Retrograde Signaling

Retrograde signaling is a form of cell-to-cell communication in which a receiving cell sends signals back to the cell that provided the initial input. In neuroscience, a postsynaptic neuron can produce messengers such as endocannabinoids or nitric oxide that cross the synaptic cleft and act on presynaptic terminals, often changing neurotransmitter release. This feedback regulates synaptic strength, timing, and short- or long-term plasticity, allowing neural circuits to adapt to activity. Studying retrograde signaling helps explain learning, memory, sensory processing, and neuronal development, while also clarifying how disrupted synaptic feedback may contribute to neurological and psychiatric disorders.

Retrograde Signaling - Related Videos

Research

JoVE EoE - Neuroimaging

Retrograde Labeling of Drosophila Motor Neurons Using Fluorescent Lipophilic Dyes

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2025

Source: Inal, M. A. et. al., Retrograde Tracing of Drosophila Embryonic Motor Neurons Using Lipophilic Fluorescent Dyes. J. Vis. Exp. (2020)This video demonstrates the method of retrograde labeling of Drosophila motor neurons using lipophilic dyes. The dye enters the axon, travels retrogradely, and labels the neurons green, allowing detailed visualization of their morphology and projections under a confocal microscope.

A Viral Vector Injection into the Rat Spinal Cord for Retrograde Neuronal Tracing

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2025

Source: Keefe, K. M., et al. Direct Injection of a Lentiviral Vector Highlights Multiple Motor Pathways in the Rat Spinal Cord. J. Vis. Exp. (2019).This video demonstrates the injection of a highly efficient retrograde transport (HiRet) viral vector into the rat spinal cord to trace neuronal pathways. The virus has glycoproteins for synaptic entry and a fluorescent protein coding gene. The needle is inserted into the spinal cord, and the virus suspension is administered at a controlled rate.

Retrograde Labeling of Retinal Ganglion Cells in Adult Zebrafish with Fluorescent Dyes

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Cited by 3 •

2014

We introduce an efficient method to retrograde label retinal ganglion cells (RGCs) in adult zebrafish.

Langendorff Retrograde Heart Perfusion: An Ex Vivo Technique to Perfuse Isolated Mouse Heart

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2025

In this video, we perform Langendorff retrograde perfusion of an isolated mouse heart. During the procedure, the cardiac activity of the heart is maintained by perfusing it retrogradely with a perfusion solution via the coronary arteries using a cannula inserted into the ascending aorta. The model is used to study the cardiac pathophysiology of the heart.

Research

JoVE Journal - Neuroscience
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Retrograde Fluorescent Labeling Allows for Targeted Extracellular Single-unit Recording from Identified Neurons In vivo

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Cited by 14 •

2013

Retrograde transport of fluorescent dye labels a sub-population of neurons based on anatomical projection. Labeled axons can be visually targeted in vivo, permitting extracellular recording from identified axons. This technique facilitates recording when neurons cannot be labeled through genetic manipulation or are difficult to isolate using 'blind' in vivo approaches.

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