Electrospinning/Electrospray

Potential of Nanofiber Matrix as Tissue-Engineering Scaffolds

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nanonc
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2015-10-05 09:08
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Abstract


January 2005, Vol. 11, No. 1-2, Pages 101-109

Posted online on February 28, 2005.
(doi:10.1089/ten.2005.11.101)

Potential of Nanofiber Matrix as Tissue-Engineering Scaffolds

Zuwei Ma, Ph.D.

Nanoscience and Nanotechnology Initiative, Division of Bioengineering, National University of Singapore, Singapore.

Masaya Kotaki, Ph.D.

Nanoscience and Nanotechnology Initiative, Division of Bioengineering, National University of Singapore, Singapore.

Ryuji Inai

Division of Bioengineering, National University of Singapore, Singapore.

Seeram Ramakrishna, Ph.D.

Nanoscience and Nanotechnology Initiative, Division of Bioengineering, and Department of Mechanical Engineering, National University of Singapore, Singapore.





Tissue-engineering scaffolds should be analogous to native extracellular matrix (ECM) in terms of both chemical composition and physical structure. Polymeric nanofiber matrix is similar, with its nanoscaled nonwoven fibrous ECM proteins, and thus is a candidate ECM-mimetic material. Techniques such as electrospinning to produce polymeric nanofibers have stimulated researchers to explore the application of nanofiber matrix as a tissue-engineering scaffold. This review covers the preparation and modification of polymeric nanofiber matrix in the development of future tissue-engineering scaffolds. Major emphasis is also given to the development and applications of aligned, core shell-structured, or surface-functionalized polymer nanofibers. The potential application of polymer nanofibers extends far beyond tissue engineering. Owing to their high surface area, functionalized polymer nanofibers will find broad applications as drug delivery carriers, biosensors, and molecular filtration membranes in future.

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