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3D printed polycaprolactone/gelatin/ordered mesoporous calcium magnesium silicate nanocomposite scaffold for bone tissue regeneration.
- Source :
-
Journal of materials science. Materials in medicine [J Mater Sci Mater Med] 2024 Sep 30; Vol. 35 (1), pp. 58. Date of Electronic Publication: 2024 Sep 30. - Publication Year :
- 2024
-
Abstract
- Tissue engineering scaffolds are three-dimensional structures that provide an appropriate environment for cellular attachment, proliferation, and differentiation. Depending on their specific purpose, these scaffolds must possess distinct features, including appropriate mechanical properties, porosity, desired degradation rate, and cell compatibility. This investigation aimed to fabricate a new nanocomposite scaffold using a 3D printing technique composed of poly(ε-caprolactone) (PCL)/Gelatin (GEL)/ordered mesoporous calcium-magnesium silicate (om-CMS) particles. Different weight ratios of om-CMS were added and optimized, and a series of scaffolds were constructed for comparison purposes, including PCL 50%/Gel 50%, PCL 50%/Gel 45%/om-CMS%5, and PCL 50%/Gel 40%/om-CMS%10. The optimized weight ratio of om-CMS was 10% without leaving behind negative effects on the filaments' structure. The scaffolds' physical and chemical properties were assessed using various techniques, and their degradation rate, bioactivity potential, cell viability, attachment, and ALP activity were evaluated in vitro. The results demonstrated that the PCL 50%/Gel 40%/om-CMS10% scaffold had promising potential for further studies in bone tissue regeneration.<br /> (© 2024. The Author(s).)
- Subjects :
- Porosity
Cell Survival drug effects
Magnesium Silicates chemistry
Materials Testing
Humans
Cell Proliferation drug effects
Calcium Compounds chemistry
Magnesium chemistry
Biocompatible Materials chemistry
Bone and Bones
Animals
Cell Adhesion drug effects
Calcium chemistry
Gelatin chemistry
Tissue Scaffolds chemistry
Printing, Three-Dimensional
Polyesters chemistry
Nanocomposites chemistry
Bone Regeneration drug effects
Tissue Engineering methods
Silicates chemistry
Subjects
Details
- Language :
- English
- ISSN :
- 1573-4838
- Volume :
- 35
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- Journal of materials science. Materials in medicine
- Publication Type :
- Academic Journal
- Accession number :
- 39348082
- Full Text :
- https://doi.org/10.1007/s10856-024-06828-5