Neural stem cells (NSCs) raised the hope for cell-based therapies in human neurodevelopmental and neurodegenerative diseases. Current research strategies aim to isolate, enrich, and propagate homogeneous populations of neural stem cells. Unfortunately, several concerns with NSC cultures currently may limit their therapeutic promise. Exhaustion of growth factors and/or their uncontrolled release with burst and fall in their concentration may greatly affect the in vitro behavior of NSCs. In this context, we investigate whether a device containing heparan sulfate (HS), which is a co-factor in growth factor-mediated cell proliferation and differentiation, could potentiate and prolong the delivery of fibroblast growth factor-2 (FGF-2) and ...
<p>Background: Due to their relative ease of isolation and their high ex vivo and in vitro expansive...
Cell-based therapy could aid in alleviating symptoms or even reversing the progression of neurodegen...
Unspecialized, self-renewing stem cells have extraordinary application to regenerative medicine due ...
Neural stem cells (NSCs) raised the hope for cell-based therapies in human neurodevelopmental and n...
AbstractNeural stem cells (NSCs) raised the hope for cell-based therapies in human neurodevelopmenta...
""Neural stem cells (NSCs) are the self-renewing, multipotent cells that generate the main p...
Heparin and heparan sulfate (HS) are attractive components for constructing biomaterials due to thei...
Cost-effective expansion of human mesenchymal stem/stromal cells (hMSCs) remains a key challenge for...
Three-dimensional (3D) synthetic heparan sulfate (HS) constructs possess promising attributes for ne...
Growth factors and other regulatory molecules are required to direct differentiation of bone marrow-...
Neural stem cells (NSCs) possess great potential for neural tissue repair after traumatic injuries t...
Background: Due to their relative ease of isolation and their high ex vivo and in vitro expansive po...
Background: Due to their relative ease of isolation and their high ex vivo and in vitro expansive po...
Mouse embryonic stem (mES) cells express a low sulfated form of heparan sulfate (HS). HS chains disp...
An essential aspect of stem cell in vitro culture and in vivo therapy is achieving sustained levels ...
<p>Background: Due to their relative ease of isolation and their high ex vivo and in vitro expansive...
Cell-based therapy could aid in alleviating symptoms or even reversing the progression of neurodegen...
Unspecialized, self-renewing stem cells have extraordinary application to regenerative medicine due ...
Neural stem cells (NSCs) raised the hope for cell-based therapies in human neurodevelopmental and n...
AbstractNeural stem cells (NSCs) raised the hope for cell-based therapies in human neurodevelopmenta...
""Neural stem cells (NSCs) are the self-renewing, multipotent cells that generate the main p...
Heparin and heparan sulfate (HS) are attractive components for constructing biomaterials due to thei...
Cost-effective expansion of human mesenchymal stem/stromal cells (hMSCs) remains a key challenge for...
Three-dimensional (3D) synthetic heparan sulfate (HS) constructs possess promising attributes for ne...
Growth factors and other regulatory molecules are required to direct differentiation of bone marrow-...
Neural stem cells (NSCs) possess great potential for neural tissue repair after traumatic injuries t...
Background: Due to their relative ease of isolation and their high ex vivo and in vitro expansive po...
Background: Due to their relative ease of isolation and their high ex vivo and in vitro expansive po...
Mouse embryonic stem (mES) cells express a low sulfated form of heparan sulfate (HS). HS chains disp...
An essential aspect of stem cell in vitro culture and in vivo therapy is achieving sustained levels ...
<p>Background: Due to their relative ease of isolation and their high ex vivo and in vitro expansive...
Cell-based therapy could aid in alleviating symptoms or even reversing the progression of neurodegen...
Unspecialized, self-renewing stem cells have extraordinary application to regenerative medicine due ...