Anterograde Retrograde Movement

Anterograde and retrograde movement are the two directional modes of intracellular transport that move materials along neuronal axons, maintaining communication between the cell body and distant synaptic terminals. Anterograde transport carries newly synthesized proteins, membrane components, and organelles outward with kinesin motors, whereas retrograde transport returns signaling endosomes, recycled materials, and damaged components inward with dynein; both motors use ATP to travel along polarized microtubules. This coordinated trafficking supports synaptic function, neuronal survival, and responses to injury. In neuroscience, studying these pathways helps explain axonal maintenance, intracellular signaling, neurodegenerative disease mechanisms, and the use of axonal transport for tracing neural connections.

Anterograde Retrograde Movement - Related Videos

Education

JoVE Science Education - Psychology

Anterograde Amnesia

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2023

Source: Laboratories of Jonas T. Kaplan and Sarah I. Gimbel—University of Southern California Anterograde amnesia is the loss of the ability to form new memories. This can be distinguished from retrograde amnesia, which is the loss of old memories. Anterograde amnesia can result from damage to structures in the brain that are involved in the formation of new memories. Patients who have damage to the structures of the medial temporal lobe, including the hippocampus, amygdala, and the surrounding...

Research

JoVE Journal - Immunology and Infection

Live Cell Imaging of Alphaherpes Virus Anterograde Transport and Spread

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Cited by 16 •

2013

Live cell imaging of alphaherpes virus infections enables analysis of the dynamic events of directed transport and intercellular spread. Here, we present methodologies that utilize recombinant viral strains expressing fluorescent fusion proteins to facilitate visualization of viral assemblies during infection of primary neurons.

Physiological, Morphological and Neurochemical Characterization of Neurons Modulated by Movement

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2011

A technique is described to quantify the in vivo physiological response of mammalian neurons during movement and correlate the physiology of the neuron with neuronal morphology, neurochemical phenotype and synaptic microcircuitry.

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.

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