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				Hyperinnervation improves Xenopus laevis  limb regeneration.  , Mitogawa K, Makanae A, Satoh A ., Dev Biol. January 15, 2018; 433 (2): 276-286.                        
		 		 
	 		  
		
			
				
				
					
				
			
			
				
				Reactivation of larval keratin gene ( krt62.L) in  blastema  epithelium during Xenopus froglet  limb regeneration.  , Satoh A , Mitogawa K, Saito N, Suzuki M , Suzuki KT , Ochi H , Makanae A., Dev Biol. December 15, 2017; 432 (2): 265-272.                
		 		 
	 		  
		
			
				
					
				
				
			
			
				
				Skeletal callus formation is a  nerve-independent regenerative response to  limb amputation in mice and Xenopus.  , Miura S , Takahashi Y, Satoh A , Endo T., Regeneration (Oxf). August 26, 2015; 2 (4): 202-16.                  
		 		 
	 		  
		
			
				
				
					
				
			
			
				
				Regeneration inducers in  limb regeneration.  , Satoh A , Mitogawa K, Makanae A., Dev Growth Differ. August 1, 2015; 57 (6): 421-429.      
		 		 
	 		  
		
			
				
					
				
				
			
			
				
				Comparative Analysis of  Cartilage Marker Gene Expression Patterns during Axolotl and Xenopus  Limb Regeneration.  , Mitogawa K, Makanae A, Satoh A , Satoh A ., PLoS One. July 16, 2015; 10 (7): e0133375.                      
		 		 
	 		  
		
			
				
				
					
				
			
			
				
				Implication of two different regeneration systems in  limb regeneration.  , Makanae A, Mitogawa K, Satoh A ., Regeneration (Oxf). August 29, 2014; 1 (3): 1-9.                
		 		 
	 		  
		
			
				
					
				
				
			
			
				
				Ectopic  blastema induction by  nerve deviation and  skin wounding: a new regeneration model in Xenopus laevis.  , Mitogawa K, Hirata A, Moriyasu M, Makanae A, Miura S , Endo T, Satoh A ., Regeneration (Oxf). May 28, 2014; 1 (2): 26-36.                
		 		 
	 		  
		
			
				
				
					
				
			
			
				
				Activation of germline-specific genes is required for  limb regeneration in the Mexican axolotl.  , Zhu W, Pao GM, Satoh A , Cummings G, Monaghan JR, Harkins TT, Bryant SV, Randal Voss S, Gardiner DM, Hunter T., Dev Biol. October 1, 2012; 370 (1): 42-51.                    
		 		 
	 		  
		
			
				
					
				
				
			
			
				
				 Nerve signaling regulates basal  keratinocyte proliferation in the  blastema  apical epithelial cap in the axolotl (Ambystoma mexicanum). , Satoh A , Bryant SV, Gardiner DM., Dev Biol. June 15, 2012; 366 (2): 374-81.  
		 		 
	 		  
		
			
				
				
					
				
			
			
				
				Analysis of  hoxa11 and  hoxa13 expression during patternless  limb regeneration in Xenopus.  , Ohgo S, Itoh A, Suzuki M , Satoh A , Yokoyama H , Tamura K ., Dev Biol. February 15, 2010; 338 (2): 148-57.              
		 		 
	 		  
		
			
				
					
				
				
			
			
				
				Effects of activation of  hedgehog signaling on patterning, growth, and differentiation in Xenopus froglet  limb regeneration.  , Yakushiji N, Suzuki M , Satoh A , Ide H , Tamura K ., Dev Dyn. August 1, 2009; 238 (8): 1887-96.              
		 		 
	 		  
		
			
				
				
					
				
			
			
				
				 Mitf contributes to melanosome distribution and  melanophore dendricity. , Kawasaki A, Kumasaka M, Satoh A , Suzuki M , Tamura K , Goto T , Asashima M , Yamamoto H., Pigment Cell Melanoma Res. February 1, 2008; 21 (1): 56-62.  
		 		 
	 		  
		
			
				
					
				
				
			
			
				
				Correlation between  Shh expression and DNA methylation status of the  limb-specific  Shh enhancer region during  limb regeneration in amphibians.  , Yakushiji N, Suzuki M , Satoh A , Sagai T, Shiroishi T, Kobayashi H, Sasaki H, Ide H , Tamura K ., Dev Biol. December 1, 2007; 312 (1): 171-82.      
		 		 
	 		  
		
			
				
				
					
				
			
			
				
				Transgenic Xenopus with  prx1  limb enhancer reveals crucial contribution of MEK/ ERK and  PI3K/AKT pathways in  blastema formation during  limb regeneration.  , Suzuki M , Satoh A , Ide H , Tamura K ., Dev Biol. April 15, 2007; 304 (2): 675-86.                  
		 		 
	 		  
		
			
				
					
				
				
			
			
				
				Characterization of Xenopus digits and regenerated limbs of the froglet.  , Satoh A , Endo T, Abe M, Yakushiji N, Ohgo S, Tamura K , Ide H ., Dev Dyn. December 1, 2006; 235 (12): 3316-26.                  
		 		 
	 		  
		
			
				
				
					
				
			
			
				
				 Limb regeneration in Xenopus laevis froglet. , Suzuki M , Yakushiji N, Nakada Y, Satoh A , Ide H , Tamura K ., ScientificWorldJournal. May 12, 2006; 6 Suppl 1 26-37.            
		 		 
	 		  
		
			
				
					
				
				
			
			
				
				Analysis of  scleraxis and dermo-1 genes in a  regenerating  limb of Xenopus laevis.  , Satoh A , Nakada Y, Suzuki M , Tamura K , Ide H ., Dev Dyn. April 1, 2006; 235 (4): 1065-73.          
		 		 
	 		  
		
			
				
				
					
				
			
			
				
				Characteristics of initiation and early events for  muscle development in the Xenopus  limb bud.  , Satoh A , Sakamaki K, Ide H , Tamura K ., Dev Dyn. December 1, 2005; 234 (4): 846-57.                
		 		 
	 		  
		
			
				
					
				
				
			
			
				
				 Nerve-dependent and -independent events in  blastema formation during Xenopus froglet  limb regeneration. , Suzuki M , Satoh A , Ide H , Tamura K ., Dev Biol. October 1, 2005; 286 (1): 361-75.                  
		 		 
	 		  
		
			
				
				
					
				
			
			
				
				 Joint development in Xenopus laevis and induction of segmentations in regenerating froglet  limb ( spike). , Satoh A , Suzuki M , Amano T , Tamura K , Ide H ., Dev Dyn. August 1, 2005; 233 (4): 1444-53.                  
		 		 
	 		  
		
			
				
					
				
				
			
			
				
				 Muscle formation in regenerating Xenopus froglet  limb. , Satoh A , Ide H , Tamura K ., Dev Dyn. June 1, 2005; 233 (2): 337-46.