Literature DB >> 19501901

Polypyrrole-coated electrospun PLGA nanofibers for neural tissue applications.

Jae Y Lee1, Chris A Bashur, Aaron S Goldstein, Christine E Schmidt.   

Abstract

Electrospinning is a promising approach to create nanofiber structures that are capable of supporting adhesion and guiding extension of neurons for nerve regeneration. Concurrently, electrical stimulation of neurons in the absence of topographical features also has been shown to guide axonal extension. Therefore, the goal of this study was to form electrically conductive nanofiber structures and to examine the combined effect of nanofiber structures and electrical stimulation. Conductive meshes were produced by growing polypyrrole (PPy) on random and aligned electrospun poly(lactic-co-glycolic acid) (PLGA) nanofibers, as confirmed by scanning electron micrographs and X-ray photon spectroscopy. PPy-PLGA electrospun meshes supported the growth and differentiation of rat pheochromocytoma 12 (PC12) cells and hippocampal neurons comparable to non-coated PLGA control meshes, suggesting that PPy-PLGA may be suitable as conductive nanofibers for neuronal tissue scaffolds. Electrical stimulation studies showed that PC12 cells, stimulated with a potential of 10 mV/cm on PPy-PLGA scaffolds, exhibited 40-50% longer neurites and 40-90% more neurite formation compared to unstimulated cells on the same scaffolds. In addition, stimulation of the cells on aligned PPy-PLGA fibers resulted in longer neurites and more neurite-bearing cells than stimulation on random PPy-PLGA fibers, suggesting a combined effect of electrical stimulation and topographical guidance and the potential use of these scaffolds for neural tissue applications.

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Year:  2009        PMID: 19501901      PMCID: PMC2713816          DOI: 10.1016/j.biomaterials.2009.04.042

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  36 in total

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9.  Enhanced polarization of embryonic hippocampal neurons on micron scale electrospun fibers.

Authors:  Jae Young Lee; Chris A Bashur; Natalia Gomez; Aaron S Goldstein; Christine E Schmidt
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10.  Micropatterned Polypyrrole: A Combination of Electrical and Topographical Characteristics for the Stimulation of Cells.

Authors:  Natalia Gomez; Jae Y Lee; Jon D Nickels; Christine E Schmidt
Journal:  Adv Funct Mater       Date:  2007-07-09       Impact factor: 18.808

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  89 in total

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Journal:  Stem Cell Rev Rep       Date:  2014-02       Impact factor: 5.739

Review 5.  Morphology and electrostatics play active role in neuronal differentiation processes on flexible conducting substrates.

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Review 7.  Combining topographical and genetic cues to promote neuronal fate specification in stem cells.

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8.  Electrospinning covalently cross-linking biocompatible hydrogelators.

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9.  Multifunctionalized electrospun silk fibers promote axon regeneration in central nervous system.

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Review 10.  Electrospun Fibers for Spinal Cord Injury Research and Regeneration.

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