Spiders spin a wide variety of different silk types with different biological functions that are known for their extraordinary mechanical properties. Dragline silk has predominantly captured the interest of researchers because it exhibits high tensile strength and toughness while maintaining its elasticity. This thesis has focused on the characterization of a family of small molecular weight proteins recently discovered in dragline silk. These proteins were discovered in the western black widow spider, Latrodectus hesperus, and have been termed Cysteine-Rich Proteins (CRPs) due to their high conserved cysteine content. CRP family members were used in protein-protein interaction studies to determine if there is any interaction with the m...
Silks from araneoid spiders have become an active area of research for material scientists, biochemi...
The properties of native spider silk vary within and across species due to the presence of different...
Spider silk represents an outstanding biomaterial spun from protein. It can outperform a large numbe...
Spiders spin a wide variety of different silk types with different biological functions that are kno...
Spiders are capable of producing a variety of silk types, each with their own unique protein composi...
Spiders produce a diverse number of silk proteins that are well-known for their extraordinary mechan...
Spider dragline silk is a biomaterial with outstanding material properties, possessing high-tensile ...
Spider silks are protein-based fibers that possess remarkable mechanical properties. Major ampullate...
Spider silk displays a unique balance of high tensile strength and extensibility, making it one of t...
The outstanding material properties of spider dragline silk fibers have been attributed to two spidr...
The outstanding material properties of spider dragline silk fibers have been attributed to two spidr...
Belonging to the diverse order Araneae, the black widow spider Latrodectus 4 hesperus produces high-...
Spider silk in Lactrodectus hesperus (black widow spider) species is renowned for its tensile streng...
Modern society recognizes that spider silk has a greater toughness than Kevlar, which has induced ma...
Spider silk has been of a high interest to scientists due to its unique and diverse mechanical prope...
Silks from araneoid spiders have become an active area of research for material scientists, biochemi...
The properties of native spider silk vary within and across species due to the presence of different...
Spider silk represents an outstanding biomaterial spun from protein. It can outperform a large numbe...
Spiders spin a wide variety of different silk types with different biological functions that are kno...
Spiders are capable of producing a variety of silk types, each with their own unique protein composi...
Spiders produce a diverse number of silk proteins that are well-known for their extraordinary mechan...
Spider dragline silk is a biomaterial with outstanding material properties, possessing high-tensile ...
Spider silks are protein-based fibers that possess remarkable mechanical properties. Major ampullate...
Spider silk displays a unique balance of high tensile strength and extensibility, making it one of t...
The outstanding material properties of spider dragline silk fibers have been attributed to two spidr...
The outstanding material properties of spider dragline silk fibers have been attributed to two spidr...
Belonging to the diverse order Araneae, the black widow spider Latrodectus 4 hesperus produces high-...
Spider silk in Lactrodectus hesperus (black widow spider) species is renowned for its tensile streng...
Modern society recognizes that spider silk has a greater toughness than Kevlar, which has induced ma...
Spider silk has been of a high interest to scientists due to its unique and diverse mechanical prope...
Silks from araneoid spiders have become an active area of research for material scientists, biochemi...
The properties of native spider silk vary within and across species due to the presence of different...
Spider silk represents an outstanding biomaterial spun from protein. It can outperform a large numbe...