Stem Cell Neuronal Progenitors

Stem cell neuronal progenitors are self-renewing, developmentally guided cells that arise from stem cells and generate neural cells, making them important for understanding nervous system formation and repair. Their behavior is controlled by intrinsic gene-regulatory programs and extracellular signals that balance cell division, maintenance of progenitor identity, and differentiation into specialized neurons. In neuroscience research, these progenitors support studies of neural development, neurodegenerative disease, and injury-related regeneration. They can also provide cellular models for drug screening and disease mechanisms, while offering a potential foundation for cell-based therapies aimed at replacing or restoring damaged neural tissue.

Stem Cell Neuronal Progenitors - Related Videos

Research

JoVE Journal - Neuroscience
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Efficient Derivation of Human Neuronal Progenitors and Neurons from Pluripotent Human Embryonic Stem Cells with Small Molecule Induction

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Cited by 36 •

2011

We have established a protocol for induction of neuroblasts direct from pluripotent human embryonic stem cells maintained under defined conditions with small molecules, which enables derivation of a large supply of human neuronal progenitors and neuronal cell types in the developing CNS for neural repair.

Research

JoVE Journal - Neuroscience

The Neuroblast Assay: An Assay for the Generation and Enrichment of Neuronal Progenitor Cells from Differentiating Neural Stem Cell Progeny Using Flow Cytometry

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Cited by 17 •

2012

This video protocol demonstrates a novel method for the generation and subsequent purification of neuronal progenitor cells from a renewable source of neural stem cells (NSCs) based on their physical (size and internal granularity) and fluorescent properties using flow cytometry technology.

Differentiation of Neural Progenitor Cells into Neurons

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2025

The video showcased a cell culture method for differentiating neural progenitor cells into neurons. By incubating cells in a nutrient-rich medium supplemented with growth factors, the progenitor cells matured into neurons with developed axons and dendrites. A stabilizing agent ensured cell viability and protected against oxidative damage throughout the differentiation process.

Transplantation of Stem Cell-Derived Neuronal Progenitors into Human Cortical Slices

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2025

Source: Palma-Tortosa, S., et.al. Organotypic Cultures of Adult Human Cortex as an Ex vivo Model for Human Stem Cell Transplantation and Validation. J. Vis. Exp. (2022)This video demonstrates the transplantation of stem cell-derived neuronal progenitor cells into human cortical tissue slices. The procedure involves isolating and resuspending progenitor cells in a basement membrane matrix, followed by their injection into a cortical slice placed on a transwell assembly. After incubation to allow...

The Specification of Telencephalic Glutamatergic Neurons from Human Pluripotent Stem Cells

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Cited by 38 •

2013

This procedure yields telencephalic neurons by going through checkpoints which are similar to those observed during human development. The cells are allowed to spontaneously differentiate, are exposed to factors which push them towards the neural lineage, are isolated, and are plated onto coverslips to allow for terminal differentiation and maturation.

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