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Nanoscale|August 26, 2015
Quantification and modification of the equilibrium dynamics and mechanics of a viral capsid lattice self-assembled as a protein nanocoatingAlejandro Valbuena, Mauricio G MateuSub-Cellular Biochemistry|December 31, 2024
Engineering and Bio/Nanotechnological Applications of Virus ParticlesMauricio G Mateu, Alejandro ValbuenaBiophysical Journal|March 4, 2017
Kinetics of Surface-Driven Self-Assembly and Fatigue-Induced Disassembly of a Virus-Based NanocoatingAlejandro Valbuena, Mauricio G MateuBiophysical Journal|February 13, 2022
Antiviral compounds modulate elasticity, strength and material fatigue of a virus capsid frameworkSantos Domínguez-Zotes, Alejandro Valbuena, Mauricio G MateuNanoscale|January 6, 2018
Mechanical stiffening of human rhinovirus by cavity-filling antiviral drugsAlejandro Valbuena, Alicia Rodríguez-Huete, Mauricio G MateuNanoscale|May 2, 2019
Structural determinants of mechanical resistance against breakage of a virus-based protein nanoparticle at a resolution of single amino acidsMaría Medrano, Alejandro Valbuena, Alicia Rodríguez-Huete, et al.ACS Nano|July 8, 2020
Visualization of Single Molecules Building a Viral Capsid Protein Lattice through Stochastic PathwaysAlejandro Valbuena, Sourav Maity, Mauricio G Mateu, et al.Nanoscale|August 19, 2025
Engineering mechanical strength and resistance to fatigue of a nanostructured protein material through genetic removal of electrostatic repulsionsJudith Escrig, Juan Carlos Gil-Redondo, Alejandro Valbuena, et al.Journal of Virology|November 14, 2022
Molecular Determinants of Human Rhinovirus Infection, Assembly, and Conformational Stability at Capsid Protein InterfacesLuis Valiente, Silvia López-Argüello, Alicia Rodríguez-Huete, et al.Small (Weinheim an Der Bergstrasse, Germany)|January 21, 2022
A Genetically Engineered, Chain Mail-Like Nanostructured Protein Material with Increased Fatigue Resistance and Enhanced Self-HealingSantos Domínguez-Zotes, Miguel Angel Fuertes, Alicia Rodríguez-Huete, et al.Pageof 9