Human somatic stem cells with neural differentiation potential can be valuable for developing cell-based therapies, including treatment of birth-related defects, while avoiding issues associated with cell reprogramming. Precisely defining the "identity" and differentiation potential of somatic stem cells from different sources, has proven difficult, given differences in sets of specific markers, protocols used and lack of side-by-side characterization of these cells in different studies. Therefore, we set to compare expression of mesenchymal and neural markers in human umbilical cord-derived mesenchymal stem cells (UC-MSCs), pediatric adipose-derived stem cells (p-ADSCs) in parallel with human neural stem cells (NSCs). We show that UC-MSCs ...
Background In contrast to pluripotent embryonic stem cells, adult stem cells have been considered to...
Reliable procedures to induce neural commitment of totipotent undifferentiated embryonic stem (ES) c...
In contrast to cold blooded vertebrates, the ability to regenerate morphologically and functionally ...
AbstractHuman somatic stem cells with neural differentiation potential can be valuable for developin...
Human somatic stem cells with neural differentiation potential can be valuable for developing cell-b...
Background and aims: Stem cells derived from adipose tissue are a potential important source for aut...
Adult human stem cells have gained progressive interest as a promising source of autologous cells to...
Introduction. Mesenchymal Stem Cells (MSCs) are adult multipotent cells able to differentiate in mes...
Mesenchymal Stem Cells (MSCs), have been defined and characterized by: 1) their ability to adhere to...
Adult mesenchymal stem cells (MSCs) are a population of multipotent cells found primarily in the bon...
The mesenchymal stroma harbors an important population of cells that possess stem cell-like characte...
Mesenchymal stem cells (MSCs) can trans/differentiate to neural precursors and/or mature neurons and...
There is wide interest in application of adult stem cells due to easy to obtain with a minimal patie...
The spontaneous expression of neural markers, already demonstrated in bone marrow (BM) mesenchymal s...
Mesenchymal stem cells (MSCs) can trans/differentiate to neural precursors and/or mature neurons and...
Background In contrast to pluripotent embryonic stem cells, adult stem cells have been considered to...
Reliable procedures to induce neural commitment of totipotent undifferentiated embryonic stem (ES) c...
In contrast to cold blooded vertebrates, the ability to regenerate morphologically and functionally ...
AbstractHuman somatic stem cells with neural differentiation potential can be valuable for developin...
Human somatic stem cells with neural differentiation potential can be valuable for developing cell-b...
Background and aims: Stem cells derived from adipose tissue are a potential important source for aut...
Adult human stem cells have gained progressive interest as a promising source of autologous cells to...
Introduction. Mesenchymal Stem Cells (MSCs) are adult multipotent cells able to differentiate in mes...
Mesenchymal Stem Cells (MSCs), have been defined and characterized by: 1) their ability to adhere to...
Adult mesenchymal stem cells (MSCs) are a population of multipotent cells found primarily in the bon...
The mesenchymal stroma harbors an important population of cells that possess stem cell-like characte...
Mesenchymal stem cells (MSCs) can trans/differentiate to neural precursors and/or mature neurons and...
There is wide interest in application of adult stem cells due to easy to obtain with a minimal patie...
The spontaneous expression of neural markers, already demonstrated in bone marrow (BM) mesenchymal s...
Mesenchymal stem cells (MSCs) can trans/differentiate to neural precursors and/or mature neurons and...
Background In contrast to pluripotent embryonic stem cells, adult stem cells have been considered to...
Reliable procedures to induce neural commitment of totipotent undifferentiated embryonic stem (ES) c...
In contrast to cold blooded vertebrates, the ability to regenerate morphologically and functionally ...