Neuronal Targeting

Neuronal targeting is the selective delivery of genes, drugs, labels, or other interventions to neurons or defined neuronal populations, enabling precise study and manipulation of neural circuits. It works through molecular and anatomical specificity, using features such as cell-type-specific promoters, receptor–ligand interactions, viral-vector tropism, or retrograde transport from neuronal projections to restrict access to selected cells. In neuroscience, neuronal targeting supports circuit mapping, neural activity recording, gene expression studies, and targeted treatment strategies. Improved targeting can reduce off-target effects, clarify circuit function, and advance research on neurological disorders and potential gene- or cell-based therapies.

Neuronal Targeting - Related Videos

Research

JoVE EoE - Neurophysiology

Simultaneous Eye Tracking and Single-Neuron Recording to Identify Target-Selective Neurons

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2025

The video demonstrates an assay to identify target-selective neurons via simultaneous eye-tracking and single-neuron recordings. A human participant is tasked with identifying a target object among an array of objects in a display, and the eye movement is tracked. Simultaneously, single neurons' firing rate is recorded via electrodes implanted in the brain. The data from both recordings are correlated to assess the presence of target-selective neurons.

Targeted Neuronal Ablation Using Two-Photon Microscopy in a Zebrafish Larava

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2025

Source: Muto, A., et al. Ablation of a Neuronal Population Using a Two-photon Laser and Its Assessment Using Calcium Imaging and Behavioral Recording in Zebrafish Larvae. J. Vis. Exp. (2018) In this video, a two-photon laser ablation procedure is demonstrated, enabling the selective destruction of fluorescent neurons in agarose-immobilized zebrafish larvae. High-resolution imaging before and after the procedure confirms efficient neuronal damage, as observed by the absence of fluorescence.

Inducing Targeted Neuronal Injury Using a High-Power Laser in a Drosophila Larva

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2025

This video demonstrates a method for inducing targeted neuronal injury in Drosophila larvae using a high-power laser. After positioning the larva under a microscope, a low-power laser scans for fluorescent neurons, and then the laser power is increased to induce localized damage. The injury is confirmed by increased fluorescence and a crater at the injury site.

Immunohistochemistry of Mouse Brain Tissue Sections for Targeting Dopamine Neurons

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2025

Source: Kummari, E., et. al., Laser Capture Microdissection - A Demonstration of the Isolation of Individual Dopamine Neurons and the Entire Ventral Tegmental Area., J. Vis. Exp. (2015)In this video, we demonstrate the immunohistochemistry protocol for dopamine neurons in brain tissue sections for subsequent laser capture microdissection.

A Method to Target and Isolate Airway-innervating Sensory Neurons in Mice

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Cited by 9 •

2016

Organ specific sensory neurons are difficult to identify. Fast Blue tracing is used to identify nodose neurons innervating the airways for cell sorting. Sorted nodose neurons are used to extract high quality ribonucleic acid (RNA) for sequencing. Using this protocol, gene expression of airway specific neurons is determined.

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