Biomineralization of Engineered Spider Silk Protein-Based Composite Materials for Bone Tissue Engineering

Loading...
Thumbnail Image

Date

Editor

Advisor

Volume

9

Issue

7

Journal

Materials

Series Titel

Book Title

Publisher

Basel : MDPI

Supplementary Material

Other Versions

Link to publishers' Version

Abstract

Materials based on biodegradable polyesters, such as poly(butylene terephthalate) (PBT) or poly(butylene terephthalate-co-poly(alkylene glycol) terephthalate) (PBTAT), have potential application as pro-regenerative scaffolds for bone tissue engineering. Herein, the preparation of films composed of PBT or PBTAT and an engineered spider silk protein, (eADF4(C16)), that displays multiple carboxylic acid moieties capable of binding calcium ions and facilitating their biomineralization with calcium carbonate or calcium phosphate is reported. Human mesenchymal stem cells cultured on films mineralized with calcium phosphate show enhanced levels of alkaline phosphatase activity suggesting that such composites have potential use for bone tissue engineering.

Description

Keywords GND

Conference

Publication Type

Article

Version

publishedVersion

Collections

License

CC BY 4.0 Unported