2021
DOI: 10.1016/j.radphyschem.2021.109408
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Nanocomposite of cosubstituted carbonated hydroxyapatite fabricated inside Poly(sodium hyaluronate-acrylamide) hydrogel template prepared by gamma radiation for osteoblast cell regeneration

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Cited by 39 publications
(25 citation statements)
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“…While the peaks at 2931 and 2783 cm −1 ascribed to the C–H asymmetrical stretching and vibrations in methyl and methylene structures, respectively 29 . And the peak at 1675 cm −1 is assigned to the C=O stretching vibrations 30 . Compared with PAM hydrogel, AL‐0 composite hydrogel has characteristic peaks of CMX at 1601 and 920 cm −1 , which attribute to the presence of the COO − group 31 and arabinose units, 32 respectively.…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…While the peaks at 2931 and 2783 cm −1 ascribed to the C–H asymmetrical stretching and vibrations in methyl and methylene structures, respectively 29 . And the peak at 1675 cm −1 is assigned to the C=O stretching vibrations 30 . Compared with PAM hydrogel, AL‐0 composite hydrogel has characteristic peaks of CMX at 1601 and 920 cm −1 , which attribute to the presence of the COO − group 31 and arabinose units, 32 respectively.…”
Section: Resultsmentioning
confidence: 99%
“…29 And the peak at 1675 cm À1 is assigned to the C=O stretching vibrations. 30 Compared with PAM hydrogel, AL-0 composite hydrogel has characteristic peaks of CMX at 1601 and 920 cm À1 , which attribute to the presence of the COO À group 31 and arabinose units, 32 respectively. In the spectrum of AL-3.7 composite hydrogel, an increase in peak intensity at 1601 and 1422 cm À1 corresponds to the stretching vibration of the benzene ring skeleton.…”
Section: Resultsmentioning
confidence: 99%
“…The hydrogel acted as a HA template and carbon precursor. In vitro studies demonstrated that using this hydrogel as a biocompatible nanomaterial improved osteogenic ability compared with HA [ 120 ]. Davidenko et al prepared collagen- and gelatin-based scaffolds crosslinked through UV irradiation (λ = 254 nm) to modulate the materials’ properties while keeping their biological functionality [ 121 ].…”
Section: Crosslinking Methods and Agents In Ha-based Composite Scaffoldsmentioning
confidence: 99%
“…Bioactive ceramics (Hydroxyapatite (HA) and bioactive glass might be natural or manufactured. They are chemically comparable to bone and have great compressive strength but low flexibility, offering high rigidity but also fragility [ 49 , 50 ]. Composites are made up of two or more materials with distinct qualities, each with its own set of benefits and drawbacks [ 50 , 51 , 52 ].…”
Section: Properties Of Scaffolds For Periodontal and Bone Regenerationmentioning
confidence: 99%