2015•MacromoleculesRequires access

Analysis of the Structure of Bombyx mori Silk Fibroin by NMR

Tetsuo Asakura, Keiko Okushita, Mike P. Williamson

Open publisher page 211 citations

Abstract

The past 15 years have seen a major increase in our understanding of the structure and dynamics of Bombyx mori silk fibroin, largely as a result of NMR studies. We now have a reasonably good idea of the structure before spinning (Silk I) and a good model for the crystalline regions after spinning (Silk II), though there are still some big outstanding questions. The details of the structures of Silk I and Silk II are the starting point for discussion of production of man-made silk fibroin, the origin of the strong silk fiber, and the mechanism of fiber formation in vivo .

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What this paper is about

The past 15 years have seen a major increase in our understanding of the structure and dynamics of Bombyx mori silk fibroin, largely as a result of NMR studies. We now have a reasonably good idea of the structure before spinning (Silk I) and a good model for the crystalline regions after spinning (Silk II), though there are still some big outstanding questions. The details of the structures of Silk I and Silk II are the starting point for discussion of production of man-made silk fibroin, the origin of the strong silk fiber, and the mechanism of fiber formation in vivo .

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OpenAlex reports 211 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The past 15 years have seen a major increase in our understanding of the structure and dynamics of Bombyx mori silk fibroin, largely as a result of NMR studies. We now have a reasonably good idea of the structure before spinning (Silk I) and a good model for the crystalline regions after spinning (Silk II), though there are still some big outstanding questions. The details of the structures of Silk I and Silk II are the starting point for discussion of production of man-made silk fibroin, the origin of the strong silk fiber, and the mechanism of fiber formation in vivo .

Key concepts: Fibroin, SILK, Bombyx mori, Polymer science, Spinning, Sericin, Fiber, Materials science

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