Fluorescein Delivery

Fluorescein delivery is the controlled introduction of fluorescein or fluorescein-labeled molecules into cells, tissues, or engineered biological systems to track transport and localization. Delivery systems such as chemical conjugation, encapsulation, or microinjection place the dye in a defined compartment, where excitation produces green fluorescence that can be detected optically; changes in signal may also reflect distribution or release. In bioengineering, fluorescein delivery supports studies of membrane permeability, intracellular trafficking, drug-carrier performance, and tissue transport. Quantifying fluorescence can reveal delivery efficiency and spatial or temporal patterns, helping researchers design responsive biomaterials, targeted therapeutics, and diagnostic platforms.

Fluorescein Delivery - Related Videos

Research

JoVE Journal - Biology

Lineage Labeling of Zebrafish Cells with Laser Uncagable Fluorescein Dextran

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Cited by 8 •

2011

This protocol delineates a way to label and trace the fate of small groups of cells zebrafish embryos using UV-uncaging of caged fluorescein, followed by whole mount immunolabeling to amplify the signal from the uncaged fluorescein.

Fluorescein Staining in an Autoimmune Dry Eye Rat Model to Examine Corneal Damage

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2025

This video demonstrates the staining of the damaged cornea using fluorescein dye to evaluate the extent of autoimmune dry eye disease in a rat model. The green fluorescence spots of the stained collagen fibers indicate corneal epithelial damaged cells.

Assessment of Neuronal Viability Using Fluorescein Diacetate-Propidium Iodide Double Staining in Cerebellar Granule Neuron Culture

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Cited by 29 •

2017

This protocol describes how to accurately measure neuronal viability using Fluorescein diacetate (FDA) and Propidium Iodide (PI) double staining in cultured cerebellar granule neurons, a primary neuronal culture used as an in vitro model in neuroscience and neuropharmacology research.

Identification and Isolation of Slow-Dividing Cells in Human Glioblastoma Using Carboxy Fluorescein Succinimidyl Ester (CFSE)

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Cited by 18 •

2012

This video protocol demonstrates the application of the fluorescent dye carboxyfluorescein succinimidyl ester (CFSE) for the identification and separation of different sub-populations of cells in human glioblastoma based on frequency of cell division.

Synthesis, Cellular Delivery and In vivo Application of Dendrimer-based pH Sensors

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Cited by 4 •

2013

Fluorescence sensors are powerful tools in life science. Here we describe a methodology to synthesize and use dendrimer-based fluorescent sensors to measure pH in living cells and in vivo. The dendritic scaffold enhances the properties of conjugated fluorescent dyes leading to improved sensing properties.

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