Regulation of cellular functions by an exogenous and non-invasive approach has the means of revolutionizing the field of tissue engineering. In this direction, use of electric fields has garnered significant interest due to its positive influence on cell adhesion, proliferation, and differentiation. Recently, this has been achieved by placing electrodes in direct contact with cells, or through a non-contact approach by inducing deformation of piezoelectric membranes. In this work, we have developed 3D magnetoelectric inverse opal scaffolds that can generate localized electric fields upon the application of magnetic fields. These scaffolds were composed of biodegradable poly(l-lactic acid), and cobalt ferrite@bismuth ferrite magnetoelectric ...
There is increasing interest in designing new biomaterials that could potentially be used in the for...
There is currently an interest in "active" implantable biomedical devices that include mechanical st...
Magnetic scaffolds are becoming increasingly attractive in tissue engineering, due to their ability ...
Regulation of cellular functions by an exogenous and non-invasive approach has the means of revoluti...
A novel approach for tissue engineering applications based on the use of magnetoelectric materials i...
Bone tissue repair strategies are gaining increasing relevance due to the growing incidence of bone ...
With the progressive aging of the population, bone fractures are an increasing major health concern....
We designed, fabricated and optimized 3D biomimetic magnetic structures that stimulate the osteogene...
One of the key challenges in reconstructive bone surgery is to provide living constructs that posses...
Abstract Bone tissue engineering (BTE) emerged as one of the exceptional means for bone defects owin...
Abstract: Several studies suggest that the modification of a biomaterial surface play an important r...
The histogenesis of bone tissue is strongly influenced by physical forces, including magnetic fields...
Engineering bone typically uses highly porous scaffolds, osteoblasts or cells that can become osteob...
This work reports on magnetoelectric biomaterials suitable for effective proliferation and different...
Supplementary material associated with this article can be found, in the online version, at doi:10.1...
There is increasing interest in designing new biomaterials that could potentially be used in the for...
There is currently an interest in "active" implantable biomedical devices that include mechanical st...
Magnetic scaffolds are becoming increasingly attractive in tissue engineering, due to their ability ...
Regulation of cellular functions by an exogenous and non-invasive approach has the means of revoluti...
A novel approach for tissue engineering applications based on the use of magnetoelectric materials i...
Bone tissue repair strategies are gaining increasing relevance due to the growing incidence of bone ...
With the progressive aging of the population, bone fractures are an increasing major health concern....
We designed, fabricated and optimized 3D biomimetic magnetic structures that stimulate the osteogene...
One of the key challenges in reconstructive bone surgery is to provide living constructs that posses...
Abstract Bone tissue engineering (BTE) emerged as one of the exceptional means for bone defects owin...
Abstract: Several studies suggest that the modification of a biomaterial surface play an important r...
The histogenesis of bone tissue is strongly influenced by physical forces, including magnetic fields...
Engineering bone typically uses highly porous scaffolds, osteoblasts or cells that can become osteob...
This work reports on magnetoelectric biomaterials suitable for effective proliferation and different...
Supplementary material associated with this article can be found, in the online version, at doi:10.1...
There is increasing interest in designing new biomaterials that could potentially be used in the for...
There is currently an interest in "active" implantable biomedical devices that include mechanical st...
Magnetic scaffolds are becoming increasingly attractive in tissue engineering, due to their ability ...