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Ion-Doped Silicate Bioceramic Coating of Ti-Based ImplantNanostructured glass-ceramic coatings for orthopaedic applicationsSynthesis of trace element Si and Sr codoping hydroxyapatite with non-cytotoxicity and enhanced cell proliferation and differentiation.A review on powder-based additive manufacturing for tissue engineering: selective laser sintering and inkjet 3D printingIn vitro and in vivo studies of surface-structured implants for bone formation.Orthopedic coating materials: considerations and applications.Current progress in bioactive ceramic scaffolds for bone repair and regeneration.Doped Calcium Silicate Ceramics: A New Class of Candidates for Synthetic Bone Substitutes.Hydroxyapatite and tricalcium phosphate composites with bioactive glass as second phase: State of the art and current applications.Cerium Oxide-Incorporated Calcium Silicate Coating Protects MC3T3-E1 Osteoblastic Cells from H2O2-Induced Oxidative Stress.Calcium silicate-based drug delivery systems.Tailoring of antibacterial Ag nanostructures on TiO2 nanotube layers by magnetron sputtering.Amorphous calcium silicate hydrate/block copolymer hybrid nanoparticles: synthesis and application as drug carriers.3D interconnected porous HA scaffolds with SiO2 additions: effect of SiO2 content and macropore size on the viability of human osteoblast cells.Effect of ionic products of dicalcium silicate coating on osteoblast differentiation and collagen production via TGF-β1 pathway.Functional Coatings or Films for Hard-Tissue ApplicationsOsteoblast-like cell adhesion on porous silicon-incorporated TiO2 coating prepared by micro-arc oxidation.Different response of osteoblastic cells to Mg(2+), Zn(2+) and Sr(2+) doped calcium silicate coatings.An evaluation of the processing conditions, structure, and properties (biaxial flexural strength and antibacterial efficacy) of sintered strontium-zinc-silicate glass ceramics.Preliminary evaluation of therapeutic ion release from Sr-doped zinc-silicate glass ceramics.The Effects of Cerium Oxide Incorporation in Calcium Silicate Coating on Bone Mesenchymal Stem Cell and Macrophage Responses.The adhesion and proliferation of bone marrow-derived mesenchymal stem cells promoted by nanoparticle surface.In vitro degradation and surface bioactivity of iron-matrix composites containing silicate-based bioceramic.A comparison in mechanical properties of cermets of calcium silicate with Ti-55Ni and Ti-6Al-4V alloys for hard tissues replacement.
P2860
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P2860
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on 08 August 2008
@en
vedecký článok
@sk
vetenskaplig artikel
@sv
videnskabelig artikel
@da
vědecký článek
@cs
name
Bioactive calcium silicate ceramics and coatings.
@en
Bioactive calcium silicate ceramics and coatings.
@nl
type
label
Bioactive calcium silicate ceramics and coatings.
@en
Bioactive calcium silicate ceramics and coatings.
@nl
prefLabel
Bioactive calcium silicate ceramics and coatings.
@en
Bioactive calcium silicate ceramics and coatings.
@nl
P2093
P1476
Bioactive calcium silicate ceramics and coatings.
@en
P2093
Angelo Carpi
Marco Morra
Xuanyong Liu
P304
P356
10.1016/J.BIOPHA.2008.07.051
P577
2008-08-08T00:00:00Z