Literature DB >> 32557876

Toward acellular xenogeneic heart valve prostheses: Histological and biomechanical characterization of decellularized and enzymatically deglycosylated porcine pulmonary heart valve matrices.

Katja Findeisen1, Lucrezia Morticelli1, Tobias Goecke1, Louisa Kolbeck1, Robert Ramm1, Hans-Klaus Höffler2, Gudrun Brandes3, Sotirios Korossis2, Axel Haverich1,2, Andres Hilfiker1,2.   

Abstract

The use of decellularized xenogeneic heart valves might offer a solution to overcome the issue of human valve shortage. The aim of this study was to revise decellularization protocols in combination with enzymatic deglycosylation, in order to reduce the immunogenicity of porcine pulmonary heart valves, in means of cells, carbohydrates, and, primarily, Galα1-3Gal (α-Gal) epitope removal. In particular, the valves were decellularized with sodium dodecylsulfate/sodium deoxycholate (SDS/SD), Triton X-100 + SDS (Tx + SDS), or Trypsin + Triton X-100 (Tryp + Tx) followed by enzymatic digestion with PNGaseF, Endoglycosidase H, or O-glycosidase combined with Neuraminidase. Results showed that decellularization alone reduced carbohydrate structures only to a limited extent, and it did not result in an α-Gal free scaffold. Nevertheless, decellularization with Tryp + Tx represented the most effective decellularization protocol in means of carbohydrates reduction. Overall, carbohydrates and α-Gal removal could strongly be improved by applying PNGaseF, in particular in combination with Tryp + Tx treatment, contrary to Endoglycosidase H and O-glycosidase treatments. Furthermore, decellularization with PNGaseF did not affect biomechanical stability, in comparison with decellularization alone, as shown by burst pressure and uniaxial tensile tests. In conclusion, valves decellularized with Tryp + Tx and PNGaseF resulted in prostheses with potentially reduced immunogenicity and maintained mechanical stability.
© 2020 The Authors. Xenotransplantation published by John Wiley & Sons Ltd.

Entities:  

Keywords:  decellularization; deglycosylation; enzymatic decellularization; heart valve; pulmonary valve; tissue engineering

Year:  2020        PMID: 32557876     DOI: 10.1111/xen.12617

Source DB:  PubMed          Journal:  Xenotransplantation        ISSN: 0908-665X            Impact factor:   3.907


  2 in total

1.  Immunological and functional features of decellularized xenogeneic heart valves after transplantation into GGTA1-KO pigs.

Authors:  Robert Ramm; Tobias Goecke; Peter Köhler; Igor Tudorache; Serghei Cebotari; Anatol Ciubotaru; Samir Sarikouch; Klaus Höffler; Friederike Bothe; Björn Petersen; Axel Haverich; Heiner Niemann; Andres Hilfiker
Journal:  Regen Biomater       Date:  2021-08-03

2.  Biofabrication of Sodium Alginate Hydrogel Scaffolds for Heart Valve Tissue Engineering.

Authors:  Yannick Rioux; Julie Fradette; Yvan Maciel; André Bégin-Drolet; Jean Ruel
Journal:  Int J Mol Sci       Date:  2022-08-02       Impact factor: 6.208

  2 in total

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