Nanotechnologies are emerging platforms that could be useful in measuring, understanding, and manipulating stem cells. Examples include magnetic nanoparticles and quantum dots for stem cell labeling and in vivo tracking; nanoparticles, carbon nanotubes, and polyplexes for the intracellular delivery of genes/oligonucleotides and protein/peptides; and engineered nanometer-scale scaffolds for stem cell differentiation and transplantation. This review examines the use of nanotechnologies for stem cell tracking, differentiation, and transplantation. We further discuss their utility and the potential concerns regarding their cytotoxicity
ABSTRACT The biology of stem cells is one of the most dynamic and promising fields of the biological...
Stem cell-based therapies have been shown potential in regenerative medicine. In these cells, mesenc...
The utilization of nanotechnology in regenerative medicine has been globally proven to be the main ...
Nanotechnologies are emerging platforms that could be useful in measuring, understanding, and manipu...
The precise control of stem cell behavior, including differentiation, transdifferentiation, and repr...
Currently, stem cell nanotechnology is one of the novel and exciting fields. Certain experimental st...
The nanoparticles or nanobots are equivalent to the size of biological molecules of the human body a...
Abstract In recent years, stem cell nanotechnology has emerged as a new exciting field. Theoretical ...
The nanoparticles or nanobots are equivalent to the size of biological molecules of the human body a...
Stem cells, either neural [NSCs] or mesenchymal [MSCs], possess tremendous untapped potential for ce...
Stem cells are known for their potential to repair damaged tissues. The adhesion, growth and differe...
Abir O El-Sadik1, Afaf El-Ansary2, Sherif M Sabry31Stem Cell Unit, Anatomy Department, College of Me...
Copyright © 2016 Lisa Accomasso et al.This is an open access article distributed under the Creative ...
Advances in stem cell research have provided important understanding of the cell biology and offered...
Advances in stem cell research have provided important understanding of the cell biology and offered...
ABSTRACT The biology of stem cells is one of the most dynamic and promising fields of the biological...
Stem cell-based therapies have been shown potential in regenerative medicine. In these cells, mesenc...
The utilization of nanotechnology in regenerative medicine has been globally proven to be the main ...
Nanotechnologies are emerging platforms that could be useful in measuring, understanding, and manipu...
The precise control of stem cell behavior, including differentiation, transdifferentiation, and repr...
Currently, stem cell nanotechnology is one of the novel and exciting fields. Certain experimental st...
The nanoparticles or nanobots are equivalent to the size of biological molecules of the human body a...
Abstract In recent years, stem cell nanotechnology has emerged as a new exciting field. Theoretical ...
The nanoparticles or nanobots are equivalent to the size of biological molecules of the human body a...
Stem cells, either neural [NSCs] or mesenchymal [MSCs], possess tremendous untapped potential for ce...
Stem cells are known for their potential to repair damaged tissues. The adhesion, growth and differe...
Abir O El-Sadik1, Afaf El-Ansary2, Sherif M Sabry31Stem Cell Unit, Anatomy Department, College of Me...
Copyright © 2016 Lisa Accomasso et al.This is an open access article distributed under the Creative ...
Advances in stem cell research have provided important understanding of the cell biology and offered...
Advances in stem cell research have provided important understanding of the cell biology and offered...
ABSTRACT The biology of stem cells is one of the most dynamic and promising fields of the biological...
Stem cell-based therapies have been shown potential in regenerative medicine. In these cells, mesenc...
The utilization of nanotechnology in regenerative medicine has been globally proven to be the main ...