Cellular Interaction Analysis

Cellular interaction analysis is the systematic study of how cells communicate, contact, and influence one another, providing a foundation for understanding organized biological systems. In neuroscience, researchers examine mechanisms such as chemical synaptic transmission, cell-surface signaling, and paracrine communication by combining microscopy, molecular assays, electrophysiology, and computational analysis to measure cellular activity and responses. These approaches help characterize interactions among neurons, glial cells, and other neural cell types, revealing how networks develop, adapt, and become disrupted. The resulting insights support research into brain function, neurodevelopment, neurological disease, and potential therapeutic strategies.

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JoVE EoE - Immunodiagnostics

A Cellular Assay for the Identification of CXCR4-Interacting Agents

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2025

This video illustrates a cellular assay involving glioblastoma cells expressing CXCR4 chemokine receptors. The assay employs a calcium-sensitive dye to measure fluorescence changes upon agent interaction, offering insights into cellular signaling dynamics.

Cellular Impedance-Based Analysis for Monitoring of Cellular Processes in Real-Time

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2025

In this video, we demonstrate the process of real-time monitoring of cellular events, including the proliferation of adherent cells, via a cellular impedance assay. Here, the adherent cells act as insulators, restricting the current flow between the electrodes and increasing the impedance.

A Morphometric and Cellular Analysis Method for the Murine Mandibular Condyle

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Cited by 4 •

2018

This manuscript presents methods for analyzing morphometric and cellular changes within the mandibular condyle of rodents.

Preparation and Photoacoustic Analysis of Cellular Vehicles Containing Gold Nanorods

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Cited by 5 •

2016

We show the preparation and address the feasibility of cellular vehicles containing gold nanorods for the photoacoustic imaging of cancer.

Correlative Microscopy for 3D Structural Analysis of Dynamic Interactions

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Cited by 15 •

2013

We describe a correlative microscopy method that combines high-speed 3D live-cell fluorescent light microscopy and high-resolution cryo-electron tomography. We demonstrate the capability of the correlative method by imaging dynamic, small HIV-1 particles interacting with host HeLa cells.

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