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  4. Laser Structuring of Polyamide Nanofiber Nonwoven Surfaces and Their Influence on Cell Adhesion
 
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2022
Journal Article
Title

Laser Structuring of Polyamide Nanofiber Nonwoven Surfaces and Their Influence on Cell Adhesion

Abstract
Electrospun nonwovens have great potential for biomedical applications. They can be used, for example, to mimic the structure of the extracellular matrix of biological tissue. In this work, it is demonstrated that the surface properties of nanofiber nonwovens made of biocompatible and very slowly biodegrading polyamide can be modified by UV picosecond laser processing. Basically, the nanofiber structure is only slightly changed by the corresponding laser process. Significant laser-induced material change occurs only along narrow lines determined by the scanning process. The newly formed surface structures resemble a bulk surface. It is shown that the growth of mammalian chondrocyte cells (SW1353) is initially more effective on the laser-processed surface. Cell growth occurs preferably along the laser-generated lines. After several days of cell growth, an extended layer of cells is formed over the laser-modified and unmodified surface sections. Thus, laser-based surface modification provides another tool to affect cell proliferation on polyamide nanofiber nonwovens.
Author(s)
Michler, Nicole
Fraunhofer-Institut für Mikrostruktur von Werkstoffen und Systemen IMWS  
Götze, Marco  
Fraunhofer-Institut für Mikrostruktur von Werkstoffen und Systemen IMWS  
Kürbitz, Tobias
Fraunhofer-Institut für Mikrostruktur von Werkstoffen und Systemen IMWS  
Cepus, Valentin
Schmelzer, Christian  
Fraunhofer-Institut für Mikrostruktur von Werkstoffen und Systemen IMWS  
Hillrichs, Georg
Heilmann, Andreas
Fraunhofer-Institut für Mikrostruktur von Werkstoffen und Systemen IMWS  
Journal
Macromolecular materials and engineering  
Open Access
DOI
10.1002/mame.202200175
Language
English
Fraunhofer-Institut für Mikrostruktur von Werkstoffen und Systemen IMWS  
Keyword(s)
  • electrospinning

  • laser ablation

  • nanofiber scaffold

  • polyamide nanofibers

  • tissue engineering

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