As interest in using carbon nanotubes for developing biologically compatible systems continues to grow, biological inspiration is stimulating new directions for in vivo approaches. The ability to integrate nanotechnology-based systems in the body will provide greater successes if the implanted material is made to mimic elements of the biological milieu especially through tuning physical and chemical characteristics. Here, we demonstrate the highly successful capacity for in vivo implantation of a new carbon nanotube-based composite that is, itself, integrated with a hydroxyapatite-polymethyl methacrylate to create a nanocomposite. The success of this approach is grounded in finely tailoring the physical and chemical properties of this compo...
Hydroxyapatite (HA) has received wide attention in orthopedics, due to its biocompatibility and osse...
One of the main goals of bone tissue engineering is to identify and develop new biomaterials and sca...
The outstanding physico-chemical properties of carbon nanotubes (CNTs) applied to rectify the proble...
CESAMAs interest in using carbon nanotubes for developing biologically compatible systems continues ...
The reassessment of the literature stipulates that an increasing amount of research in exploring the...
Hydroxyapatite (HAp)/carbon nanotubes (CNTs) hybrid composite materials are successfully synthesized...
Biomaterials are extensively used in bone defect recovery caused by bone diseases. Multi-walled carb...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
Biological tissues are compositionally and structurally exquisite – a complex network of proteins an...
From Springer Nature via Jisc Publications RouterHistory: received 2020-03-02, accepted 2020-09-29, ...
This report describes the mechanical, thermal and biological characterisation of a solid free form m...
International audienceAn alternative and simple coprecipitation method was developed to obtain carbo...
Poor wear resistance and low fracture toughness are the main disadvantages of using hydroxyapatite (...
Current challenges in existing metallic biomaterials encourage undertaking research in the developme...
In order to improve the inherently poor mechanical properties of hydroxyapatite (HAp) and to increas...
Hydroxyapatite (HA) has received wide attention in orthopedics, due to its biocompatibility and osse...
One of the main goals of bone tissue engineering is to identify and develop new biomaterials and sca...
The outstanding physico-chemical properties of carbon nanotubes (CNTs) applied to rectify the proble...
CESAMAs interest in using carbon nanotubes for developing biologically compatible systems continues ...
The reassessment of the literature stipulates that an increasing amount of research in exploring the...
Hydroxyapatite (HAp)/carbon nanotubes (CNTs) hybrid composite materials are successfully synthesized...
Biomaterials are extensively used in bone defect recovery caused by bone diseases. Multi-walled carb...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
Biological tissues are compositionally and structurally exquisite – a complex network of proteins an...
From Springer Nature via Jisc Publications RouterHistory: received 2020-03-02, accepted 2020-09-29, ...
This report describes the mechanical, thermal and biological characterisation of a solid free form m...
International audienceAn alternative and simple coprecipitation method was developed to obtain carbo...
Poor wear resistance and low fracture toughness are the main disadvantages of using hydroxyapatite (...
Current challenges in existing metallic biomaterials encourage undertaking research in the developme...
In order to improve the inherently poor mechanical properties of hydroxyapatite (HAp) and to increas...
Hydroxyapatite (HA) has received wide attention in orthopedics, due to its biocompatibility and osse...
One of the main goals of bone tissue engineering is to identify and develop new biomaterials and sca...
The outstanding physico-chemical properties of carbon nanotubes (CNTs) applied to rectify the proble...