JOURNAL ARTICLE

Lithium-free processing of silk fibroin

Zhaozhu ZhengShaozhe GuoYawen LiuJianbing WuGang LiMeng LiuXiaoqin WangDavid L. Kaplan

Year: 2016 Journal:   Journal of Biomaterials Applications Vol: 31 (3)Pages: 450-463   Publisher: SAGE Publishing

Abstract

Silk fibroin protein was purified from Bombyx mori silkworm cocoons using a novel dialysis strategy to avoid fibroin aggregation and pre-mature formation of β-sheets. The degummed silk fibers were dissolved in Ajisawa’s reagent, a mixture of CaCl 2 –EtOH–H 2 O, that is less expensive than lithium bromide. The dissolved solutions were dialyzed against either water or urea solution with a stepwise decrease in concentration. When the steps of 4 M-2 M-1 M-0 M urea (referred to as silk-TS-4210) were adopted, the purified silk fibroin had smaller aggregates (<10 nm), similar average molecular weight (225 kDa) and a lower content of β-sheet (∼15%) compared to the sample processing methods (silk-TS-210, 10, 0) studied here. This outcome was close to the fibroin purified by the lithium bromide (silk-Li-0) method. Polyvinyl alcohol-emulsified silk microspheres generated using the purified solution had a similar size distribution and morphology when compared to lithium bromide dissolved solutions, while glycerol-blended silk films showed different mechanical properties. The silk-Li-0 generated films with the highest breaking strength (5.7 MPa ± 0.3) while the silk-TS-4210 had the highest extension at break (215.1% ± 12.5). The films prepared from silk-TS-4210 were cytocompatible to support the adhesion and proliferation of human mesenchymal stem cells, with improvements compared to the other samples likely due to the porous morphology of these films.

Keywords:
Fibroin SILK Bombyx mori Sericin Polymer chemistry Urea Lithium bromide Materials science Polyvinyl alcohol Chemical engineering Chemistry Lithium (medication) Polyurethane Nuclear chemistry Composite material Biochemistry Biology

Metrics

43
Cited By
0.80
FWCI (Field Weighted Citation Impact)
34
Refs
0.76
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Silk-based biomaterials and applications
Physical Sciences →  Materials Science →  Biomaterials
Electrospun Nanofibers in Biomedical Applications
Physical Sciences →  Materials Science →  Biomaterials
Silkworms and Sericulture Research
Life Sciences →  Agricultural and Biological Sciences →  Insect Science

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