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Effects of novel hydroxyapatite-based 3D biomaterials on proliferation and osteoblastic differentiation of mesenchymal stem cells
(Wiley-Blackwell, Hoboken, 2015)
The aim of this study was to examine the differential capacity of isolated dental pulp stem cells (SHED) cultured onto four different scaffold materials. The differential potential of isolated SHED was examined on the ...
Marginal microleakage of newly synthesized nanostructured biomaterials based on active calcium silicate systems and hydroxyapatite / Ispitivanje marginalne mikropropustljivosti novosintetisanih nanostrukturnih biomaterijala na bazi aktivnih kalcijum silikatnih sistema i hidroksiapatita
(Srpsko lekarsko društvo - Stomatološka sekcija, Beograd, 2015)
Introduction Calcium silicate cements can be successfully used for the treatment of root perforations due to their exceptional biological and sealing properties. The aim of this study was to test, using dye penetration ...
Biocompatibility of new nanostructural materials based on active silicate systems and hydroxyapatite: in vitro and in vivo study
(Wiley, Hoboken, 2015)
AimTo evaluate in vitro cytotoxicity and in vivo inflammatory response to new nanostructural materials based on active calcium silicate systems (CS) and hydroxyapatite (HA-CS). MethodologyCytotoxicity of eluates of new ...