Gfp Labeled Neurons

GFP-labeled neurons are nerve cells engineered or otherwise marked to produce green fluorescent protein (GFP), making their location, shape, and processes visible in living or fixed nervous tissue. When researchers illuminate GFP with the appropriate excitation wavelength, the protein emits green fluorescence, allowing labeled cells to be detected with fluorescence microscopy without relying on conventional stains. In neuroscience, this approach supports neuronal identification, lineage tracing, axon and dendrite mapping, and analysis of cellular morphology in cultures, brain slices, and animal models. GFP labeling can therefore link neuronal structure with development, circuit organization, and disease-related changes.

Gfp Labeled Neurons - Related Videos

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JoVE Journal - Biology
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Live Imaging of GFP-labeled Proteins in Drosophila Oocytes

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Cited by 5 •

2013

A protocol for live imaging of GFP-tagged proteins or autofluorescent structures in individual Drosophila oocytes is described.

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JoVE Journal - Neuroscience
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DiOLISTIC Labeling of Neurons from Rodent and Non-human Primate Brain Slices

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Cited by 60 •

2010

We demonstrate the use of the gene gun to introduce fluorescent dyes, such as DiI, into neurons in brain slices from rodents and non-human primates of different ages. In this particular case, we use adult mice (3-6 months old) and adult cynomologus monkeys (9-15 years old). This technique, originally described by the laboratory of Dr. Lichtman (Gan et al., 2000), is well suited for the study of dendritic branching and dendritic spine morphology and can be combined with traditional...

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JoVE Journal - Neuroscience

Imaging Calcium Responses in GFP-tagged Neurons of Hypothalamic Mouse Brain Slices

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Cited by 5 •

2012

In this protocol, we update recent progress in imaging Ca2+ signals of GFP-tagged neurons in brain tissue slices using a red fluorescent Ca2+ indicator dye.

Isolating Fluorescently Labeled Neurons from a Murine Brain

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2025

This video demonstrates a method to isolate fluorescently labeled neurons from a mouse brain.

Measuring Exocytosis in Neurons Using FM Labeling

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Cited by 7 •

2006

The ability to measure the kinetics of vesicle release can help provide insight into some of the basics of neurotransmission. Here we used real-time imaging of vesicles labeled with the red fluorescent dye FM 4-64 to measure the rate of presynaptic vesicle release in hippocampal neuronal cultures.

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