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Biomimetic nucleation of hydroxyapatite crystals mediated by Antheraea pernyi silk sericin promotes osteogenic differentiation of human bone marrow derived mesenchymal stem cells
- Source :
- Biomacromolecules
- Publication Year :
- 2014
-
Abstract
- Biomacromolecules have been used as templates to grow hydroxyapatite crystals (HAps) by biomineralization to fabricate mineralized materials for potential application in bone tissue engineering. Silk sericin is a protein with features desirable as a biomaterial, such as increased hydrophilicity and biodegradation. Mineralization of the silk sericin from Antheraea pernyi (A. pernyi) silkworm has rarely been reported. Here, for the first time, nucleation of HAps on A. pernyi silk sericin (AS) was attempted through a wet precipitation method and consequently the cell viability and osteogenic differentiation of BMSCs on mineralized AS were investigated. It was found that AS mediated the nucleation of HAps in the form of nanoneedles while self-assembling into β-sheet conformation, leading to the formation of a biomineralized protein based biomaterial. The cell viability assay of BMSCs showed that the mineralization of AS stimulated cell adhesion and proliferation, showing that the resultant AS biomaterial is biocompatible. The differentiation assay confirmed that the mineralized AS significantly promoted the osteogenic differentiation of BMSCs when compared to nonmineralized AS as well as other types of sericin (B. mori sericin), suggesting that the resultant mineralized AS biomaterial has potential in promoting bone formation. This result represented the first work proving the osteogenic differentiation of BMSCs directed by silk sericin. Therefore, the biomineralization of A. pernyi silk sericin coupled with seeding BMSCs on the resultant mineralized biomaterials is a useful strategy to develop the potential application of this unexplored silk sericin in the field of bone tissue engineering. This study lays the foundation for the use of A. pernyi silk sericin as a potential scaffold for tissue engineering.
- Subjects :
- Scaffold
Polymers and Plastics
Cell Survival
Bioengineering
Biocompatible Materials
Bone Marrow Cells
Antheraea pernyi
Moths
Sericin
Article
Nanocomposites
Biomaterials
Tissue engineering
stomatognathic system
Biomimetics
Osteogenesis
Materials Chemistry
Animals
Humans
Viability assay
Sericins
Cell adhesion
biology
Molecular Structure
Chemistry
fungi
Biomaterial
Cell Differentiation
Mesenchymal Stem Cells
Anatomy
biology.organism_classification
Cell biology
Hydroxyapatites
Crystallization
Biomineralization
Subjects
Details
- ISSN :
- 15264602
- Volume :
- 15
- Issue :
- 4
- Database :
- OpenAIRE
- Journal :
- Biomacromolecules
- Accession number :
- edsair.doi.dedup.....8a07bbc40a7be3305b9f0c5c393ace01