Fluorescent Transgenic Animals

Fluorescent transgenic animals are organisms genetically modified to produce fluorescent proteins in specific cells, tissues, or throughout the body, enabling biological processes to be visualized. Researchers introduce a fluorescent protein gene, often linked to a tissue-specific promoter, so its expression generates a detectable signal under appropriate illumination. In medicine, these animals help track cell development, gene activity, disease progression, and responses to drugs in living systems. By providing real-time information while preserving tissue context, fluorescent models support studies of cancer, neurobiology, inflammation, and regenerative medicine, and can improve understanding of disease mechanisms and the evaluation of potential treatments.

Fluorescent Transgenic Animals - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Culturing Fluorescent Excitatory Neurons from a Transgenic Mouse Pup Brain

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2025

The video illustrates a technique for culturing fluorescent GABAergic and glutamatergic neurons from the cortex and hippocampal tissues of transgenic mouse pups. The process includes obtaining purified single-cell suspensions of neurons, sorting GABAergic neurons based on their fluorescence protein expression, and seeding them onto poly-L-lysine-coated plates to facilitate attachment and cell proliferation.

Fluorescence Imaging of Calcium Dynamics at Neuromuscular Junctions in the Diaphragm of a Transgenic Mouse

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2025

Source: Heredia, D. J., et. al. Ex Vivo Imaging of Cell-specific Calcium Signaling at the Tripartite Synapse of the Mouse Diaphragm. J. Vis. Exp. (2018) This video demonstrates fluorescence imaging of calcium dynamics at neuromuscular junctions (NMJs) in a transgenic mouse expressing genetically encoded calcium indicators. A NJM is identified by fluorescently tagged acetylcholine receptors in the diaphragm with the phrenic nerve. An image splitter is used to visualize multiple signals...

Research

JoVE Journal - Biology
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Tracking Dynamics of Muscle Engraftment in Small Animals by In Vivo Fluorescent Imaging

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Cited by 4 •

2009

We describe an in vivo fluorescence imaging protocol to monitor muscle regeneration by GFP-labeled myoblasts after transplantation into skeletal muscles of both healthy and dystrophic mice. This protocol can be adapted to study muscle regeneration by transplantation of other types of cells and in other muscular conditions as well.

Generation of Stable Transgenic C. elegans Using Microinjection

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Cited by 93 •

2008

This video demonstrates the technique of microinjection into the gonad of C. elegans to create transgenic animals.

An In Vivo Assay to Detect Mitophagy in Transgenic Nematodes

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2025

This video demonstrates an in vivo assay to study mitophagy in Caenorhabditis elegans. Upon exposing the nematodes to a mitophagy-inducing drug, the occurrence of mitophagy is assessed by co-localization between DCT-1, a mitophagy receptor on the damaged mitochondria, and the autophagosomal membrane protein LGG-1.

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