2017
DOI: 10.1134/s0020168517030128
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Synthesis and properties of calcium hydroxyapatite/silk fibroin organomineral composites

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Cited by 17 publications
(9 citation statements)
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“…Hydrogels, which contained brushite, showed faster degradation and lower insoluble mass percent, contrarily samples with HAp were more stable and had higher gel fractions. Overall gel fraction is higher if Ca 2+ ions are included in the hydrogel because Ca 2+ ions make the polymer matrix more stable by creating an electrostatic interaction with silk and gelatin [ 43 ]. The polar and charged side chain groups inside the silk structure work as nucleation centers for CaP [ 16 ].…”
Section: Discussionmentioning
confidence: 99%
“…Hydrogels, which contained brushite, showed faster degradation and lower insoluble mass percent, contrarily samples with HAp were more stable and had higher gel fractions. Overall gel fraction is higher if Ca 2+ ions are included in the hydrogel because Ca 2+ ions make the polymer matrix more stable by creating an electrostatic interaction with silk and gelatin [ 43 ]. The polar and charged side chain groups inside the silk structure work as nucleation centers for CaP [ 16 ].…”
Section: Discussionmentioning
confidence: 99%
“…Furthermore, preferential growth of the crystals is observed since the c -axis (002) is aligned with the long-axis direction of fibroin. These events suggest that fibroin acts as a template that provides active sites for the nucleation and growth of HAp. ,, On the other hand, fibroin does not influence the crystallinity of HAp, being that HAp/Fibroin composites are characterized by a low crystallinity. ,,, These biomaterials have also demonstrated to have better biological properties in vitro than pure HAp in human osteoblast-like cell (MG-63) adhesion and proliferation. , In vivo studies using New Zealand adult rabbits confirmed these behaviors . When the percentage of silk fibroin incorporated into the HAp/Fibroin composite is low (2 wt %), the material is fragile and brittle (Table ).…”
Section: Fibroinmentioning
confidence: 99%
“…Because of their osteoconductive properties, silk materials containing HAP, bioactive ceramics and silica NPs have been studied. Nanocomposite scaffolds of silk and HAP are particularly interesting due to the ability of silk to “regulate” the mineralization of calcium phosphates, presumably through chemical interactions involving silk chemical groups (Kong et al, 2004 ; Zakharov et al, 2017 ). Silk/HAP scaffolds were manufactured using thermally induced phase separation (TIPS) (Wei and Ma, 2004 ) or lyophilization (Ye et al, 2017 ), to generate highly porous silk/nHAP composite scaffolds.…”
Section: Silk-based Bionanocompositesmentioning
confidence: 99%