2016
DOI: 10.1007/s11665-016-2086-4
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Influence of Fe3O4 Nanoparticles in Hydroxyapatite Scaffolds on Proliferation of Primary Human Fibroblast Cells

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Cited by 24 publications
(18 citation statements)
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“…According to the method, reagents and variables adopted, it is possible to obtain materials based on CaP with different phases, which results in materials with diverse characteristics and properties, such as crystalline defects, high surface area, organic material affinity found in physiological medium and so on [46]. HAp can be synthesized by a variety of techniques that can be broadly grouped into six sets of methods: i) dry methods: involve solid state and mechanochemical reactions [63][64][65][66][67]; ii) wet methods: based on low-temperature chemical precipitation [68], co-precipitation [66,69,70], sol-gel route [71][72][73][74][75][76] and hydrolysis [77,78]; iii) hydrothermal methods: use aqueous solutions of high temperature and high voltage, as hydrothermal [79][80][81], emulsion and microemulsion [82,83], and sonochemical [84]; iv) high temperature processes: include combustion [85,86] and pyrolysis [87,88]; v) synthesis based on biogenic sources: can be extracted from fish bones [89], shells [90], eggshells [91,92], bovine bones [93,94], in the presence of biomolecules [95][96][97] or biomembranes [98]; and vi) combination of the aforementioned methods. All methods used for synthesizing HAp particles have different processing characteristics and can result ...…”
Section: Synthesis Of Hydroxyapatitementioning
confidence: 99%
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“…According to the method, reagents and variables adopted, it is possible to obtain materials based on CaP with different phases, which results in materials with diverse characteristics and properties, such as crystalline defects, high surface area, organic material affinity found in physiological medium and so on [46]. HAp can be synthesized by a variety of techniques that can be broadly grouped into six sets of methods: i) dry methods: involve solid state and mechanochemical reactions [63][64][65][66][67]; ii) wet methods: based on low-temperature chemical precipitation [68], co-precipitation [66,69,70], sol-gel route [71][72][73][74][75][76] and hydrolysis [77,78]; iii) hydrothermal methods: use aqueous solutions of high temperature and high voltage, as hydrothermal [79][80][81], emulsion and microemulsion [82,83], and sonochemical [84]; iv) high temperature processes: include combustion [85,86] and pyrolysis [87,88]; v) synthesis based on biogenic sources: can be extracted from fish bones [89], shells [90], eggshells [91,92], bovine bones [93,94], in the presence of biomolecules [95][96][97] or biomembranes [98]; and vi) combination of the aforementioned methods. All methods used for synthesizing HAp particles have different processing characteristics and can result ...…”
Section: Synthesis Of Hydroxyapatitementioning
confidence: 99%
“…In vitro biocompatibility studies using osteoblasts (MG63) and fibroblast cells (NIH 3T3) indicated the non-toxic nature of the obtained HAp powder. HAp can be extracted from bovine cortical bone by performing heat treatment at high temperature in order to synthesize HAp powder, followed by milling to obtain particles in the desired size [93,94].…”
Section: Synthesis By Biogenic Sourcesmentioning
confidence: 99%
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“…When the particle size is less than 30 nm in diameter, the thermal fluctuation energy is equivalent to the magnetocrystalline anisotropy energy, which is enough to cause the whole crystallite to rotate freely, thereby exhibiting superparamagnetism [ 21 , 22 ]. Even if no external magnetic field is applied, the superparamagnetic Fe 3 O 4 nanoparticle can be regarded as a single magnetic domain without a domain wall, providing a micro-magnetic source for the nano-scale magnetic field [ 23 , 24 ]. In addition, Fe 3 O 4 nanoparticles approved by the Food and Drug Administration (FDA) of United States of America for clinical use, have excellent biocompatibility and safety, and are widely used in bone tissue engineering [ 25 , 26 , 27 ].…”
Section: Introductionmentioning
confidence: 99%
“…The connection of the cells with the surface leads to creating communication and signaling between the cell and the HA coating, which can increase cell proliferation . By increasing the cell proliferation at the interface between the surface of the HA and the culture medium, cell proliferation of the medium will be enhanced by the effect of the increased cells at the culture medium‐coating interface due to the intercellular signals . The presence of the TiO 2 , CaTiO 3 , and Ca 3 (PO 4 ) 2 phases and MWCNTs particles in the HA coating increased the amount of ions absorbed from the culture medium, which is due to the difference in the value of the PZC of these phases compared with the HA .…”
Section: Resultsmentioning
confidence: 99%