Elastin-like polypeptides adopt complex supramolecular structures, showing either a hydrophobic or a hydrophilic surface, depending on their surrounding environment and the supporting substrate. The preferred organization is important in many situations ranging from biocompatibility to bio-function. Here we compare the n-repeat pentamer LeuGlyGlyValGly (n = 7) with the analogue ValGlyGlyValGly (n = 5), as water suspensions and as deposits on silicon substrates. These sequences contain the repeat XxxGlyGlyZzzGly (Xxx, Zzz = Val, Leu) motif belonging to the hydrophobic glycine-rich domain of elastin and represent a simplified model from which to obtain information on molecular interactions functional to elastin itself. The compounds studied d...
*S Supporting Information ABSTRACT: Elastin-like polypeptides (ELPs) are a class of biopolymers cons...
We have constructed a novel class of “double-hydrophobic” block polypeptides based on the hydrophobi...
Morphologically elastic fibers can be described as a fine fibrillar coating of a large amorphous cor...
Elastin-like polypeptides adopt complex supramolecular structures, showing either a hydrophobic or a...
Previous work on elastin-like polypeptides (ELPs) made of hydrophobic amino acids of the type XxxGly...
Elastin is a cross-linked protein, whose soluble precursor is tropoelastin, responsible for resilien...
Understanding the basic mechanisms and dynamics that drive the assembly of molecules into functional...
Previous studies have revealed the propensity of elastin-based biopolymers to form amyloid-like fibe...
Elastin is the protein responsible for the elastic recoil of skin, arteries, and lungs. In order to ...
Elastin fibrillogenesis is conditioned by multiple self-assembly processes. Previous studies have ev...
Elastin and elastin-related peptides have great potential in the biomaterial field, because of their...
SummaryElastin provides extensible tissues, including arteries and skin, with the propensity for ela...
The ultrastructure of elastin has been extensively analyzed by different methodologies. Starting fro...
Elastin is known to self-aggregate in twisted-rope filaments. However, an ultrastructural organizati...
*S Supporting Information ABSTRACT: Elastin-like polypeptides (ELPs) are a class of biopolymers cons...
We have constructed a novel class of “double-hydrophobic” block polypeptides based on the hydrophobi...
Morphologically elastic fibers can be described as a fine fibrillar coating of a large amorphous cor...
Elastin-like polypeptides adopt complex supramolecular structures, showing either a hydrophobic or a...
Previous work on elastin-like polypeptides (ELPs) made of hydrophobic amino acids of the type XxxGly...
Elastin is a cross-linked protein, whose soluble precursor is tropoelastin, responsible for resilien...
Understanding the basic mechanisms and dynamics that drive the assembly of molecules into functional...
Previous studies have revealed the propensity of elastin-based biopolymers to form amyloid-like fibe...
Elastin is the protein responsible for the elastic recoil of skin, arteries, and lungs. In order to ...
Elastin fibrillogenesis is conditioned by multiple self-assembly processes. Previous studies have ev...
Elastin and elastin-related peptides have great potential in the biomaterial field, because of their...
SummaryElastin provides extensible tissues, including arteries and skin, with the propensity for ela...
The ultrastructure of elastin has been extensively analyzed by different methodologies. Starting fro...
Elastin is known to self-aggregate in twisted-rope filaments. However, an ultrastructural organizati...
*S Supporting Information ABSTRACT: Elastin-like polypeptides (ELPs) are a class of biopolymers cons...
We have constructed a novel class of “double-hydrophobic” block polypeptides based on the hydrophobi...
Morphologically elastic fibers can be described as a fine fibrillar coating of a large amorphous cor...