Strategies for Making High‐Performance Artificial Spider Silk Fibers

Author:

Schmuck Benjamin12ORCID,Greco Gabriele1ORCID,Pessatti Tomas Bohn1ORCID,Sonavane Sumalata1ORCID,Langwallner Viktoria1ORCID,Arndt Tina2ORCID,Rising Anna12ORCID

Affiliation:

1. Department of Anatomy, Physiology, and Biochemistry Swedish University of Agricultural Sciences Box 7011 Uppsala 75007 Sweden

2. Department of Biosciences and Nutrition Karolinska Institutet, Neo Huddinge 14186 Sweden

Abstract

AbstractArtificial spider silk is an attractive material for many technical applications since it is a biobased fiber that can be produced under ambient conditions but still outcompetes synthetic fibers (e.g., Kevlar) in terms of toughness. Industrial use of this material requires bulk‐scale production of recombinant spider silk proteins in heterologous host and replication of the pristine fiber's mechanical properties. High molecular weight spider silk proteins can be spun into fibers with impressive mechanical properties, but the production levels are too low to allow commercialization of the material. Small spider silk proteins, on the other hand, can be produced at yields that are compatible with industrial use, but the mechanical properties of such fibers need to be improved. Here, the literature on wet‐spinning of artificial spider silk fibers is summarized and analyzed with a focus on mechanical performance. Furthermore, several strategies for how to improve the properties of such fibers, including optimized protein composition, smarter spinning setups, innovative protein engineering, chemical and physical crosslinking as well as the incorporation of nanomaterials in composite fibers, are outlined and discussed.

Funder

Vetenskapsrådet

Svenska Forskningsrådet Formas

Wenner-Gren Stiftelserna

European Research Council

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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