4.7 Article

Structural evolution of photocrosslinked silk fibroin and silk fibroin-based Chocks hybrid hydrogels: A small angle and ultra-small angle scattering investigation

Journal

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES
Volume 114, Issue -, Pages 998-1007

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.ijbiomac.2018.03.044

Keywords

Silk fibroin; Rec1-resilin; Poly(N-vinylcaprolactam); Hybrid hydrogel; Small-angle scattering; Hierarchical structure

Funding

  1. Australian Research Council (ARC) [DP160101267, DP120103537]
  2. ANSTO [P3550]

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Regenerated Bombyx mori silk fibroin (RSF) is a widely recognized protein for biomedical applications; however, its hierarchical gel structure is poorly understood. In this paper, the hierarchical structure of photocrosslinked RSF and RSF-based hybrid hydrogel systems: (i) RSF/Recl-resilin and (ii) RSF/poly(N-vinylcaprolactam (PVCL) is reported for the first time using small-angle scattering (SAS) techniques. The structure of RSF in dilute to concentrated solution to fabricated hydrogels were characterized using small angle X-ray scattering (SAXS), small angle neutron scattering (SANS) and ultra-small angle neutron scattering (USANS) techniques. The RSF hydrogel exhibited three distinctive structural characteristics: (i) a Porod region in the length scale of 2 to 3 nm due to hydrophobic domains (containing 13-sheets) which exhibits sharp interfaces with the amorphous matrix of the hydrogel and the solvent, (ii) a Guinier region in the length scale of 4 to 20 nm due to hydrophilic domains (containing turns and random coil), and (iii) a Porod-like region in the length scale of few micrometers due to water pores/channels exhibiting fractal-like characteristics. Addition of Recl-resilin or PVCL to RSF and subsequent crosslinking systematically increased the nanoscale size of hydrophobic and hydrophilic domains, whereas decreased the homogeneity of pore size distribution in the microscale. The presented results have implications on the fundamental understanding of the structure-property relationship of RSF-based hydrogels. (C) 2018 Published by Elsevier B.V.

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