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The spider silk has a greater tensile strength than steel, and the material is even strong enough to stop a bullet. In terms of everyday usage, spider silk could be a huge game changer when it ...
Spider silk structure: crystalline beta-sheets separated by amorphous linkages. Silks have a hierarchical structure. The primary structure is the amino acid sequence of its proteins (), mainly consisting of highly repetitive glycine and alanine blocks, [4] [5] which is why silks are often referred to as a block co-polymer.
Kim Kraig Thompson, a retired lawyer, invented the protein expression platform in 2002, which would become the basis for Kraig Lab's work with spider silk. [3] He founded Kraig Biocraft Laboratories in April 2006 to develop and commercialize spider silks and other high-performance polymers gene and sequences using platform technology in combination with genetic engineering concepts.
Spider web strands have been used for crosshairs or reticles in telescopes. [28] Development of technologies to mass-produce spider silk has led to the manufacturing of prototype military protection, wound dressings and other medical devices, and consumer goods. [29] [30] [31] Spider webs can be used as a single step catalyst to make ...
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After working as a postdoctoral researcher at the University of Wyoming (1996-2001), [3] Hayashi was a professor at UC Riverside from 2001 to the end of 2016. [2]Her UC Riverside laboratory's work characterized spiders in the spidroin gene family, including how silk is encoded and studying the basis of molecular diversity in spiders.
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