The recent emergence of nanotechnology has set high expectations in many fields of science, especially in biology and medicine. Nanotechnology-based approaches are expected to solve key questions in the emerging field of regenerative medicine. Regenerative medicine essentially deals with regeneration of cells, ultimately leading to the formation of tissues and organs. For this purpose, stem cells, embryonic stem cells or adult stem cells, are thought to be ideal resources. However, many challenges need to be addressed before the full therapeutic potential of stem cells can be harnessed. Controlling the differentiation of stem cells into cells of a specific lineage is extremely vital and challenging. Addressing this challenge, in this work, ...
The nervous system which controls our body consists of two parts, namely central nervous system (CNS...
Mesenchymal stem cells (MSC) display great proliferative, differentiative, chemotactic, and immune-m...
Mesenchymal stem cells (MSC) display great proliferative, differentiative, chemotactic, and immune-m...
Nanomaterials are highly versatile and allow us to effectively and dynamically control a myriad of b...
Stem cells, either neural [NSCs] or mesenchymal [MSCs], possess tremendous untapped potential for ce...
AbstractNanoparticulate delivery systems represent an area of particular promise for nanoneuromedici...
Regenerative medicine is the creation of a tissue or organ with normal structures and functions to r...
In tissue engineering and regenerative medicine, monitoring the status of stem cell differentiation ...
In tissue engineering and regenerative medicine, monitoring the status of stem cell differentiation ...
The mammalian brain is a phenomenal piece of "organic machinery" that has fascinated scientists and ...
The discovery of adult neurogenesis drastically changed the therapeutic approaches of central nervou...
ABSTRACT The biology of stem cells is one of the most dynamic and promising fields of the biological...
The discovery of adult neurogenesis drastically changed the therapeutic approaches of central nervou...
Abstract Background In the past decade, stem cells, with their ability to differentiate into various...
The utilization of nanotechnology in regenerative medicine has been globally proven to be the main ...
The nervous system which controls our body consists of two parts, namely central nervous system (CNS...
Mesenchymal stem cells (MSC) display great proliferative, differentiative, chemotactic, and immune-m...
Mesenchymal stem cells (MSC) display great proliferative, differentiative, chemotactic, and immune-m...
Nanomaterials are highly versatile and allow us to effectively and dynamically control a myriad of b...
Stem cells, either neural [NSCs] or mesenchymal [MSCs], possess tremendous untapped potential for ce...
AbstractNanoparticulate delivery systems represent an area of particular promise for nanoneuromedici...
Regenerative medicine is the creation of a tissue or organ with normal structures and functions to r...
In tissue engineering and regenerative medicine, monitoring the status of stem cell differentiation ...
In tissue engineering and regenerative medicine, monitoring the status of stem cell differentiation ...
The mammalian brain is a phenomenal piece of "organic machinery" that has fascinated scientists and ...
The discovery of adult neurogenesis drastically changed the therapeutic approaches of central nervou...
ABSTRACT The biology of stem cells is one of the most dynamic and promising fields of the biological...
The discovery of adult neurogenesis drastically changed the therapeutic approaches of central nervou...
Abstract Background In the past decade, stem cells, with their ability to differentiate into various...
The utilization of nanotechnology in regenerative medicine has been globally proven to be the main ...
The nervous system which controls our body consists of two parts, namely central nervous system (CNS...
Mesenchymal stem cells (MSC) display great proliferative, differentiative, chemotactic, and immune-m...
Mesenchymal stem cells (MSC) display great proliferative, differentiative, chemotactic, and immune-m...