Organelle Visualization

Organelle visualization is the imaging and analysis of specialized structures inside cells, revealing their organization, dynamics, and interactions. It commonly uses fluorescent dyes, genetically encoded tags, or label-free optical methods to generate contrast, while light or electron microscopy captures signals at appropriate spatial and temporal scales. In bioengineering, these approaches help researchers track organelle morphology, intracellular transport, metabolic activity, and responses to engineered materials or genetic modifications. Quantitative visualization can connect structural changes with cellular function, supporting the design of therapeutic delivery systems, synthetic cells, tissue models, and other technologies that depend on precise control of cell behavior.

Organelle Visualization - Related Videos

Research

JoVE Journal - Neuroscience

Visualization and Live Imaging of Oligodendrocyte Organelles in Organotypic Brain Slices Using Adeno-associated Virus and Confocal Microscopy

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Cited by 7 •

2017

Myelinating oligodendrocytes promote rapid action potential propagation and neuronal survival. Described here is a protocol for oligodendrocyte-specific expression of fluorescent proteins in organotypic brain slices with subsequent time-lapse imaging. Further, a simple procedure for visualizing unstained myelin is presented.

Research

JoVE Journal - Biology
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Visualization of Organelles In Situ by Cryo-STEM Tomography

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Cited by 6 •

2023

Cryo-STEM tomography provides a means to visualize organelles of intact cells without embedding, sectioning, or other invasive preparations. The 3D resolution obtained is currently in the range of a few nanometers, with a field of view of several micrometers and an accessible thickness in the order of 1 µm.

Visualizing and Analyzing Intracellular Transport of Organelles and Other Cargos in Astrocytes

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Cited by 4 •

2019

Here we describe an in vitro live-imaging method to visualize intracellular transport of organelles and trafficking of plasma membrane proteins in murine astrocytes. This protocol also presents an image analysis methodology to determine cargo transport itineraries and kinetics.

Visualizing Cytoskeleton-Dependent Trafficking of Lipid-Containing Organelles in Drosophila Embryos

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Cited by 5 •

2021

In the early Drosophila embryo, many organelles are motile. In principle, they can be imaged live via specific fluorescent probes, but the eggshell prevents direct application to the embryo. This protocol describes how to introduce such probes via microinjection, and then analyze bulk organelle motion via particle image velocimetry.

Studying Organelle Dynamics in B Cells During Immune Synapse Formation

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Cited by 8 •

2019

Herein we describe two approaches to characterize cell polarization events in B lymphocytes during the formation of an IS. The first, involves quantification of organelle recruitment and cytoskeleton rearrangements at the synaptic membrane. The second is a biochemical approach, to characterize changes in composition of the centrosome, which undergoes polarization to the immune synapse.

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