Ultrathin Serial Sectioning

Ultrathin serial sectioning is a microscopy preparation technique that produces consecutive nanometer-scale slices of a resin-embedded specimen, enabling detailed structural analysis across an entire volume. A diamond knife mounted on an ultramicrotome cuts the hardened block into sequential sections, which are collected on grids and examined, commonly by transmission electron microscopy; aligned images can then support three-dimensional reconstruction. In biochemistry, this approach links molecular composition and cellular organization by revealing membranes, organelles, protein-rich structures, and interfaces within their spatial context. It supports ultrastructural studies of cells, tissues, biomaterials, and disease-related changes that single sections may not capture.

Ultrathin Serial Sectioning - Related Videos

Research

JoVE Journal - Engineering

A Method for Obtaining Serial Ultrathin Sections of Microorganisms in Transmission Electron Microscopy

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Cited by 15 •

2018

This study presents reliable and easy procedures for obtaining serial ultrathin sections of a microorganism without expensive equipment in transmission electron microscopy.

Snap Freezing of Muscle Tissue for Sectioning: A Protocol to Obtain Ultrathin Sections of Rapidly Frozen Murine Muscle Tissue

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2023

This video describes the procedure for snap freezing muscle tissue and obtaining its thin sections. The technique can help study cancer-related cachexia in colon cancer mouse models.

Education

JoVE Science Education - Advanced Biology
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Serial Dilutions and Plating: Microbial Enumeration

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2023

Source: Jonathan F. Blaize1, Elizabeth Suter1, and Christopher P. Corbo1 1 Department of Biological Sciences, Wagner College, 1 Campus Road, Staten Island NY, 10301 Quantitative assessment of prokaryotes can be onerous given their abundance, propensity for exponential proliferation, species diversity within a population, and specific physiological needs. Compounding this challenge, is the four-phase nature in which bacteria replicate (lag, log, stationary and death). The ability to accurately...

Multimodal Hierarchical Imaging of Serial Sections for Finding Specific Cellular Targets within Large Volumes

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Cited by 12 •

2018

This protocol targets specific cells in tissue for imaging at nanoscale resolution using a scanning electron microscope (SEM). Large numbers of serial sections from resin-embedded biological material are first imaged in a light microscope to identify the target and then in a hierarchical manner in the SEM.

Fabrication of Large-area Free-standing Ultrathin Polymer Films

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Cited by 10 •

2015

We describe a method for the fabrication of large-area (up to 13 cm diameter) and ultrathin (as thin as 8 nm) polymer films. Instead of using a sacrificial interlayer to delaminate the film from its substrate, we use a self-limiting surface treatment suitable for arbitrarily large areas.

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