Electrospun hybrid nanofibers doped with nanoparticles or nanotubes for biomedical applications

Author:

Wang Shige12,Zhao Yili3,Shen Mingwu1,Shi Xiangyang4

Affiliation:

1. College of Chemistry, Chemical Engineering & Biotechnology, Donghua University, Shanghai 201620, People’s Republic of China

2. State Key Laboratory for Modification of Chemical Fibers & Polymer Materials, Donghua University, Shanghai 201620, People’s Republic of China

3. College of Textiles, Donghua University, Shanghai 201620, People’s Republic of China

4. CQM-Centro de Química da Madeira, Universidade da Madeira, Campus da Penteada, 9000-390 Funchal, Portugal.

Abstract

Electrospinning is a powerful technique to produce fibers with a diameter ranging from tens of nanometers to several micrometers. Compared with single-component nanofibers, composite or hybrid nanofibers are promising due to the unique properties possessed by both the host and the guest materials. Doping nanoparticles (NPs) or nanotubes (NTs) have excellent optical, mechanical, electrical or catalytic properties within polymer nanofibers, which makes it possible to produce functional nanofibers with promising applications. In this review, followed by a brief introduction of basic theory of electrospinning techniques, we give a literature survey of the NP- or NT-doped electrospun polymer nanofibers in terms of the producing methods and potential applications in the fields of tissue engineering, wound dressing and drug-delivery systems. Some of the aspects related to the improved protein adsorption capability, mechanical durability and, thus, improved cell attachment and proliferation of the NT-doped polymer nanofibers, as well as the significantly decreased burst-release profile of the NT-doped polymer nanofibers used as drug-delivery systems are discussed.

Publisher

Future Science Ltd

Subject

Pharmaceutical Science

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