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																		 Connection
 
																		 Co-Authors
																		
																	 
																		This is a "connection" page, showing publications co-authored by   Luisa Mestroni   and   Brisa Pena Castellanos.    
																		
																	 
																			
																					
					
					
		
			
			
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					|  | Connection Strength |  |  
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					|  | 2.624 |  |  |  |  
		
		
			
				Pe?a B, Maldonado M, Bonham AJ, Aguado BA, Dominguez-Alfaro A, Laughter M, Rowland TJ, Bardill J, Farnsworth NL, Alegret Ramon N, Taylor MRG, Anseth KS, Prato M, Shandas R, McKinsey TA, Park D, Mestroni L. Gold Nanoparticle-Functionalized Reverse Thermal Gel for Tissue Engineering Applications. ACS Appl Mater Interfaces. 2019 May 22; 11(20):18671-18680.	
				
				
					Score: 0.638
				
				Pe?a B, Bosi S, Aguado BA, Borin D, Farnsworth NL, Dobrinskikh E, Rowland TJ, Martinelli V, Jeong M, Taylor MRG, Long CS, Shandas R, Sbaizero O, Prato M, Anseth KS, Park D, Mestroni L. Injectable Carbon Nanotube-Functionalized Reverse Thermal Gel Promotes Cardiomyocytes Survival and Maturation. ACS Appl Mater Interfaces. 2017 Sep 20; 9(37):31645-31656.	
				
				
					Score: 0.569
				
				Pe?a B, Martinelli V, Jeong M, Bosi S, Lapasin R, Taylor MR, Long CS, Shandas R, Park D, Mestroni L. Biomimetic Polymers for Cardiac Tissue Engineering. Biomacromolecules. 2016 05 09; 17(5):1593-601.	
				
				
					Score: 0.516
				
				Alegret N, Dominguez-Alfaro A, Mecerreyes D, Prato M, Mestroni L, Pe?a B. Neonatal rat ventricular myocytes interfacing conductive polymers and carbon nanotubes. Cell Biol Toxicol. 2023 08; 39(4):1627-1639.	
				
				
					Score: 0.201
				
				R Amin D, Sink E, Narayan SP, Abdel-Hafiz M, Mestroni L, Pe?a B. Nanomaterials for Cardiac Tissue Engineering. Molecules. 2020 Nov 07; 25(21).	
				
				
					Score: 0.177
				
				Martinelli V, Bosi S, Pe?a B, Baj G, Long CS, Sbaizero O, Giacca M, Prato M, Mestroni L. 3D Carbon-Nanotube-Based Composites for Cardiac Tissue Engineering. ACS Appl Bio Mater. 2018 Nov 19; 1(5):1530-1537.	
				
				
					Score: 0.154
				
				Pe?a B, Laughter M, Jett S, Rowland TJ, Taylor MRG, Mestroni L, Park D. Injectable Hydrogels for Cardiac Tissue Engineering. Macromol Biosci. 2018 06; 18(6):e1800079.	
				
				
					Score: 0.149
				
				Lachaize V, Pe?a B, Ciubotaru C, Cojoc D, Chen SN, Taylor MRG, Mestroni L, Sbaizero O. Compromised Biomechanical Properties, Cell-Cell Adhesion and Nanotubes Communication in Cardiac Fibroblasts Carrying the Lamin A/C D192G Mutation. Int J Mol Sci. 2021 Aug 25; 22(17).	
				
				
					Score: 0.047
				
				Travers JG, Wennersten SA, Pe?a B, Bagchi RA, Smith HE, Hirsch RA, Vanderlinden LA, Lin YH, Dobrinskikh E, Demos-Davies KM, Cavasin MA, Mestroni L, Steink?hler C, Lin CY, Houser SR, Woulfe KC, Lam MPY, McKinsey TA. HDAC Inhibition Reverses Preexisting Diastolic Dysfunction and Blocks Covert Extracellular Matrix Remodeling. Circulation. 2021 05 11; 143(19):1874-1890.	
				
				
					Score: 0.045
				
				Mueller AC, Piper M, Goodspeed A, Bhuvane S, Williams JS, Bhatia S, Phan AV, Van Court B, Zolman KL, Pe?a B, Oweida AJ, Zakem S, Meguid C, Knitz MW, Darragh L, Bickett TE, Gadwa J, Mestroni L, Taylor MRG, Jordan KR, Dempsey P, Lucia MS, McCarter MD, Del Chiaro M, Messersmith WA, Schulick RD, Goodman KA, Gough MJ, Greene CS, Costello JC, Neto AG, Lagares D, Hansen KC, Van Bokhoven A, Karam SD. Induction of ADAM10 by Radiation Therapy Drives Fibrosis, Resistance, and Epithelial-to-Mesenchyal Transition in Pancreatic Cancer. Cancer Res. 2021 06 15; 81(12):3255-3269.	
				
				
					Score: 0.045
				
				Borin D, Pe?a B, Chen SN, Long CS, Taylor MRG, Mestroni L, Sbaizero O. Altered microtubule structure, hemichannel localization and beating activity in cardiomyocytes expressing pathologic nuclear lamin A/C. Heliyon. 2020 Jan; 6(1):e03175.	
				
				
					Score: 0.042
				
				Borin D, Pe?a B, Taylor MRG, Mestroni L, Lapasin R, Sbaizero O. Viscoelastic behavior of cardiomyocytes carrying LMNA mutations. Biorheology. 2020; 57(1):1-14.	
				
				
					Score: 0.042
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																					       Connection Strength       
  The connection strength for concepts is the sum of the scores for each matching publication.    
 Publication scores are based on many factors, including how long ago they were written and whether the person is a first or senior author.
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