Javascript must be enabled to continue!
Mechanical Strength and Porosity of Carbonate Apatite-Chitosan-Gelatine Scaffold in Various Ratio as a Biomaterial Candidate in Tissue Engineering
View through CrossRef
Bone defect is a common problem in the field of dentistry. The defect can be solved bytissue engineering. One component of tissue engineering is scaffold. Carbonate apatite is the main material used because it has an organic components similar to human bones. The carbonate apatite combined with gelatin and chitosan can be used as a scaffold for tissue engineering. The aim of thisstudy is to know the exact ratio of the carbonate apatite, chitosan-gelatine (CA:Ch-GEL) scaffold on the compressive strength and porosity size as biomaterial candidates in tissue engineering. Scaffold was synthesized from CA:Ch-GEL with different ratios of 50:50, 60:40, 70:30 and 80:20 withfreeze drying method. Fourier Transform Infared Spectroscopy (FTIR) was used CA:Ch-GEL scaffold functional group identification. Scaffold mechanical test was performed using an Autograph while a porosity test was performed using Scanning Electron Microscope. All data wereanalyzed by ANOVA followed by Tukey HSD test. Scaffold has a compressive strength ranges 4.02 - 11.35 MPa, with porous ranges 19,18 mm – 52,59 mm at 50:50, 60:40, 70:30 and 80:20 ratios. CA:Ch-GEL scaffold at all ratios can be used as biomaterials in tissue engineering
Trans Tech Publications, Ltd.
Title: Mechanical Strength and Porosity of Carbonate Apatite-Chitosan-Gelatine Scaffold in Various Ratio as a Biomaterial Candidate in Tissue Engineering
Description:
Bone defect is a common problem in the field of dentistry.
The defect can be solved bytissue engineering.
One component of tissue engineering is scaffold.
Carbonate apatite is the main material used because it has an organic components similar to human bones.
The carbonate apatite combined with gelatin and chitosan can be used as a scaffold for tissue engineering.
The aim of thisstudy is to know the exact ratio of the carbonate apatite, chitosan-gelatine (CA:Ch-GEL) scaffold on the compressive strength and porosity size as biomaterial candidates in tissue engineering.
Scaffold was synthesized from CA:Ch-GEL with different ratios of 50:50, 60:40, 70:30 and 80:20 withfreeze drying method.
Fourier Transform Infared Spectroscopy (FTIR) was used CA:Ch-GEL scaffold functional group identification.
Scaffold mechanical test was performed using an Autograph while a porosity test was performed using Scanning Electron Microscope.
All data wereanalyzed by ANOVA followed by Tukey HSD test.
Scaffold has a compressive strength ranges 4.
02 - 11.
35 MPa, with porous ranges 19,18 mm – 52,59 mm at 50:50, 60:40, 70:30 and 80:20 ratios.
CA:Ch-GEL scaffold at all ratios can be used as biomaterials in tissue engineering.
Related Results
Synthesis and Investigation into Apatite-forming Ability of Hydroxyapatite/Chitosan-based Scaffold
Synthesis and Investigation into Apatite-forming Ability of Hydroxyapatite/Chitosan-based Scaffold
In this study, porous scaffolds were fabricated using inorganic material-hydroxyapatite and chitosan for bone-tissue engineering. The combination of hydroxyapatite and chitosan may...
3D printed bone-like biopolymer composites inspired by nacre
3D printed bone-like biopolymer composites inspired by nacre
<p>Bone tissue engineering and synthetic biomineralization are two widely researched areas, the principles of which have been combined from time to time in efforts to develop...
Gelatine and Gelatine/Elastin Nanocomposites for Vascular Grafts: Processing and Characterization
Gelatine and Gelatine/Elastin Nanocomposites for Vascular Grafts: Processing and Characterization
This study involves the preparation, microstructural, physical, mechanical, and biological characterization of novel gelatine and gelatine/elastin gels for their use in the tissue ...
Drought resistance and protein changes induced by chitosan in rice Oryza sativa L.
Drought resistance and protein changes induced by chitosan in rice Oryza sativa L.
This research aims to determine the appropriate chitosan types and concentrations for drought resistant induction in rice based on the hypothesized that the antioxidant system shou...
Apatite in the Sokli carbonatite complex, Finland
Apatite in the Sokli carbonatite complex, Finland
Apatite is a ubiquitous mineral in plutonic carbonatites (magmatic carbonate-rich rocks) and associated rock types (Chakhmouradian et al., 2017). Carbonatites are enriched in incom...
Preparation and Characterization of a Multilayer Biomimetic Scaffold for Bone Tissue Engineering
Preparation and Characterization of a Multilayer Biomimetic Scaffold for Bone Tissue Engineering
In scaffold based bone tissue engineering, both the pore size and the mechanical properties of the scaffold are of great importance. However, an increase in pore size is generally ...
A New Method of Porosity Determination by D-T Neutron Generator and Dual CLYC Detector
A New Method of Porosity Determination by D-T Neutron Generator and Dual CLYC Detector
Porosity is one of the essential parameters in conventional oil and gas reservoir evaluation, as well as plays an important role in the calculation of formation saturation and rese...
<b>Comparative Antimicrobial Efficacy of Chitosan–Graphene Oxide and Chitosan–Reduced Graphene Oxide Membranes</b>
<b>Comparative Antimicrobial Efficacy of Chitosan–Graphene Oxide and Chitosan–Reduced Graphene Oxide Membranes</b>
Background: Hospital-associated infections and antimicrobial resistance remain major clinical challenges, particularly in settings with high bacterial burden and frequent antibioti...

