Biomacromolecules, 9 (1), 136141, 2008. 10.1021/bm701130e
Web Release Date: December 14, 2007

Copyright © 2008 American Chemical Society

Chitosan Nanofibers from an Easily Electrospinnable UHMWPEO-Doped Chitosan Solution System

Y. Z. Zhang,* B. Su,* S. Ramakrishna, and C. T. Lim

Department of Oral & Dental Science, University of Bristol, Lower Maudlin Street, Bristol BS1 2LY, United Kingdom, and NUSNNI, Division of Bioengineering and Department of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore 117576, Singapore

Received October 11, 2007

Revised November 5, 2007

Abstract:

Conversion of natural biopolymer chitosan into nanofibers through electrospinning has significant usefulness in various biomedical applications, in particular, for constructing a biomimetic and bioactive nanofibrous artificial extracellular matrix for engineering various tissues. Here, we show that introduction of an ultrahigh-molecular-weight poly(ethylene oxide) (UHMWPEO) into aqueous chitosan solutions remarkably enhances the formation of chitosan nanofibrous structure and leads to much lower loading of the water soluble fiber-forming aiding agent of PEO down to 5 wt % as compared to previous high PEO loadings in the electrospun chitosan nanofibers. The excellent electrospinnability of the current formulation renders electrospinning of natural biopolymer chitosan a robust process for large-scale production of practically applicable nanofibrous structures.

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