Fura-2 Calcium Imaging

Fura-2 calcium imaging is a fluorescence-based technique for measuring changes in intracellular calcium concentration, a key signal in immune-cell activation and host responses to infection. Cells are loaded with the membrane-permeable Fura-2 AM dye, which is cleaved by intracellular esterases; calcium binding then changes the dye’s excitation spectrum, allowing the ratio of fluorescence excited near 340 and 380 nm to provide a ratiometric measure of cytosolic Ca2+. Researchers use this approach to track rapid calcium fluxes in lymphocytes, phagocytes, and infected cells after receptor stimulation or pathogen exposure. These measurements clarify signaling pathways, cellular dysfunction, and potential targets for immunological research.

Fura-2 Calcium Imaging - Related Videos

Research

JoVE Journal - Biology

Calcium Imaging of Cortical Neurons using Fura-2 AM

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Cited by 108 •

2009

Calcium signals play a key role in many cellular processes including gene expression, survival and differentiation. Here we demonstrate how to perform calcium imaging using Fura-2 AM. Calcium imaging is a valuable tool to study the regulation of intracellular calcium in real time and its regulation of signaling cascades.

Education

JoVE Science Education - Advanced Biology

Calcium Imaging in Neurons

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2023

Calcium ions play an integral role in neuron function: They act as intracellular signals that can elicit responses such as altered gene expression and neurotransmitter release from synaptic vesicles. Within the cell, calcium concentration is highly dynamic due to the presence of pumps that selectively transport these ions in response to a variety of signals. Calcium imaging takes advantage of intracellular calcium flux to directly visualize calcium signaling in living neurons.This video begins...

In Vivo 2-Photon Calcium Imaging in Layer 2/3 of Mice

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Cited by 28 •

2008

To understand network dynamics of microcircuits in the neocortex, it is essential to simultaneously record the activity of a large number of neurons . In-vivo two-photon calcium imaging is the only method that allows one to record the activity of a dense neuronal population with single-cell resolution .

Prolonged Incubation of Acute Neuronal Tissue for Electrophysiology and Calcium-imaging

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Cited by 17 •

2017

Once removed from the body, neuronal tissue is greatly affected by environmental conditions, leading to eventual degradation of the tissue after 6 - 8 h. Using a unique incubation method, which closely monitors and regulates the extracellular environment of the tissue, tissue viability can be significantly extended for >24 h.

In Vitro Calcium Imaging in Short-Term and Long-Term Rat Hippocampal Cultures

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2025

Source: Calvo-Rodríguez, et al. Fluorescence and Bioluminescence Imaging of Subcellular Ca2+ in Aged Hippocampal Neurons. J. Vis. Exp. (2015). This video demonstrates the use of fluorescence imaging to measure cytosolic calcium levels in short-term and long-term rat hippocampal cultures. By comparing young and aged neurons, it highlights how increased L-type voltage-gated calcium channel density and prolonged activation in aged neurons result in calcium overloading, a hallmark of neuronal aging.

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