Tissue engineering is a branch of regenerative medicine, which comprises the combination of biomaterials, cells and other bioactive molecules to regenerate tissues. Biomaterial scaffolds act as substrate and as physical support for cells and they can also reproduce the extracellular matrix cues. Although tissue engineering applications in cellular therapy tend to focus on the use of specialized cells from particular tissues or stem cells, little attention has been paid to endothelial progenitors, an important cell type in tissue regeneration. We combined 3D printed poly(lactic acid) scaffolds comprising two different pore sizes with human adipose-derived stromal cells (hASCs) and expanded CD133+ cells to evaluate how these two cell types re...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
[[abstract]]Development of transplantable engineered tissue has been hampered by lacking vascular ne...
[[abstract]]Development of transplantable engineered tissue has been hampered by lacking vascular ne...
[[abstract]]Development of transplantable engineered tissue has been hampered by lacking vascular ne...
Human adipose-derived stem cells (hASCs) have been shown to differentiate down many lineages includi...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
International audienceThe conventional tissue engineering is based on seeding of macroporous scaffol...
International audienceThe conventional tissue engineering is based on seeding of macroporous scaffol...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface (“top...
The wound healing process is much more complex than just the four phases of hemostasis, inflammation...
Blood supply is a critical issue in most tissue engineering approaches for large defect healing. As ...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
[[abstract]]Development of transplantable engineered tissue has been hampered by lacking vascular ne...
[[abstract]]Development of transplantable engineered tissue has been hampered by lacking vascular ne...
[[abstract]]Development of transplantable engineered tissue has been hampered by lacking vascular ne...
Human adipose-derived stem cells (hASCs) have been shown to differentiate down many lineages includi...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
International audienceThe conventional tissue engineering is based on seeding of macroporous scaffol...
International audienceThe conventional tissue engineering is based on seeding of macroporous scaffol...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface (“top...
The wound healing process is much more complex than just the four phases of hemostasis, inflammation...
Blood supply is a critical issue in most tissue engineering approaches for large defect healing. As ...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...