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Enteric neural stem/progenitor cells (ENSCs) offer an innovative approach to treating Hirschsprung disease (HSCR) and other enteric neuropathies. However, postnatal-derived human ENSCs have not been thoroughly characterized and their behavior in the embryonic and postnatal intestinal environment is unknown.
Here we unravel the mechanism of action of Helios (He) during the development of striatal medium spiny neurons (MSNs). He regulates the second wave of striatal neurogenesis involved in the generation of striatopallidal neurons that express dopamine 2 receptor (D2R) and enkephalin (ENK). To exert this effect He is expressed in neural progenitor cells (NPCs) retaining them into the G1/G0 phase of the cell cycle. Read more >
In an attempt to improve the efficacy of neural stem/progenitor cell (NSPC) based therapies, fibrin hydrogels are being explored to provide a favourable microenvironment for cell survival and differentiation following transplantation. In the present work, the ability of fibrin to support the survival, proliferation, and neuronal differentiation of NSPCs derived from embryonic stem (ES) cells under monolayer culture was explored. Read more >
Medium spiny neurons (MSNs) are a key population in the basal ganglia network, and their degeneration causes a severe neurodegenerative disorder, Huntingtons disease. Understanding how ventral neuroepithelial progenitors differentiate into MSNs is critical for regenerative medicine to develop specific differentiation protocols using human pluripotent stem cells. Read more >
Regeneration of peripheral nerve injury remains a major clinical challenge. Recently, mesenchymal stem cells (MSCs) have been considered as potential candidates for peripheral nerve regeneration; however, the underlying mechanisms remain elusive. Here, we show that human gingiva-derived MSCs (GMSCs) could be directly induced into multipotent NPCs (iNPCs) under minimally manipulated conditions without the introduction of exogenous genes. Read more >
The role of dopamine D2 and D3 receptors (D2R/D3R), located on midbrain dopaminergic (DA) neurons, in the regulation of DA synthesis and release and in DA neuron homeostasis has been extensively investigated in rodent animal models. By contrast, the properties of D2R/D3R in human DA neurons have not been elucidated yet. Read more >
The tumor suppressor retinoblastoma protein (RB) regulates S-phase cell cycle entry via E2F transcription factors. Knockout (KO) mice have shown that RB plays roles in cell migration, differentiation and apoptosis, in developing and adult brain. In addition, the RB family is required for self-renewal and survival of human embryonic stem cells (hESCs). Read more >
We hypothesized that generating spinal motor neurons (sMNs) from human induced pluripotent stem cell (hiPSC)-derived neural aggregates (NAs) using a chemically-defined differentiation protocol would be more effective inside of 3D fibrin hydrogels compared to 2D poly-L-ornithine(PLO)/laminin-coated tissue culture plastic surfaces. Read more >
|Cat#||Product Name||Description||Recommended Medium||Price|
|CSC-7686W||adult stem cells||Bioarray, a pioneer in the adult stem cell fi...||-----||INQUIRY|
|CSC-7695W||Human Vertebral Mesenchymal Stem Cells (HVMSC)||Mesenchymal stem cells (MSC) are well-charact...||-----||INQUIRY|
|CSC-7700W||Human Umbilical Mesenchymal Stem Cells (HUMSC)||Mesenchymal stem cells (MSC) are a well-chara...||-----||INQUIRY|
|CSC-7725W||Human Pulmonary Mesenchymal Stem Cells (HPMSC)||Mesenchymal stem cells (MSC) are a well-chara...||-----||INQUIRY|
|CSC-7755W||Human Mesenchymal Stem Cells-hepatic (HMSC-he)||Mesenchymal stem cells (MSC) are well-charact...||-----||INQUIRY|
|CSC-7756W||Human Mesenchymal Stem Cells-bone marrow (HMSC-bm)||Mesenchymal stem cells (MSC) are well-charact...||-----||INQUIRY|
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