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  1. Journal of Materials Science: Materials in Medicine
  2. Journal of Materials Science: Materials in Medicine : Volume 25
  3. Journal of Materials Science: Materials in Medicine : Volume 25, Issue 10, October 2014
  4. Study of in vitro degradation of brushite cements scaffolds
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Journal of Materials Science: Materials in Medicine : Volume 28
Journal of Materials Science: Materials in Medicine : Volume 27
Journal of Materials Science: Materials in Medicine : Volume 26
Journal of Materials Science: Materials in Medicine : Volume 25
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 12, December 2014
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 11, November 2014
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 10, October 2014
Synthesis and characterization of zinc and calcium nanoferrites
Study on the efficiency of nanosized magnetite and mixed ferrites in magnetic hyperthermia
Bioactive magnetic nanoparticles of Fe–Ga synthesized by sol–gel for their potential use in hyperthermia treatment
Conjugation of amino-bioactive glasses with 5-aminofluorescein as probe molecule for the development of pH sensitive stimuli-responsive biomaterials
Survival-rate analysis of surface treated dental zirconia (Y-TZP) ceramics
Improved tribo-mechanical behavior of CaP-containing TiO$_{2}$ layers produced on titanium by shot blasting and micro-arc oxidation
Porous NiTi shape memory alloys produced by SHS: microstructure and biocompatibility in comparison with Ti$_{2}$Ni and TiNi$_{3}$
Optimisation of a two-liquid component pre-filled acrylic bone cement system: a design of experiments approach to optimise cement final properties
Study of in vitro degradation of brushite cements scaffolds
PH-responsive collagen fibrillogenesis in confined droplets induced by vapour diffusion
Comparative performance of collagen nanofibers electrospun from different solvents and stabilized by different crosslinkers
Optimization of fully aligned bioactive electrospun fibers for “in vitro” nerve guidance
Synthesis of bioactive β-TCP coatings with tailored physico-chemical properties on zirconia bioceramics
Treating orthopedic prosthesis with diamond-like carbon: minimizing debris in Ti6Al4V
Apatite bone cement reinforced with calcium silicate fibers
Smart magnetic poly(N-isopropylacrylamide) to control the release of bio-active molecules
Adsorption on apatitic calcium phosphates for drug delivery: interaction with bisphosphonate molecules
In vitro and in vivo evaluation of silicated hydroxyapatite and impact of insulin adsorption
Semi-quantitative monitoring of confluence of adherent mesenchymal stromal cells on calcium-phosphate granules by using widefield microscopy images
Multifunctional substrates of thin porous alumina for cell biosensors
Growth on poly(l-lactic acid) porous scaffold preserves CD73 and CD90 immunophenotype markers of rat bone marrow mesenchymal stromal cells
A one-step treatment for chondral and osteochondral knee defects: clinical results of a biomimetic scaffold implantation at 2 years of follow-up
Bone substitutes in orthopaedic surgery: from basic science to clinical practice
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 9, September 2014
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 8, August 2014
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 7, July 2014
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 6, June 2014
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 5, May 2014
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 4, April 2014
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 3, March 2014
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 2, February 2014
Journal of Materials Science: Materials in Medicine : Volume 25, Issue 1, January 2014
Journal of Materials Science: Materials in Medicine : Volume 24
Journal of Materials Science: Materials in Medicine : Volume 23
Journal of Materials Science: Materials in Medicine : Volume 22
Journal of Materials Science: Materials in Medicine : Volume 21
Journal of Materials Science: Materials in Medicine : Volume 20
Journal of Materials Science: Materials in Medicine : Volume 19
Journal of Materials Science: Materials in Medicine : Volume 18
Journal of Materials Science: Materials in Medicine : Volume 17
Journal of Materials Science: Materials in Medicine : Volume 16
Journal of Materials Science: Materials in Medicine : Volume 15
Journal of Materials Science: Materials in Medicine : Volume 14
Journal of Materials Science: Materials in Medicine : Volume 13
Journal of Materials Science: Materials in Medicine : Volume 12
Journal of Materials Science: Materials in Medicine : Volume 11
Journal of Materials Science: Materials in Medicine : Volume 10
Journal of Materials Science: Materials in Medicine : Volume 9
Journal of Materials Science: Materials in Medicine : Volume 8

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Study of in vitro degradation of brushite cements scaffolds

Content Provider Springer Nature Link
Author Renó, Caroline Pereta, Nicholas C. Bertran, Celso A. Motisuke, Mariana de Sousa, Eliandra
Copyright Year 2014
Abstract An interest path to fabricate supports for tissue engineering is to foam calcium phosphate cement’s pastes leading to an increase on material’s total porosity and interconnectivity which facilitates cells’ adhesion, proliferation and differentiation. The aim of this work is to develop scaffolds of brushite cement and to evaluate its in vitro degradation rate. Macroporosity was obtained by foaming the liquid phase with different non-ionic surfactants (Tween 80 and Lutensol ON-110). The foam stability was achieved by adding chitosan. The scaffolds were immersed in Ringers$^{®}$ solution during 7, 14, 21 and 28 days and samples’ microstructure, weight loss, mechanical resistance and apparent porosity were evaluated. Both scaffolds presented interconnected macropores with sizes ranging from 100 to 360 µm and total porosities higher than 60 %. These properties could facilitate cell infiltration, bone growth and vascularization. The scaffolds obtained in this work should be considered as promising materials for application in bone tissue engineering.
Starting Page 2297
Ending Page 2303
Page Count 7
File Format PDF
ISSN 09574530
Journal Journal of Materials Science: Materials in Medicine
Volume Number 25
Issue Number 10
e-ISSN 15734838
Language English
Publisher Springer US
Publisher Date 2014-07-17
Publisher Place Boston
Access Restriction Subscribed
Subject Keyword Biomaterials Biomedical Engineering Regenerative Medicine/Tissue Engineering Polymer Sciences Ceramics, Glass, Composites, Natural Methods Surfaces and Interfaces, Thin Films
Content Type Text
Resource Type Article
Subject Biomaterials Biophysics Bioengineering Biomedical Engineering
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