In this article we present the morphological and magnetic characterization of ferrofluid-impregnated biomimetic scaffolds made of hydroxyapatite and collagen used for bone reconstruction. We describe an innovative and simple impregnation process by which the ferrofluid is firmly adsorbed onto the hydroxyapatite/collagen scaffolds. The process confers sufficient magnetization to attract potential magnetic carriers, which may be used to transport bioactive agents that favour bone regeneration. The crystalline structure of the magnetite contained in the ferrofluid is preserved and its quantity, estimated from the weight gain due to the impregnation process, is consistent with that obtained from energy dispersive X-ray spectroscopy. The magneti...
This paper describes a simple method for the room temperature synthesis of magnetite/hydroxyapatite ...
Magnetic scaffolds have recently attracted significant attention in tissue engineering due to the pr...
Xiao Bo Zeng, Hao Hu, Li Qin Xie, Fang Lan, Wen Jiang, Yao Wu, Zhong Wei GuNational Engineering Rese...
In this article we present the morphological and magnetic characterization of ferrofluid-impregnated...
In this article we present the morphological and magnetic characterization of ferrofluid-impregnated...
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
Magnetic materials are of interest for biomedical applications for the ability to remotely control m...
This work reports on the synthesis, with the thermally induced phase separation (TIPS) technique, of...
A bioinspired mineralization process was applied to develop biomimetic hybrid scaffolds made of (Fe<...
The use of magnetism in tissue engineering is a very promising approach, in fact magnetic scaffolds ...
The use of magnetic activation has been proposed to answer the growing need for assisted bone and va...
none15siThe use of magnetism in tissue engineering is a very promising approach, in fact magnetic sc...
We realized the synthesis of a novel nanogranular system consisting of magnetite nanoparticles embed...
[[abstract]]In this study, synthetic hydroxyapatite nanoparticles (Hap NPs) were rendered magnetic b...
This paper describes a simple method for the room temperature synthesis of magnetite/hydroxyapatite ...
Magnetic scaffolds have recently attracted significant attention in tissue engineering due to the pr...
Xiao Bo Zeng, Hao Hu, Li Qin Xie, Fang Lan, Wen Jiang, Yao Wu, Zhong Wei GuNational Engineering Rese...
In this article we present the morphological and magnetic characterization of ferrofluid-impregnated...
In this article we present the morphological and magnetic characterization of ferrofluid-impregnated...
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
Magnetic materials are of interest for biomedical applications for the ability to remotely control m...
This work reports on the synthesis, with the thermally induced phase separation (TIPS) technique, of...
A bioinspired mineralization process was applied to develop biomimetic hybrid scaffolds made of (Fe<...
The use of magnetism in tissue engineering is a very promising approach, in fact magnetic scaffolds ...
The use of magnetic activation has been proposed to answer the growing need for assisted bone and va...
none15siThe use of magnetism in tissue engineering is a very promising approach, in fact magnetic sc...
We realized the synthesis of a novel nanogranular system consisting of magnetite nanoparticles embed...
[[abstract]]In this study, synthetic hydroxyapatite nanoparticles (Hap NPs) were rendered magnetic b...
This paper describes a simple method for the room temperature synthesis of magnetite/hydroxyapatite ...
Magnetic scaffolds have recently attracted significant attention in tissue engineering due to the pr...
Xiao Bo Zeng, Hao Hu, Li Qin Xie, Fang Lan, Wen Jiang, Yao Wu, Zhong Wei GuNational Engineering Rese...