Chemoattractant Guidance

Chemoattractant guidance is the directed movement of cells, growth cones, or axons toward increasing concentrations of chemical cues, a process that helps organize developing and repairing nervous systems. Guidance receptors detect spatial differences in chemoattractant levels and activate intracellular signaling pathways that remodel the cytoskeleton, producing asymmetric protrusion and steering toward the source. In neuroscience, this mechanism helps establish neural circuits by directing axons to appropriate targets and positioning migrating neurons. Studying chemoattractant guidance also clarifies how signaling errors may contribute to developmental disorders and informs strategies for neural repair and regeneration.

Chemoattractant Guidance - Related Videos

Research

JoVE EoE - Neuropathology

Assessing Interneuron Response to Chemoattractive Cues from Periventricular Endothelial Cells

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2025

This video shows a method to test interneuron migration in response to chemoattractive cues from periventricular endothelial cells (PVECs). Interneurons are placed in a central compartment, with PVECs and control cells on either side. Increased migration towards PVECs indicates a positive response to their chemoattractive signals.

Volatile Sex Pheromone Extraction and Chemoattraction Assay in Caenorhabditis elegans

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Cited by 1 •

2024

This protocol establishes methods for extracting and quantifying responses to the volatile sex pheromone in C. elegans, providing tools to study chemical communication and navigation trajectory.

Automated Robotic Dispensing Technique for Surface Guidance and Bioprinting of Cells

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Cited by 9 •

2016

This protocol describes a bioprinting methodology using an automated robotic depositing system that incorporates etched topographical guidance cues with the precision deposition of a cell bearing hydrogel bioink. The printed cells are directly delivered to the etched features and are able to sense and orientate with them.

Use of pHluorin to Assess the Dynamics of Axon Guidance Receptors in Cell Culture and in the Chick Embryo

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Cited by 10 •

2014

We describe here the use of a pH-sensitive green fluorescent protein variant, pHluorin, to study the spatio-temporal dynamics of axon guidance receptors trafficking at the cell surface. The pHluorin-tagged receptor is expressed both in cell culture and in vivo, using electroporation of the chick embryo.

3D Analysis of Multi-cellular Responses to Chemoattractant Gradients

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Cited by 4 •

2019

We describe a method to construct devices for 3D culture and experimentation with cells and multicellular organoids. This device allows analysis of cellular responses to soluble signals in 3D microenvironments with defined chemoattractant gradients. Organoids are better than single cells at detection of weak noisy inputs.

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