Decellularized Bone Matrix/45S5 Bioactive Glass Biocomposite Hydrogel‐Based Constructs with Angiogenic and Osteogenic Properties: Ex Ovo and Ex Vivo Evaluations

Author:

Aytekin Ekin1,Vurat Murat Taner1,Elçin Ayşe Eser1,Elçin Yaşar Murat12ORCID

Affiliation:

1. Tissue Engineering, Biomaterials and Nanobiotechnology Laboratory Ankara University Faculty of Science, and Ankara University Stem Cell Institute Ankara 06100 Turkey

2. Biovalda Health Technologies, Inc. Ankara 06830 Turkey

Abstract

AbstractDecellularized extracellular matrix is often used to create an in vivo‐like environment that supports cell growth and proliferation, as it reflects the micro/macrostructure and molecular composition of tissues. On the other hand, bioactive glasses (BG) are surface‐reactive glass‐ceramics that can convert to hydroxyapatite in vivo and promote new bone formation. This study is designed to evaluate the key properties of a novel angiogenic and osteogenic biocomposite graft made of bovine decellularized bone matrix (DBM) hydrogel and 45S5 BG microparticles (10 and 20 wt%) to combine the existing superior properties of both biomaterial classes. Morphological, physicochemical, mechanical, and thermal characterizations of DBM and DBM/BG composite hydrogels are performed. Their in vitro biocompatibility is confirmed by cytotoxicity and hemocompatibility analyses. Ex vivo chick embryo aortic arch and ex ovo chick chorioallantoic membrane (CAM) assays reveal that the present pro‐angiogenic property of DBM hydrogels is enhanced by the incorporation of BG. Histochemical stainings (Alcian blue and Alizarin red) and digital image analysis of ossification on hind limbs of embryos used in the CAM model reveal the osteogenic potential of biomaterials. The findings support the notion that the developed DBM/BG composite hydrogel constructs have the potential to be a suitable graft for bone repair.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Biomaterials,Bioengineering,Biotechnology

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