UIP-2019-04-7999Viruses are natural supramolecular nanostructures that form spontaneously by molecular self-assembly of complex biomolecules. Peptide self-assembly is a versatile tool that allows mimicking viruses by creating their simplified versions through the design of functional, supramolecular materials with modularity, tunability, and responsiveness to chemical and physical stimuli. The main challenge in the design and fabrication of peptide materials is related to the precise control between the peptide sequence and its resulting supramolecular morphology. We provide an overview of existing sequence patterns employed for the development of spherical and fibrillar peptide assemblies that can act as viral mimetics, offering the opport...
Self-assembly at the nanoscale is becoming increasingly important for the fabrication of novel supr...
Nanofibrous materials yielded by the self-assembly of peptides are rich in potential; particularly f...
A variety of chemical approaches for the rational design of artificial proteins and peptides have be...
Viruses are natural supramolecular nanostructures that form spontaneously by molecular self-assembly...
This feature article describes recent progress in synthetic strategies to construct viral capsid-lik...
Self-assembly of molecules can bring about disorder-to-order transition to give discrete structures ...
Self-assembling peptides form a prominent class of supramolecular materials with in general good bio...
Natural supramolecular assemblies exhibit unique structural and functional properties that have been...
Self-assembly is a ubiquitous process in biology where it plays numerous important roles and underli...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2016.Peptide self-assembly is oft...
Natural biomolecular systems have evolved to form a rich variety of supramolecular materials and mac...
This tutorial review looks at the design rules that allow peptides to be exploited as building block...
Item does not contain fulltextViruses are among the simplest biological systems and are highly effec...
Here we report on using small unnatural helical beta peptides to form higher order geometries. These...
Self-assembling peptides have gained increasing attention as versatile molecules to generate diverse...
Self-assembly at the nanoscale is becoming increasingly important for the fabrication of novel supr...
Nanofibrous materials yielded by the self-assembly of peptides are rich in potential; particularly f...
A variety of chemical approaches for the rational design of artificial proteins and peptides have be...
Viruses are natural supramolecular nanostructures that form spontaneously by molecular self-assembly...
This feature article describes recent progress in synthetic strategies to construct viral capsid-lik...
Self-assembly of molecules can bring about disorder-to-order transition to give discrete structures ...
Self-assembling peptides form a prominent class of supramolecular materials with in general good bio...
Natural supramolecular assemblies exhibit unique structural and functional properties that have been...
Self-assembly is a ubiquitous process in biology where it plays numerous important roles and underli...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2016.Peptide self-assembly is oft...
Natural biomolecular systems have evolved to form a rich variety of supramolecular materials and mac...
This tutorial review looks at the design rules that allow peptides to be exploited as building block...
Item does not contain fulltextViruses are among the simplest biological systems and are highly effec...
Here we report on using small unnatural helical beta peptides to form higher order geometries. These...
Self-assembling peptides have gained increasing attention as versatile molecules to generate diverse...
Self-assembly at the nanoscale is becoming increasingly important for the fabrication of novel supr...
Nanofibrous materials yielded by the self-assembly of peptides are rich in potential; particularly f...
A variety of chemical approaches for the rational design of artificial proteins and peptides have be...