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Dextran-based scaffolds for in-situ hydrogelation: Use for next generation of bioartificial cardiac tissues.
Banerjee, Samhita; Szepes, Monika; Dibbert, Nick; Rios-Camacho, Julio-Cesar; Kirschning, Andreas; Gruh, Ina; Dräger, Gerald.
Afiliação
  • Banerjee S; Institute for Organic Chemistry, Leibniz University Hannover, Schneiderberg 1B, 30167 Hannover, Germany.
  • Szepes M; Department of Cardiothoracic, Transplantation and Vascular Surgery, Leibniz Research Laboratories for Biotechnology and Artificial Organs (LEBAO), Hannover Medical School, Carl-Neuberg-Strasse 1, 30625 Hannover, Germany.
  • Dibbert N; Institute for Organic Chemistry, Leibniz University Hannover, Schneiderberg 1B, 30167 Hannover, Germany.
  • Rios-Camacho JC; Department of Cardiothoracic, Transplantation and Vascular Surgery, Leibniz Research Laboratories for Biotechnology and Artificial Organs (LEBAO), Hannover Medical School, Carl-Neuberg-Strasse 1, 30625 Hannover, Germany.
  • Kirschning A; Institute for Organic Chemistry, Leibniz University Hannover, Schneiderberg 1B, 30167 Hannover, Germany.
  • Gruh I; Department of Cardiothoracic, Transplantation and Vascular Surgery, Leibniz Research Laboratories for Biotechnology and Artificial Organs (LEBAO), Hannover Medical School, Carl-Neuberg-Strasse 1, 30625 Hannover, Germany.
  • Dräger G; Institute for Organic Chemistry, Leibniz University Hannover, Schneiderberg 1B, 30167 Hannover, Germany. Electronic address: gerald.draeger@oci.uni-hannover.de.
Carbohydr Polym ; 262: 117924, 2021 Jun 15.
Article em En | MEDLINE | ID: mdl-33838803
ABSTRACT
In pursuit of a chemically-defined matrix for in vitro cardiac tissue generation, we present dextran (Dex)-derived hydrogels as matrices suitable for bioartificial cardiac tissues (BCT). The dextran hydrogels were generated in situ by using hydrazone formation as the crosslinking reaction. Material properties were flexibly adjusted, by varying the degrees of derivatization and the molecular weight of dextran used. Furthermore, to modulate dextran's bioactivity, cyclic pentapeptide RGD was coupled to its backbone. BCTs were generated by using a blend of modified dextran and human collagen (hColI) in combination with induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) and fibroblasts. These hColI + Dex blends with or without RGD supported tissue formation and functional maturation of CMs. Contraction forces (hColI + Dex-RGD 0.27 ± 0.02 mN; hColI + Dex 0.26 ± 0.01 mN) and frequencies were comparable to published constructs. Thus, we could demonstrate that, independent of the presence of RGD, our covalently linked dextran hydrogels are a promising matrix for building cardiac grafts.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Dextranos / Hidrogéis / Miócitos Cardíacos / Alicerces Teciduais Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Dextranos / Hidrogéis / Miócitos Cardíacos / Alicerces Teciduais Idioma: En Ano de publicação: 2021 Tipo de documento: Article