| Literature DB >> 21289986 |
Azadeh Asefnejad1, Aliasghar Behnamghader, Mohammad Taghi Khorasani, Babak Farsadzadeh.
Abstract
In this study, new nano-fluor-hydroxyapatite (Entities:
Keywords: composite; fluor-hydroxyapatite; polyester urethane; scaffold
Mesh:
Substances:
Year: 2011 PMID: 21289986 PMCID: PMC3025589 DOI: 10.2147/IJN.S13385
Source DB: PubMed Journal: Int J Nanomedicine ISSN: 1176-9114
Figure 1Infrared spectra of samples: A) FHA; B) PU–0% FHA; C) PU–5% FHA; D) PU–10% FHA; E) PU–20% FHA.
Abbreviations: FHA, fluor-hydroxyapatite; PU, polyester urethane.
Figure 2XRD pattern A) and EDX B) of FHA nanoparticles.
Abbreviations: XRD, X-ray diffraction; EDX, energy dispersive X-ray spectroscopy; FHA, fluor-hydroxyapatite.
Figure 3Bright field TEM image of FHA nanoparticles.
Abbreviations: FHA, fluor-hydroxyapatite; TEM, transmission electron microscopy.
Figure 4Diffraction pattern A) and Crystalline plane B) of FHA nanoparticles taken by TEM.
Abbreviations: FHA, fluor-hydroxyapatite; TEM, transmission electron microscopy.
Figure 5SEM images of nanocomposite scaffolds: A) PU–0% FHA; B) PU–5% FHA; C) PU–10% FHA; D) PU–20% FHA.
Abbreviations: SEM, scanning electron microscopy; PU, polyster urethane; FHA, fluor-hydroxyapatite.
Mechanical properties of the scaffolds
| Sample | nFHA ratio (w/w)% | Compressive strength (KPa) | Compressive modulus (KPa) | Porosity ɛ (%) |
|---|---|---|---|---|
| PU–0% FHA | 0 | 240 ± 9 | 270 ± 8 | 87.7 ± 1 |
| PU–5% FHA | 5 | 360 ± 6 | 460 ± 7 | 86.0 ± 3 |
| PU–10% FHA | 10 | 520 ± 6 | 610 ± 9 | 84.7 ± 2 |
| PU–20% FHA | 20 | 610 ± 9 | 780 ± 11 | 79.9 ± 2 |
Figure 6Water uptake percentage of scaffold samples with different contents of nFHA.
Abbreviation: nFHA, nano-fluor-hydroxyapatite.