Major ampullate silk fibers of orb web-weaving spiders have impressive mechanical properties due to the fact that the underlying proteins partially fold into helical/amorphous structures, yielding relatively elastic matrices that are toughened by anisotropic nanoparticulate inclusions (formed from stacks of beta-sheets of the same proteins). In vivo the transition from soluble protein to solid fibers involves a combination of chemical and mechanical stimuli (such as ion exchange, extraction of water and shear forces). Here we elucidate the effects of such stimuli on the in vitro aggregation of engineered and recombinantly produced major ampullate silk-like proteins (focusing on structure-function relationships with respect to their primary ...
Spiders and silkworms spin silks that outcompete the toughness of all natural and manmade fibers. He...
As a promising biomaterial with numerous potential applications, various types of synthetic spider s...
Spider silk rivals the best synthetic materials in terms of strength and toughness. It is widely acc...
Spider silks are desirable biomaterials characterized by high tensile strength, elasticity, and bioc...
Spider silks are desirable biomaterials characterized by high tensile strength, elasticity, and bioc...
Variability in spider major ampullate (MA) silk properties at different scales has proven difficult ...
Spider dragline silk shows the highest toughness in comparison to all other known natural or man-mad...
Spider silk is an ideal material in material engineering and biomedical areas. Its remarkable streng...
A huge variety of proteins are able to form fibrillar structures, especially at high protein concent...
Spider silks are biological protein polymers which are spun into fibers with an incredibly diverse r...
Compared to silkworm silks, spider silks (SS) are considered stronger, most elastic, and tougher bio...
Due to certain characteristics of spider silk, such as high elasticity and tensile strength, researc...
Spider major ampullate (MA) silk is sought after as a biomimetic because of its high strength and ex...
Phenotypic variation facilitates adaptations to novel environments. Silk is an example of a highly v...
Spider silk from the female black widow spider, Latrodectus hesperus, is made of extraordinary biomo...
Spiders and silkworms spin silks that outcompete the toughness of all natural and manmade fibers. He...
As a promising biomaterial with numerous potential applications, various types of synthetic spider s...
Spider silk rivals the best synthetic materials in terms of strength and toughness. It is widely acc...
Spider silks are desirable biomaterials characterized by high tensile strength, elasticity, and bioc...
Spider silks are desirable biomaterials characterized by high tensile strength, elasticity, and bioc...
Variability in spider major ampullate (MA) silk properties at different scales has proven difficult ...
Spider dragline silk shows the highest toughness in comparison to all other known natural or man-mad...
Spider silk is an ideal material in material engineering and biomedical areas. Its remarkable streng...
A huge variety of proteins are able to form fibrillar structures, especially at high protein concent...
Spider silks are biological protein polymers which are spun into fibers with an incredibly diverse r...
Compared to silkworm silks, spider silks (SS) are considered stronger, most elastic, and tougher bio...
Due to certain characteristics of spider silk, such as high elasticity and tensile strength, researc...
Spider major ampullate (MA) silk is sought after as a biomimetic because of its high strength and ex...
Phenotypic variation facilitates adaptations to novel environments. Silk is an example of a highly v...
Spider silk from the female black widow spider, Latrodectus hesperus, is made of extraordinary biomo...
Spiders and silkworms spin silks that outcompete the toughness of all natural and manmade fibers. He...
As a promising biomaterial with numerous potential applications, various types of synthetic spider s...
Spider silk rivals the best synthetic materials in terms of strength and toughness. It is widely acc...