Gfp Positive Cells

GFP-positive cells are cells that produce green fluorescent protein (GFP), making them visible through fluorescence microscopy and useful for identifying specific biological states or populations. GFP expression typically results from introducing a gene encoding the protein, often under the control of a selected promoter; after the protein folds and forms its fluorescent chromophore, blue or ultraviolet excitation produces green light. Researchers use GFP-positive cells to monitor gene expression, confirm transfection or genetic modification, track cell movement and survival, and isolate labeled populations by fluorescence-activated cell sorting. These applications support studies of cellular function, development, disease mechanisms, and experimental treatments.

Gfp Positive Cells - Related Videos

Research

JoVE Journal - Developmental Biology

Tracking Cells in GFP-transgenic Zebrafish Using the Photoconvertible PSmOrange System

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Cited by 2 •

2016

We established the photoconvertible PSmOrange system as a powerful, straight-forward and cost inexpensive tool for in vivo cell tracking in GFP transgenic backgrounds. This protocol describes its application in the zebrafish model system.

Reprogramming Human Somatic Cells into Induced Pluripotent Stem Cells (iPSCs) Using Retroviral Vector with GFP

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Cited by 6 •

2012

A method to generate human induced pluripotent stem cells (iPSCs) via retrovirus-mediated ectopic expression of OCT4, SOX2, KLF4 and MYC is described. A practical way to identify human iPSC colonies based on GFP expression is also discussed.

Research

JoVE Journal - Neuroscience
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Electrophysiological Characterization of GFP-Expressing Cell Populations in the Intact Retina

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Cited by 5 •

2011

This article depicts the recording of individual cells from fluorescently tagged neuronal populations in the intact mouse retina. By using two-photon infrared excitation transgenetically labeled cells were targeted for patch-clamp recording to study their light responses, receptive field properties, and morphology.

Research

JoVE Journal - Biology
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Study of the Actin Cytoskeleton in Live Endothelial Cells Expressing GFP-Actin

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Cited by 33 •

2011

Microscopic imaging of live endothelial cells expressing GFP-actin allows characterization of dynamic changes in cytoskeletal structures. Unlike techniques that use fixed specimens, this method provides a detailed assessment of temporal changes in the actin cytoskeleton in the same cells before, during, and after various physical, pharmacological, or inflammatory stimuli.

Research

JoVE Journal - Biology
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Analysis of Cell Cycle Position in Mammalian Cells

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Cited by 71 •

2012

Determining the cell cycle position of a population of cells, or understanding how signals affect proliferation, can be readily measured by flow cytometry using this protocol. We report a simple experimental approach to staining cells and quantifying their position in the cell cycle.

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