Cryogenic Electron Tomography

Cryogenic electron tomography (cryo-ET) is an imaging technique that reconstructs three-dimensional structures of biological specimens in a near-native, frozen state, preserving cellular organization and molecular architecture. Samples are rapidly vitrified to prevent ice crystal formation, then examined in an electron microscope as they are tilted through a range of angles to collect a projection series; computational methods combine these images into a tomogram. Cryo-ET reveals proteins, organelles, membranes, and macromolecular complexes within cells, supporting studies of infection, cell biology, and structural biology. When combined with subtomogram averaging or correlative microscopy, it can connect molecular structure with cellular context.

Cryogenic Electron Tomography - Related Videos

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JoVE EoE - Bacterial Growth and Techniques

Preparation of Legionella pneumophila for Cryogenic Electron Tomography

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2025

Source: Chetrit, D., et al. Applying Live Cell Imaging and Cryo-Electron Tomography to Resolve Spatiotemporal Features of the Legionella pneumophila Dot/Icm Secretion System. J. Vis. Exp. (2020)The video describes how to prepare Legionella pneumophila samples for cryo-electron tomography by combining bacterial culture, gold nanoparticle marking, and vitrification techniques. The process preserves native cellular structures and enables high-resolution imaging of membrane-associated secretion...

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JoVE Journal - Biology
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Strategies for Optimization of Cryogenic Electron Tomography Data Acquisition

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Cited by 8 •

2021

The increasing demand for large-scale data collection in cryogenic electron tomography requires high-throughput image acquisition routines. Described here is a protocol that implements the recent developments of advanced acquisition strategies aimed at maximizing the time-efficiency and throughput of tomographic data collection.

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JoVE Journal - Biology
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Workflow Using a Cryogenic Coincident Fluorescence, Electron, and Ion Beam Microscope for Targeted Milling of Cells

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Cited by 2 •

2025

This workflow enables lamella production targeting fluorescently labeled biological structures that are small (<1 μm in axial extent) and rare (1 copy per cell) using a cryogenic tri-coincident imaging platform. This platform integrates fluorescence microscopy, focused ion beam milling, and scanning electron microscopy at a single focal position and enables simultaneous fluorescence microscopy while milling.

Preparation of Primary Neurons for Visualizing Neurites in a Frozen-hydrated State Using Cryo-Electron Tomography

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Cited by 24 •

2014

To preserve neuronal processes for ultrastructural analysis, we describe a protocol for plating of primary neurons on electron microscopy grids followed by flash freezing, yielding samples suspended in a layer of vitreous ice. These samples can be examined with a cryo-electron microscope to visualize structures at the nanometer scale.

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JoVE Journal - Biochemistry
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Micropatterning Transmission Electron Microscopy Grids to Direct Cell Positioning within Whole-Cell Cryo-Electron Tomography Workflows

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Cited by 29 •

2021

The goal of this protocol is to direct cell adhesion and growth to targeted areas of grids for cryo-electron microscopy. This is achieved by applying an anti-fouling layer that is ablated in user-specified patterns followed by deposition of extra-cellular matrix proteins in the patterned areas prior to cell seeding.

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