Strontium hydroxyapatite/chitosan nanohybrid scaffolds with enhanced osteoinductivity for bone tissue engineering

Y Lei, Z Xu, Q Ke, W Yin, Y Chen, C Zhang… - Materials Science and …, 2017 - Elsevier
For the clinical application of bone tissue engineering with the combination of biomaterials
and mesenchymal stem cells (MSCs), bone scaffolds should possess excellent …

[HTML][HTML] Calcium silicate/chitosan-coated electrospun poly (lactic acid) fibers for bone tissue engineering

CJ Su, MG Tu, LJ Wei, TT Hsu, CT Kao, TH Chen… - Materials, 2017 - mdpi.com
Electrospinning technology allows fabrication of nano-or microfibrous fibers with inorganic
and organic matrix and it is widely applied in bone tissue engineering as it allows precise …

Influence of magnesium and silver ions on rheological properties of hydroxyapatite/chitosan/calcium sulphate based bone cements

A Zima, J Czechowska, D Siek, A Ślósarczyk - Ceramics International, 2017 - Elsevier
Rheology of bioceramic bone cements is usually described as properties of ceramic slurries,
neglecting the self-setting character of these materials. In our studies calcium sulphate …

Controlled gentamicin-strontium release as a dual action bone agent: combination of the porous titanium scaffold and biodegradable polymers

M Khodaei, A Valanezhad, I Watanabe - Journal of Alloys and Compounds, 2017 - Elsevier
Titanium is considered a promising biomaterial for load bearing implantation in orthopedics.
However, its biologically inert behavior makes the surface treatment essential to improve the …

Evaluation of bioabsorbable multiamino acid copolymer/nanohydroxyapatite/calcium sulfate cage in a goat spine model

C Ren, Y Song, Y Xue, X Yang, C Zhou - World Neurosurgery, 2017 - Elsevier
Background Currently, polylactide is the most popular material used to made bioabsorbable
cages but too-quick degradation and osteolysis around the cage have been reported in the …