Yuanhui Song,1 Yang Ju,1 Guanbin Song,2 Yasuyuki Morita1 1Department of Mechanical Science and Engineering, Nagoya University, Nagoya, Japan; 2Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing, People's Republic of China Abstract: Cell adhesion, migration, and proliferation are significantly affected by the surface topography of the substrates on which the cells are cultured. Alumina is one of the most popular implant materials used in orthopedics, but few data are available concerning the cellular responses of mesenchymal stem cells (MSCs) grown on nanoporous structures. MSCs were cultured on smooth alumina substrates and nanoporous alumina substra...
THESIS 11040Improved scaffold/host integration and avoiding core necrosis are important and active g...
The present study shows that alumina nanotopography affects monocyte/macrophage behavior. Human mono...
Biologically inspired materials are being developed with the aim of improving the integration of med...
The rapid development and application of nanotechnology to biological interfaces has impacted the bo...
The ability to control the cellular response is of critical importance when designing advanced bioma...
The objective of this work was to study adhesion, proliferation and differentiation of osteoblast ce...
Membranes made from nanoporous alumina exhibit interesting properties for their use in biomedical re...
This thesis describes a method of growing a highly adherent nano-porous alumina coating on titanium ...
Siyu Ni,1 Changyan Li,1 Shirong Ni,2 Ting Chen,1 Thomas J Webster3,4 1College of Chemistry, Chemica...
This thesis describes a method of growing a highly adherent nano-porous alumina coating on titanium ...
This thesis describes a method of growing a highly adherent nano-porous alumina coating on titanium ...
Nanoporous alumina membranes were utilized as cell culture substrates. Two different anodization pro...
This work studied the effect of nanoporous alumina in acute cellular response in an in vivo model. N...
Introduction: in the orthopedic perspective, tissue engineering is focused on the development of inn...
By decomposing a molecular precursor we fabricated a novel surface based on an aluminium/aluminiumox...
THESIS 11040Improved scaffold/host integration and avoiding core necrosis are important and active g...
The present study shows that alumina nanotopography affects monocyte/macrophage behavior. Human mono...
Biologically inspired materials are being developed with the aim of improving the integration of med...
The rapid development and application of nanotechnology to biological interfaces has impacted the bo...
The ability to control the cellular response is of critical importance when designing advanced bioma...
The objective of this work was to study adhesion, proliferation and differentiation of osteoblast ce...
Membranes made from nanoporous alumina exhibit interesting properties for their use in biomedical re...
This thesis describes a method of growing a highly adherent nano-porous alumina coating on titanium ...
Siyu Ni,1 Changyan Li,1 Shirong Ni,2 Ting Chen,1 Thomas J Webster3,4 1College of Chemistry, Chemica...
This thesis describes a method of growing a highly adherent nano-porous alumina coating on titanium ...
This thesis describes a method of growing a highly adherent nano-porous alumina coating on titanium ...
Nanoporous alumina membranes were utilized as cell culture substrates. Two different anodization pro...
This work studied the effect of nanoporous alumina in acute cellular response in an in vivo model. N...
Introduction: in the orthopedic perspective, tissue engineering is focused on the development of inn...
By decomposing a molecular precursor we fabricated a novel surface based on an aluminium/aluminiumox...
THESIS 11040Improved scaffold/host integration and avoiding core necrosis are important and active g...
The present study shows that alumina nanotopography affects monocyte/macrophage behavior. Human mono...
Biologically inspired materials are being developed with the aim of improving the integration of med...