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research article

Investigation of resins suitable for the preparation of biological sample for 3-D electron microscopy

Kizilyaprak, Caroline
•
Longo, Giovanni  
•
Daraspe, Jean
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2015
Journal of Structural Biology (JSB)

In the last two decades, the third-dimension has become a focus of attention in electron microscopy to better understand the interactions within subcellular compartments. Initially, transmission electron tomography (TEM tomography) was introduced to image the cell volume in semi-thin sections (similar to 500 nm). With the introduction of the focused ion beam scanning electron microscope, a new tool, FIB-SEM tomography, became available to image much larger volumes. During TEM tomography and FIB-SEM tomography, the resin section is exposed to a high electron/ion dose such that the stability of the resin embedded biological sample becomes an important issue. The shrinkage of a resin section in each dimension, especially in depth, is a well-known phenomenon. To ensure the dimensional integrity of the final volume of the cell, it is important to assess the properties of the different resins and determine the formulation which has the best stability in the electron/ion beam. Here, eight different resin formulations were examined. The effects of radiation damage were evaluated after different times of TEM irradiation. To get additional information on mass-loss and the physical properties of the resins (stiffness and adhesion), the topography of the irradiated areas was analysed with atomic force microscopy (AFM). Further, the behaviour of the resins was analysed after ion milling of the surface of the sample with different ion currents. In conclusion, two resin formulations, Hard Plus and the mixture of Durcupan/Epon, emerged that were considerably less affected and reasonably stable in the electron/ion beam and thus suitable for the 3-D investigation of biological samples. (C) 2014 Elsevier Inc. All rights reserved.

  • Details
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Type
research article
DOI
10.1016/j.jsb.2014.10.009
Web of Science ID

WOS:000348975100008

Author(s)
Kizilyaprak, Caroline
Longo, Giovanni  
Daraspe, Jean
Humbel, Bruno M.
Date Issued

2015

Publisher

Elsevier

Published in
Journal of Structural Biology (JSB)
Volume

189

Issue

2

Start page

135

End page

146

Subjects

Radiation damage

•

Shrinkage of resin section

•

Epoxy

•

Methacrylate

•

Epon

•

Lowicryl

•

Durcupan

•

Focused ion beam (FIB)

•

Scanning electron microscope (SEM)

•

Transmission electron microscope (TEM)

•

Tomography

•

Atomic force microscopy (AFM)

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPMV  
Available on Infoscience
May 29, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/114693
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