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Effects of material thickness and processing method on poly(lactic-co-glycolic acid) degradation and mechanical performance

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Abstract

In this study, the effects of material thickness and processing method on the degradation rate and the changes in the mechanical properties of poly(lactic-co-glycolic acid) material during simulated physiological degradation were investigated. Two types of poly(lactic-co-glycolic acid) materials were considered: 0.12 mm solvent-cast films and 1 mm compression-moulded plates. The experimental results presented in this study were compared to the experimental results of Shirazi et al. (Acta Biomaterialia 10(11):4695–703, 2014) for 0.25 mm solvent-cast films. These experimental observations were used to validate the computational modelling predictions of Shirazi et al. (J Mech Behav Biomed Mater 54: 48–59, 2016) on critical diffusion length scale and also to refine the model parameters. The specific material processing methods considered here did not have a significant effect on the degradation rate and the changes in mechanical properties during degradation; however, they influenced the initial molecular weight and they determined the stiffness and hardness of the poly(lactic-co-glycolic acid) material. The experimental observations strongly supported the computational modelling predictions that showed no significant difference in the degradation rate and the changes in the elastic modulus of poly(lactic-co-glycolic acid) films for thicknesses larger than 100 μm.

Original languageEnglish (Ireland)
Article number154
JournalJournal Of Materials Science: Materials In Medicine
Volume27
Issue number10
DOIs
Publication statusPublished - 1 Jan 2016

Authors (Note for portal: view the doc link for the full list of authors)

  • Authors
  • Shirazi, R.N. and Aldabbagh, F. and Ronan, W. and Erxleben, A. and Rochev, Y. and McHugh, P.

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