Understanding the sequence of events from undifferentiated stem cells to neuron is not only important for the basic knowledge of stem cell biology, but also for therapeutic applications. In this study we examined the sequence of biological events during neural differentiation of human periodontal ligament stem cells (hPDLSCs). Here, we show that hPDLSCs-derived neural-like cells display a sequence of morphologic development highly similar to those reported before in primary neuronal cultures derived from rodent brains. We observed that cell proliferation is not present through neurogenesis from hPDLSCs. Futhermore, we may have discovered micronuclei movement and transient cell nuclei lobulation coincident to in vitro neurogenesis. Morpholog...
Human dental follicle cells (DFCs) derived from wisdom teeth are precursor cells for cementoblasts. ...
INTRODUCTION: Interest in the use of dental pulp stem cells (DPSC) to enhance neurological recovery ...
AbstractCultured spinal cord neuroepithelial (NEP) cells can differentiate into neurons, oligodendro...
Although it has been reported that mesenchymal stem cells isolated from adult tissues can be induced...
Stem cells isolated from human adult tissue niche represent a promising source for neural differenti...
A novel pluripotent stem cell population discovered by our laboratory, periodontal ligament stem cel...
Neuroregenerative medicine is an ever-growing field in which regeneration of lost cells/tissues due ...
Cells derived from the neural crest (NC) contribute to the development of several adult tissues, inc...
Neural stem cells (NSCs) are potential sources for cell therapy of neurodegenerative diseases and fo...
Neurogenesis is the basis of stem cell tissue engineering and regenerative medicine for central nerv...
The definitive version may be found at www.wiley.comHuman adult dental pulp stem cells (DPSCs) resid...
Human periodontal ligament stem cells (PDLSCs) play an important role in periodontal tissue regenera...
During nervous system development, early neuroepithelial stem (NES) cells with a highly polarized mo...
The ability to identify and manipulate stem cells has been a significant advancement in regenerative...
Human dental pulp stem cells (hDPSCs) could be differentiated into neuron like-cells under particula...
Human dental follicle cells (DFCs) derived from wisdom teeth are precursor cells for cementoblasts. ...
INTRODUCTION: Interest in the use of dental pulp stem cells (DPSC) to enhance neurological recovery ...
AbstractCultured spinal cord neuroepithelial (NEP) cells can differentiate into neurons, oligodendro...
Although it has been reported that mesenchymal stem cells isolated from adult tissues can be induced...
Stem cells isolated from human adult tissue niche represent a promising source for neural differenti...
A novel pluripotent stem cell population discovered by our laboratory, periodontal ligament stem cel...
Neuroregenerative medicine is an ever-growing field in which regeneration of lost cells/tissues due ...
Cells derived from the neural crest (NC) contribute to the development of several adult tissues, inc...
Neural stem cells (NSCs) are potential sources for cell therapy of neurodegenerative diseases and fo...
Neurogenesis is the basis of stem cell tissue engineering and regenerative medicine for central nerv...
The definitive version may be found at www.wiley.comHuman adult dental pulp stem cells (DPSCs) resid...
Human periodontal ligament stem cells (PDLSCs) play an important role in periodontal tissue regenera...
During nervous system development, early neuroepithelial stem (NES) cells with a highly polarized mo...
The ability to identify and manipulate stem cells has been a significant advancement in regenerative...
Human dental pulp stem cells (hDPSCs) could be differentiated into neuron like-cells under particula...
Human dental follicle cells (DFCs) derived from wisdom teeth are precursor cells for cementoblasts. ...
INTRODUCTION: Interest in the use of dental pulp stem cells (DPSC) to enhance neurological recovery ...
AbstractCultured spinal cord neuroepithelial (NEP) cells can differentiate into neurons, oligodendro...