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Silk-silk interactions between silkworm fibroin and recombinant spider silk fusion proteins enable construction of bioactive materials
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Efficient protein production inspired by how spiders make silk
Kronqvist, N., Sarr, M., Lindqvist, A., Nordling, K., Otikovs, M., Venturi, L., Pioselli, B., Purhonen, P., Landreh, M., Biverstål, H., Toleikis, Z., Sjöberg, L., Robinson, C.V., Pelizzi, N., Jörnvall, H., Hebert, H., Jaudzems, K., Curstedt, T., Rising, A., Johansson, J. (2017) Nature communications 8:15504 https://www.nature.com/articles/ncomms15504
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Ultrastrong and Bioactive Nanostructured Bio-Based Composites
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Self-assembly of recombinant silk as a strategy for chemical-free formation of bioactive coatings: a real-time study
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A fibronectin mimetic motif improves integrin mediated cell biding to recombinant spider silk matrices
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Genetic fusion of single-chain variable fragments to partial spider silk improves target detection in micro- and nanoarrays
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Silk matrices promote formation of insulin-secreting islet-like clusters
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Efficient passage of human pluripotent stem cells on spider silk matrices under xeno-free conditions
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Functionalized silk assembled from a recombinant spider silk fusion protein (Z-4RepCT) produced in the methylotrophic yeast Pichia pastoris
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Rational Design of Spider Silk Materials Genetically Fused with an Enzyme