
                                                SpeciesMouse
                                                
                                             
                                         
                                     
                                
                                    - 
                                        
miR-210 Regulates Autophagy Through the AMPK/mTOR Signaling Pathway, Reduces Neuronal Cell Death and Inflammatory Responses, and Enhances Functional Recovery Following Cerebral Hemorrhage in Mice
                                        
                                            
                                                Journal: NEUROCHEMICAL RESEARCH
                                                 引用产品:anti-β-actin antibody(MB62605)
                                                  
                                            
                                            
                                                ApplicationWB
                                                IF3.8
                                                
                                                SpeciesMouse
                                                
                                             
                                         
                                     
                                
                                    - 
                                        
Roflumilast inhibits neuronal ferroptosis via AMPK/Nrf2/HO-1 signaling and promotes motor function recovery after spinal cord injury in rats
                                        
                                            
                                                Journal: CELLULAR SIGNALLING
                                                 引用产品:Goat Anti-Rabbit IgG (H+L) HRP secondary antibody(BS13278)
                                                  
                                            
                                            
                                                ApplicationWB
                                                IF3.7
                                                
                                                SpeciesRat
                                                
                                             
                                         
                                     
                                
                                    - 
                                        
GALNT4 promotes the stemness of non-small cell lung cancer through O-glycosylation of MUC5AC via ITGB4/PI3K/AKT signaling pathway
                                        
                                            
                                                Journal: CELLULAR SIGNALLING
                                                 引用产品:anti-p-PI3K antibody(BS4605)
                                                  
                                            
                                            
                                                ApplicationWB
                                                IF3.7
                                                
                                                SpeciesHuman
                                                
                                             
                                         
                                     
                                
                                    - 
                                        
GALNT4 promotes the stemness of non-small cell lung cancer through O-glycosylation of MUC5AC via ITGB4/PI3K/AKT signaling pathway
                                        
                                            
                                                Journal: CELLULAR SIGNALLING
                                                 引用产品:anti-Cyclin D1 antibody(BS1741)
                                                  
                                            
                                            
                                                ApplicationWB
                                                IF3.7
                                                
                                                SpeciesHuman
                                                
                                             
                                         
                                     
                                
                                    - 
                                        
GALNT4 promotes the stemness of non-small cell lung cancer through O-glycosylation of MUC5AC via ITGB4/PI3K/AKT signaling pathway
                                        
                                            
                                                Journal: CELLULAR SIGNALLING
                                                 引用产品:anti-KLF5 antibody(BS78410)
                                                  
                                            
                                            
                                                ApplicationWB
                                                IF3.7
                                                
                                                SpeciesHuman
                                                
                                             
                                         
                                     
                                
                                    - 
                                        
GALNT4 promotes the stemness of non-small cell lung cancer through O-glycosylation of MUC5AC via ITGB4/PI3K/AKT signaling pathway
                                        
                                            
                                                Journal: CELLULAR SIGNALLING
                                                 引用产品:anti-P300 antibody(BS46037)
                                                  
                                            
                                            
                                                ApplicationWB
                                                IF3.7
                                                
                                                SpeciesHuman
                                                
                                             
                                         
                                     
                                
                                    - 
                                        
lnc-MTRNR2L12-3 derived from hypoxic breast cancer cell exosomes facilitates angiogenesis via the Src/FAK signaling pathway
                                        
                                            
                                                Journal: MEDICAL ONCOLOGY
                                                 引用产品:rabbit anti-HIF-1α antibody(BS3514)
                                                  
                                            
                                            
                                                ApplicationWB
                                                IF3.5
                                                
                                                SpeciesHuman
                                                
                                             
                                         
                                     
                                
                                    - 
                                        
A novel variant in the MAP3K1 genomic locus reveals abnormal cell apoptosis as a potential pathogenic mechanism in 46, XY disorders of sex development
                                        
                                            
                                                Journal: Molecular Medicine Reports
                                                 引用产品:HRP-conjugated goat anti-rabbit IgG antibody(BS22357)
                                                  
                                            
                                            
                                                ApplicationWB
                                                IF3.5
                                                
                                                SpeciesHuman
                                                
                                             
                                         
                                     
                                
                                    - 
                                        
A novel variant in the MAP3K1 genomic locus reveals abnormal cell apoptosis as a potential pathogenic mechanism in 46, XY disorders of sex development
                                        
                                            
                                                Journal: Molecular Medicine Reports
                                                 引用产品:HRP-conjugated goat anti-mouse IgG antibody(BS22356)
                                                  
                                            
                                            
                                                ApplicationWB
                                                IF3.5
                                                
                                                SpeciesHuman