• Aucun résultat trouvé

Preparation of multilayered chitosan-based nanofibers by combination of electrospinning and layer-by-layer deposition techniques

N/A
N/A
Protected

Academic year: 2021

Partager "Preparation of multilayered chitosan-based nanofibers by combination of electrospinning and layer-by-layer deposition techniques"

Copied!
1
0
0

Texte intégral

(1)

Preparation of multilayered chitosan-based nanofibers by combination of

electrospinning and layer-by-layer deposition techniques

Florence Croisier, Abdelhafid Aquil, Christophe Detrembleur and Christine Jérôme

Center for Education and Research on Macromolecules, University of Liège, Sart Tilman, Liège, Belgium

By combining electrospinning technique and layer-by-layer deposition, we produced a new material made of multilayered, chitosan-based nanofibers.

Layer-by-layer (LBL) is a well-known method for surface coating, based on electrostatic

interactions (1). It enables the controllable deposition of a variety of polyions including

synthetic and natural materials, with designable layer structure, defined wall thickness and size (2).

Electrospinning (ESP) technique allows the fabrication of polymer fibers ranging from nanometers to a few microns in diameter, depending on the polymer characteristics (a.o. molecular weight, solution viscosity and conductivity) and processing conditions (electric

potential, distance between syringe-capillary and collection plate, concentration, flow rate) (3).

Mats of nanofibers produced by ESP display a very large surface area-to-volume ratio and high porosity with very small pore size. The nanometric scale of electrospun fibers also proves a positive effect on cellular growth, as fibers mats mimic extracellular matrix structure

(3)

.

The association of these two techniques with the use of biocompatible and biodegradable polymers such as chitosan, gives outstanding prospects in the field of biomedical applications, especially for the preparation of wound dressings, artificial skin or tissue engineering scaffolds.

In the present study, a charged copolymer, poly(methylmethacrylate-block-methacrylic acid), was added to a poly(ε-caprolactone) or poly(D,L-lactide) solution before electrospinning in order to obtain charges on fibers surface. Oppositely charged polyelectrolytes – chitosan and poly(styrene sulfonate) or hyaluronic acid – were then alternately deposited on these aliphatic polyester fiber “cores” using LBL method. The aliphatic polyester core was also removed selectively to confirm the existence of a multilayered shell, obtaining hollow fibers.

F.C. is grateful to the « Fonds pour la Formation à la Recherche dans l’Industrie et dans l’Agriculture » (FRIA) for financial support.

References:

1. Decher, G. Science, 277, 1232, 1997.

2. Ge, L. Pan, C. Chen, H. Wang, X. Wang, C., and Gu, Z. Colloids and Surfaces A : Physicochem. Eng. Aspects, 293, 272, 2007.

3. Ramakrishna, S., Fujihara, K., Teo, W.E., Lim, T.C., and Ma, Z. An indroduction to electrospinning and nanofibers, Singapore, World Scientific Publishing Co. Pte. Ltd., 2005.

Références

Documents relatifs

For this reason, we have investigated the properties of TFTs made by a standard a-Si:H top-gate TFT process, but with the a-Si:H layer replaced by microcrystalline ( ␮ c-Si:H)

Our first main result is to provide a shape derivative for this new constraint functional (which is not a standard result because the intermediate upper boundaries are not subject

Under the simplifying assumption that the components of one single layer of material are built simultaneously during the manufacturing process, we introduce a new constraint

In this work, we present a comparative study of optimized AZO electrodes deposited by Atomic Layer Deposition (ALD) with commercial ITO in terms of electrical, optical and structural

In the present work, the silicon nanowires produced by gold-assisted chemical etching in combination with nanosphere lithography followed by ALD-based coating with ZnO layer are

The influence of various parameters related to structure of the partners (DS, nature of the PPFS derivatives), the chemical structure of the surface onto which

See discussions, stats, and author profiles for this publication at: https://www.researchgate.net/publication/303882885 Highly Oriented Nanofibers Produced by Electrospinning Poster

a plausible model for the observed temporal correlations in the absence of spatial ones, since the mechanism leading to the power law time decay is the wandenng of nucleation events