Hydroxyapatite nanophases augmented with selenium and manganese ions for bone regeneration: Physiochemical, microstructural and biological characterization

Hydroxyapatite (HAP) nanopowders with different manganese (Mn) and selenium (Se) contents with Mn/Ca and Se/P molar ratio of 1 mol%, 2.5 mol% and 5 mol% were synthesized by wet-co-chemical precipitation method. The results revealed that with either Mn or Se doping, ion-substituted apatite phase was...

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Veröffentlicht in:MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS 2021-07, Vol.126, p.112149-112149, Article 112149
Hauptverfasser: Muthusamy, Shalini, Mahendiran, Balaji, Sampath, Sowndarya, Jaisankar, Sellamuthu N., Anandasadagopan, Suresh Kumar, Krishnakumar, Gopal Shankar
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Sprache:eng
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Zusammenfassung:Hydroxyapatite (HAP) nanopowders with different manganese (Mn) and selenium (Se) contents with Mn/Ca and Se/P molar ratio of 1 mol%, 2.5 mol% and 5 mol% were synthesized by wet-co-chemical precipitation method. The results revealed that with either Mn or Se doping, ion-substituted apatite phase was achieved with good crystallographic features. The combined evidence obtained from spectrometric techniques revealed that nanocrystalline HAP was effectively doped with Mn and Se ions, where Se in form of SeO32− replaced PO43− and Mn2+ replaced Ca2+. Mn and Se doped HAP samples exhibited rod-like and needle-like morphology with strong tendency to form agglomerates. HAP enriched with Mn and Se represented a strong antibacterial effect and also showed prominent blood compatibility. From the biocompatibility testing, it was evident that Mn and Se doped HAP augmented the osteoblasts adhesion, migration and proliferation in a dose-dependent manner. To conclude from this study, it is clearly evident that the doping amount of both Mn and Se ions can determine the size and morphology of the final HAP product. Therefore, Mn and Se HAP nanopowders with molar ratio less than 5 mol% without any heat treatment can provide good crystallographic features to HAP with satisfying micro-structural, thermal and biological properties. [Display omitted] •Synthesis and characterization of HAP enriched with Mn and Se ions.•Doping amount of Mn and Se ions influence the size and morphology of the final HAP.•Doped HAP samples were blood compatible and demonstrated antibacterial activity.•Mn and Se doped HAP samples supported MG63 cells attachment and proliferation.
ISSN:0928-4931
1873-0191
DOI:10.1016/j.msec.2021.112149