Forebrain-type Organoids

Forebrain-type organoids are three-dimensional, stem cell-derived neural tissues that model key features of the developing forebrain, including cortical and related neuronal populations. They form when pluripotent stem cells are guided toward neural lineages under defined culture conditions, allowing neural progenitors to self-organize, differentiate, and establish region-specific cellular patterns. In neuroscience, these organoids provide experimentally accessible models for studying human brain development, neuronal maturation, and disease-associated changes. Researchers also use them to investigate genetic and neurodevelopmental disorders, evaluate cellular responses to candidate treatments, and examine processes that are difficult to observe directly in the developing human brain.

Forebrain-type Organoids - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Generating Forebrain-Type Cerebral Organoids from Human-Induced Pluripotent Stem Cells

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2025

This video outlines the creation of forebrain-type organoids from human induced pluripotent stem cells (iPSCs), demonstrating the progression from stem cell aggregates to complex structures that mimic the brain's cortex and differentiate into various neuron types.

Research

JoVE Journal - Developmental Biology
Free Sample

Generation of Standardized and Reproducible Forebrain-type Cerebral Organoids from Human Induced Pluripotent Stem Cells

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Cited by 43 •

2018

Cerebral organoids represent a new model system to investigate early human brain development in vitro. This article provides the detailed methodology to efficiently generate homogeneous dorsal forebrain-type organoids from human induced pluripotent stem cells including critical characterization and validation steps.

Forebrain Electrophysiological Recording in Larval Zebrafish

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Cited by 55 •

2013

A simple method to record extracellular field potentials in the larval zebrafish forebrain is described. The method provides a robust in vivo read-out of seizure-like activity. This technique can be used with genetically modified zebrafish larvae carrying epilepsy-related genes or seizures evoked by administration of convulsant drugs.

Two-Photon Calcium Imaging of Forebrain Activity in Behaving Adult Zebrafish

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Cited by 1 •

2023

Here, we present a protocol to perform two-photon calcium imaging in the dorsal forebrain of adult zebrafish.

Triggering Reactive Gliosis In Vivo by a Forebrain Stab Injury

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Cited by 8 •

2015

This article describes a detailed protocol to produce a forebrain stab injury in adult mice. The stab injury induces severe reactive gliosis and glial scar formation which can be subsequently examined by standard immunohistochemistry methods.

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