Issue 48, 2016

Structure and properties of various hybrids fabricated by silk nanofibrils and nanohydroxyapatite

Abstract

To harvest silk fibroin (SF) based organic/inorganic composites with various general properties (e.g. hard or soft), the strategies of vacuum filtration and centrifugation were employed in this work to produce a film and hydrogel of SF-nanofibril/nanohydroxyapatite, respectively. It was found that the SF-nanofibril mediated the mineralization of hydroxyapatites (HAP) in situ and the morphology of such organic/inorganic nanohybrids presented a “flower-like” structure, mainly because of the strong interaction between SF-nanofibrils and nanohydroxyapatites. On the other hand, the extracellular matrix (ECM) like SF/HAP hydrogel illustrated not only an adequate mechanical strength, but also a remarkable thixotropy, with the storage modulus (G′) being able to recover to 85% within 50 seconds when a large shearing strain (5000%) was applied. Moreover, the mechanical properties of these well-organized materials were adjustable for varied demands, and the whole fabrication process was simple and eco-friendly. Therefore, all results indicate that hybrids of SF-nanofibril/nanohydroxyapatite have promise in applications, particularly in bone tissue engineering.

Graphical abstract: Structure and properties of various hybrids fabricated by silk nanofibrils and nanohydroxyapatite

Supplementary files

Article information

Article type
Paper
Submitted
18 Sep 2016
Accepted
12 Nov 2016
First published
14 Nov 2016

Nanoscale, 2016,8, 20096-20102

Structure and properties of various hybrids fabricated by silk nanofibrils and nanohydroxyapatite

R. Mi, Y. Liu, X. Chen and Z. Shao, Nanoscale, 2016, 8, 20096 DOI: 10.1039/C6NR07359J

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