Postnatal Neuron Maturation

Postnatal neuron maturation is the developmental process through which immature neurons acquire the structure and electrical properties required for effective signaling after birth. It involves coordinated changes in gene expression, dendritic arborization, synapse formation and refinement, axonal myelination, and ion-channel composition, with neural activity and sensory experience shaping many of these changes. In developmental biology, studying this process helps explain how functional neural circuits emerge and how timing influences connectivity. Postnatal maturation models also support research into neurodevelopmental disorders, brain injury, and strategies for evaluating whether stem cell-derived neurons achieve appropriate structural and physiological properties.

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JoVE EoE - Neuropathology

Studying Cell-Cell Interactions in Facilitating Neuronal Maturation

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2025

Astrocytes secrete signaling molecules that enhance the maturation and differentiation of stem cells into neurons and astrocytes.

Differentiation of a Human Neuroblastoma Cell Line into Mature Neurons

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2025

This video demonstrates a technique for transforming undifferentiated SH-SY5Y neuroblastoma cells into fully differentiated mature neurons using a systematic passaging technique. This involves culturing the cells in a series of media with gradually decreasing serum levels to inhibit the proliferation of epithelial-like cells while promoting the differentiation and proliferation of neuron-like cells. Additionally, the media is supplemented with retinoic acid and specific growth factors that...

An Organotypic Slice Assay for High-Resolution Time-Lapse Imaging of Neuronal Migration in the Postnatal Brain

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Cited by 6 •

2010

This protocol describes an organotypic slice assay optimized for the postnatal brain and high-resolution time-lapse imaging of neuroblast migration in the rostral migratory stream.

Single-cell Profiling of Developing and Mature Retinal Neurons

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Cited by 13 •

2012

A method for the isolation of single retinal cells and subsequent amplification of their cDNAs is described. Single-cell transcriptomics reveals the degree of cellular heterogeneity present in a tissue and uncovers new marker genes for rare cell populations. The accompanying protocol can be adjusted to suit many different cell types.

Organotypic Slice Cultures for Studies of Postnatal Neurogenesis

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Cited by 2 •

2015

Here we describe a technique for studying hippocampal postnatal neurogenesis using the organotypic slice culture technique. This method allows for in vitro manipulation of adult neurogenesis and allows for the direct application of pharmacological agents to the cultured hippocampus.

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