Effect of the long-term storage methods on the stability of cartilage biomechanical parameters

Authors

  • Blanka Žaloudková Czech Academy of Sciences, Institute of Theoretical and Applied Mechanics, Prosecká 76, 190 00 Prague, Czech Republic; Czech Technical University in Prague, Faculty of Transportation Sciences, Mobile Laboratory for Transport Analysis, Konviktská 20, 110 00 Prague, Czech Republic
  • Šárka Sekorová National Cell and Tissue Centre, Dr. Slabihoudka 6232/11, 708 00 Ostrava, Czech Republic
  • Barbora Kopecká National Cell and Tissue Centre, Dr. Slabihoudka 6232/11, 708 00 Ostrava, Czech Republic
  • Daniel Kytýř Czech Academy of Sciences, Institute of Theoretical and Applied Mechanics, Prosecká 76, 190 00 Prague, Czech Republic

DOI:

https://doi.org/10.14311/APP.2023.42.0094

Keywords:

stability study, cartilage, biomechanical characterisation, compression loading, XCT imaging

Abstract

Long-term stability of the tissue product in terms of mechanical parameters is a key factor for its expiration date. For the investigation of storage effects on the cartilage tissues the experimental mechanical loading test combined with XCT scanning for the irregular shape inspection was performed. The samples were preserved according to three different protocols using the deep-freezing and two types of saline solution preservation. The stability of the biomechanical parameters was tested within annual intervals. All samples were subjected to uni-axial compression loading using the in-house developed compact table top loading device in displacement-driven mode. Based on the measurements, the results are represented in the form of stress-strain curves and quantified as elastic modulus and ultimate compression stress. It can be concluded that no significant difference was found in neither the mechanical properties of the samples nor in the effects of each preservational method.

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Published

2023-10-12

How to Cite

Žaloudková, B., Sekorová, Šárka, Kopecká, B., & Kytýř, D. (2023). Effect of the long-term storage methods on the stability of cartilage biomechanical parameters. Acta Polytechnica CTU Proceedings, 42, 94–97. https://doi.org/10.14311/APP.2023.42.0094