A novel hydrogel scaffold contained bioactive glass nanowhisker (BGnW) for osteogenic differentiation of human mesenchymal stem cells (hMSCs) in vitro.


Journal

International journal of biological macromolecules
ISSN: 1879-0003
Titre abrégé: Int J Biol Macromol
Pays: Netherlands
ID NLM: 7909578

Informations de publication

Date de publication:
31 Mar 2021
Historique:
received: 23 10 2020
revised: 26 12 2020
accepted: 01 01 2021
pubmed: 13 1 2021
medline: 20 7 2021
entrez: 12 1 2021
Statut: ppublish

Résumé

Employing hydrogels as an alternative strategy for repairing bone defects has received great attention in bone tissue engineering. In this study, hydrogel scaffold based on collagen, gelatin, and glutaraldehyde was combined with bioactive glass nanowhiskers (BGnW) to differentiate human mesenchymal stem cells (hMSCs) into the osteogenic lineage and inducing biomineralization. Pure Gel-Glu-Col and bioactive glass nanowhiskers were used as control throughout the paper. Chemical, physical and morphological characteristics of the nanocomposite scaffold were assessed meticulously using Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), porosity measurement, water uptake ability, tensile test, and scanning electron microscopy (SEM). To determine the cytotoxicity and cell viability of the hydrogel, MTT assay and Acridine orange (AO) staining were performed. hMSCs seeded on Gel-Glu-Col/BGnW were then incubated with osteogenic differentiation media for 14 days. Biomineralization assays (alkaline phosphatase (ALP) activity, calcium content assay, von Kossa, and Alizarin red staining) were carried out, and osteogenic genes and protein markers were examined using real time-PCR and immunocytochemistry. Results showed that the components of the hydrogel were properly integrated. The mechanical property of hydrogel was enhanced following the addition of BGnW. Cell viability assays confirmed the biocompatibility of the scaffold and increasing the proliferation after incorporating BGnW into pure Ge1-Glu-Col. Our nanocomposite maintained an enhanced ability of biomineralization as compared to its pure counterparts. Molecular investigations revealed an elevated level of osteogenic markers as compared to Ge1-Glu-Col and BGnW. All in all, Gel-Glu-Col/BGnW seems to be a potential candidate for the regeneration of bone tissue.

Identifiants

pubmed: 33434552
pii: S0141-8130(21)00015-5
doi: 10.1016/j.ijbiomac.2021.01.002
pii:
doi:

Substances chimiques

Biomarkers 0
Hydrogels 0
Gelatin 9000-70-8
Collagen 9007-34-5
Glutaral T3C89M417N

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

562-572

Informations de copyright

Copyright © 2021 Elsevier B.V. All rights reserved.

Déclaration de conflit d'intérêts

Declaration of competing interest The authors declare that they have no conflict of interest.

Auteurs

Esmat Azizipour (E)

Department of Medical Nanotechnology, School of Advanced Medical Sciences and Technologies, Shiraz University of Medical Sciences, Shiraz, Iran.

Hossein Aghamollaei (H)

Applied Biotechnology Research Center, Baqiyatallah University of Medical Sciences, Tehran, Iran.

Raheleh Halabian (R)

Applied Microbiology Research Center, Baqiyatallah University Medical of Sciences, Tehran, Iran.

Delaram Poormoghadam (D)

Department of Medical Nanotechnology, Faculty of Advanced Sciences and Technology, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran.

Mostafa Saffari (M)

Department of Pharmaceutics, School of Pharmacy, Islamic Azad University of Medical Sciences, Tehran, Iran.

Maliheh Entezari (M)

Department of Genetics, Faculty of Advanced Science and Technology, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran.

Ali Salimi (A)

Nanobiotechnology Research Center, Baqiyatallah University of Medical Sciences, Tehran, Iran. Electronic address: Salimiali@bmsu.ac.ir.

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Classifications MeSH