4.7 Article

Bioglass-Incorporated Methacrylated Gelatin Cryogel for Regeneration of Bone Defects

Journal

POLYMERS
Volume 10, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/polym10080914

Keywords

methacrylated gelatin; bioglass; hydrogel; cryogel; bone tissue engineering

Funding

  1. National Research Foundation (NRF) - Ministry of Science and ICT of Korea [NRF-2017M3A9C6031786, NRF-2017K1A3A1A19070731]
  2. Department of Science and Technology (DST, India)
  3. National Research Foundation (NRF, Republic of Korea) [INT/ROK/IKRI-2/2016]
  4. Council of Scientific and Industrial Research (CSIR) through Senior Research Fellowship (SRF) [09/963 (0038)2K17-EMR-I]

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Cryogels have recently gained interest in the field of tissue engineering as they inherently possess an interconnected macroporous structure. Considered to be suitable for scaffold cryogel fabrication, methacrylated gelatin (GelMA) is a modified form of gelatin valued for its ability to retain cell adhesion site. Bioglass nanoparticles have also attracted attention in the field due to their osteoinductive and osteoconductive behavior. Here, we prepare methacrylated gelatin cryogel with varying concentration of bioglass nanoparticles to study its potential for bone regeneration. We demonstrate that an increase in bioglass concentration in cryogel leads to improved mechanical property and augmented osteogenic differentiation of mesenchymal cells during in vitro testing. Furthermore, in vivo testing in mice cranial defect model shows that highest concentration of bioglass nanoparticles (2.5 w/w %) incorporated in GelMA cryogel induces the most bone formation compared to the other tested groups, as studied by micro-CT and histology. The in vitro and in vivo results highlight the potential of bioglass nanoparticles incorporated in GelMA cryogel for bone regeneration.

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