Purkinje Cell Progenitors

Purkinje cell progenitors are developing neural precursor cells that generate Purkinje neurons, the principal output neurons of the cerebellar cortex, making them important for understanding cerebellar formation and neurological disease. During embryonic development, progenitors in the cerebellar ventricular zone activate lineage programs that include PTF1A, withdraw from the cell cycle, differentiate, and migrate into the developing Purkinje cell layer, where they extend dendrites and form synaptic connections. In neuroscience research, these cells provide models for studying neuronal specification, cerebellar circuit assembly, and disorders involving Purkinje cell loss, while stem-cell-derived progenitors support investigations of development, disease mechanisms, and potential regenerative strategies.

Purkinje Cell Progenitors - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Analyzing Purkinje Cell Survival in Organotypic Cerebellar Slice Cultures

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2025

This video illustrates a technique for obtaining cerebellar organotypic slices from a mouse pup's brain and culturing the slices in media supplemented with nutrients and growth factors to mimic cerebellar development in vitro. Additionally, specific cerebellar slices are treated with a test compound, and the compound's neuroprotective ability is analyzed using an immunofluorescence staining technique.

Laser Capture Microdissection to Isolate Purkinje Cells from a Human Post-Mortem Cerebellum Tissue

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2025

This video demonstrates how to isolate Purkinje cells from a human post-mortem cerebellar tissue using laser capture microdissection.

Induction of Long-Term Depression in Cerebellar Purkinje Neurons in a Mouse Brain Slice

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2025

In this video, a mouse cerebellar brain slice was used to investigate synaptic interactions between parallel fibers, climbing fibers, and Purkinje cells, which are essential for motor control. Stimulation of climbing fibers induced long-term depression (LTD) in Purkinje cells, weakening synaptic strength and resulting in reduced response to parallel fiber stimulation.

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.

Initiating Differentiation in Immortalized Multipotent Otic Progenitor Cells

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Cited by 10 •

2016

The current protocols to maintain immortalized multipotent otic progenitor (iMOP) cells and otic differentiation are described. Culture conditions and molecular markers that indicate differentiation into sensory epithelia and spiral ganglion neurons (SGN) are highlighted.

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