Neuronal Innervation

Neuronal innervation is the process by which neurons extend axons to establish functional connections with target tissues, enabling communication between the nervous system and developing organs. During development, growth cones at axon tips respond to attractive and repulsive guidance cues, navigate through embryonic tissues, and form synapses with appropriate target cells; subsequent activity and molecular signals refine these connections. Studying neuronal innervation helps explain how neural circuits and organ function emerge, how patterns of connectivity are maintained or remodeled, and how errors in axon guidance or synapse formation can contribute to developmental disorders. It also informs research on nerve regeneration and tissue engineering.

Neuronal Innervation - Related Videos

Research

JoVE Journal - Neuroscience

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.

Functional and Morphological Assessment of Diaphragm Innervation by Phrenic Motor Neurons

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Cited by 16 •

2015

Compound muscle action potential recording quantitatively assesses functional diaphragm innervation by phrenic motor neurons. Whole-mount diaphragm immunohistochemistry assesses morphological innervation at individual neuromuscular junctions. The goal of this protocol is to demonstrate how these two powerful methodologies can be used in various rodent models of spinal cord disease.

Innervation of Human Intestinal Organoids

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Cited by 1 •

2025

Human intestinal organoids must be innervated to better recapitulate the structure and function of the native human intestine. Here, we present one method for incorporating an enteric nervous system into these constructs.

Using a Whole-mount Immunohistochemical Method to Study the Innervation of the Biliary Tract in Suncus murinus

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Cited by 2 •

2017

A whole-mount immunohistochemical approach, to visualize neurofilament protein expression in the extrahepatic biliary tract in Suncus murinus. is presented here. This protocol can be used to analyze the innervation of all visceral organs in S. murinus or other species.

Analysis of Developing Tooth Germ Innervation Using Microfluidic Co-culture Devices

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Cited by 10 •

2015

Co-cultures represent a valuable method to study the interactions between nerves and target tissues and organs. Microfluidic systems allow co-culturing ganglia and whole developing organs or tissues in different culture media, thus representing a valuable tool for the in vitro study of the crosstalk between neurons and their targets.

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