Nanotechnology is a rapidly emerging technology dealing with so-called nanomaterials which at least in one dimension have size smaller than 100 nm. One of the most potentially promising applications of nanotechnology is in the area of tissue engineering, including biofabrication of 3D human tissues and organs. This paper focused on demonstrating how nanomaterials with nanolevel size can contribute to development of 3D human tissues and organs which have macrolevel organization. Specific nanomaterials such as nanofibers and nanoparticles are discussed in the context of their application for biofabricating 3D human tissues and organs. Several examples of novel tissue and organ biofabrication technologies based on using novel nanomaterials are...
Types of progress in nanobiotechnology remain upsetting our ability to recognize regular complexitie...
The utilization of biomedical nanotechnologies and nanomaterials has surged in the field of 3D bone ...
Electrospun nanofibers have high potential to improve properties and performance of biomedical mater...
Nanotechnology is a rapidly emerging technology dealing with so-called nanomaterials which at least ...
Nanotechnology is a quickly developing innovation managing supposed nanomaterials which in any event...
This review proposes to present how materials at nanolevel scale can contribute to the development o...
Recent advances on nanotechnology have created new frontiers, terminologies, and possibilities that ...
The first clinically successful implantation of tissue engineered blood vessel is now a reality and ...
Nanotechnology as a versatile vehicle to create biomimetic nanostructured tissue-engineered neural s...
As an interdisciplinary field, tissue engineering (TE) aims to regenerate tissues by combining the p...
Regenerative medicine is an emerging multidisciplinary field that aims to restore, maintain or enhan...
The development of functional, biological solutions to repair or replace damaged tissues and organs ...
Nanotechnology and nanostructured materials for drug delivery and tissue engineering applications ar...
<p>Since its inception, the field of tissue engineering has sought to rebuild the complexity of norm...
3D Bioprinting (3DBP) technologies open many possibilities for the generation of highly complex cell...
Types of progress in nanobiotechnology remain upsetting our ability to recognize regular complexitie...
The utilization of biomedical nanotechnologies and nanomaterials has surged in the field of 3D bone ...
Electrospun nanofibers have high potential to improve properties and performance of biomedical mater...
Nanotechnology is a rapidly emerging technology dealing with so-called nanomaterials which at least ...
Nanotechnology is a quickly developing innovation managing supposed nanomaterials which in any event...
This review proposes to present how materials at nanolevel scale can contribute to the development o...
Recent advances on nanotechnology have created new frontiers, terminologies, and possibilities that ...
The first clinically successful implantation of tissue engineered blood vessel is now a reality and ...
Nanotechnology as a versatile vehicle to create biomimetic nanostructured tissue-engineered neural s...
As an interdisciplinary field, tissue engineering (TE) aims to regenerate tissues by combining the p...
Regenerative medicine is an emerging multidisciplinary field that aims to restore, maintain or enhan...
The development of functional, biological solutions to repair or replace damaged tissues and organs ...
Nanotechnology and nanostructured materials for drug delivery and tissue engineering applications ar...
<p>Since its inception, the field of tissue engineering has sought to rebuild the complexity of norm...
3D Bioprinting (3DBP) technologies open many possibilities for the generation of highly complex cell...
Types of progress in nanobiotechnology remain upsetting our ability to recognize regular complexitie...
The utilization of biomedical nanotechnologies and nanomaterials has surged in the field of 3D bone ...
Electrospun nanofibers have high potential to improve properties and performance of biomedical mater...