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Vascular Network Formation on Macroporous Polydioxanone Scaffolds

Publikation: Beitrag in FachzeitschriftArtikelForschung

Abstract

In this study, microvascular network structures for tissue engineering were generated on newly developed macroporous polydioxanone (PDO) scaffolds. PDO represents a polymer biodegradable within months and offers optimal material properties such as elasticity and nontoxic degradation products. PDO scaffolds prepared by porogen leaching and cryo-dried to achieve pore sizes of 326 ± 149.67 μm remained stable with equivalent values for Young's modulus after 4 weeks. Scaffolds were coated with fibrin for optimal cell adherence. To exclude interindividual differences, autologous fibrin was prepared out of human plasma-derived fibrinogen and proved a comparable quality to nonautologous commercially available fibrinogen. Fibrin-coated scaffolds were seeded with recombinant human umbilical vein endothelial cells expressing GFP (GFP-HUVECs) in coculture with adipose tissue-derived mesenchymal stem cells (AD-hMSCs) to form vascular networks. The growth factor content in culture media was optimized according its effect on network formation, quantified and assessed by AngioTool®. A ratio of 2:3 GFP-HUVECs/AD-hMSCs in medium enriched with 20 ng/mL vascular endothelial growth factor, basic fibroblast growth factor, and hydrocortisone was found to be optimal. Network structures appeared after 2 days of cultivation and stabilized until day 7. The resulting networks were lumenized that could be verified by dextran staining. This new approach might be suitable for microvascular tissue patches as a useful template to be used in diverse vascularized tissue constructs.

OriginalspracheEnglisch
Seiten (von - bis)1239-1249
Seitenumfang11
FachzeitschriftTissue Engineering - Part A
Jahrgang27
Ausgabenummer19-20
Elektronisch veröffentlicht (E-Pub)24 Feb. 2021
DOIs
PublikationsstatusVeröffentlicht - 18 Okt. 2021

ASJC Scopus Sachgebiete

  • Bioengineering
  • Biochemie
  • Biomedizintechnik
  • Biomaterialien

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