The emergence of tissue engineering has led to the development of three‐dimensional cellular scaffolds that reconstruct the tissue structure. Research into the use of biodegradable materials in scaffolds has grown; the aim is that when tissue growth is complete, the scaffold degrades completely. This research aims to design novel scaffolds and investigates biodegradable polylactide (PLA) yarns; in particular, poly(l‐lactide) (PLLA) yarns extruded in‐house. To study degradation and determine the effect on the biodegradable yarns/textiles, they were immersed in phosphate buffer solution (PBS, pH=7.4) for various durations at 37°C. Mechanical properties were evaluated on tensile testing rigs and they were observed, before and after the immersion period. Cells were then cultured (37°C, 5 per cent carbon dioxide in air) on the textiles for 1 week. As expected, after immersion, the yarns exhibit a decrease in elongation and tenacity. Initial results indicate that the yarn properties influence cell attachment and spreading.
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1 February 2004
Research Article|
February 01 2004
Design of textile scaffolds for tissue engineering: the use of biodegradable yarns
E. Ekevall;
E. Ekevall
Biomedical Textiles Research Centre, School of Textiles and Design, Heriot‐Watt University, UK
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C. Golding;
C. Golding
Biomedical Textiles Research Centre, School of Textiles and Design, Heriot‐Watt University, UK
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R.R. Mather
R.R. Mather
Biomedical Textiles Research Centre, School of Textiles and Design, Heriot‐Watt University, UK
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Publisher: Emerald Publishing
Online ISSN: 1758-5953
Print ISSN: 0955-6222
© Emerald Group Publishing Limited
2004
International Journal of Clothing Science and Technology (2004) 16 (1-2): 184–193.
Citation
Ekevall E, Golding C, Mather R (2004), "Design of textile scaffolds for tissue engineering: the use of biodegradable yarns". International Journal of Clothing Science and Technology, Vol. 16 No. 1-2 pp. 184–193, doi: https://doi.org/10.1108/09556220410520469
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