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High Data Output and Automated 3D Correlative Light–Electron Microscopy Method

Correlative light/electron microscopy (CLEM) allows the simultaneous observation of a given subcellular structure by fluorescence light microscopy (FLM) and electron microscopy. The use of this approach is becoming increasingly frequent in cell biology. In this study, we report on a new high data ou...

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Autores principales: Vicidomini, Giuseppe, Gagliani, Maria C, Canfora, Michela, Cortese, Katia, Frosi, Fabio, Santangelo, Clara, Di Fiore, Pier Paolo, Boccacci, Patrizia, Diaspro, Alberto, Tacchetti, Carlo
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2635477/
https://www.ncbi.nlm.nih.gov/pubmed/18817522
http://dx.doi.org/10.1111/j.1600-0854.2008.00815.x
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author Vicidomini, Giuseppe
Gagliani, Maria C
Canfora, Michela
Cortese, Katia
Frosi, Fabio
Santangelo, Clara
Di Fiore, Pier Paolo
Boccacci, Patrizia
Diaspro, Alberto
Tacchetti, Carlo
author_facet Vicidomini, Giuseppe
Gagliani, Maria C
Canfora, Michela
Cortese, Katia
Frosi, Fabio
Santangelo, Clara
Di Fiore, Pier Paolo
Boccacci, Patrizia
Diaspro, Alberto
Tacchetti, Carlo
author_sort Vicidomini, Giuseppe
collection PubMed
description Correlative light/electron microscopy (CLEM) allows the simultaneous observation of a given subcellular structure by fluorescence light microscopy (FLM) and electron microscopy. The use of this approach is becoming increasingly frequent in cell biology. In this study, we report on a new high data output CLEM method based on the use of cryosections. We successfully applied the method to analyze the structure of rough and smooth Russell bodies used as model systems. The major advantages of our method are (i) the possibility to correlate several hundreds of events at the same time, (ii) the possibility to perform three-dimensional (3D) correlation, (iii) the possibility to immunolabel both endogenous and recombinantly expressed proteins at the same time and (iv) the possibility to combine the high data analysis capability of FLM with the high precision–accuracy of transmission electron microscopy in a CLEM hybrid morphometry analysis. We have identified and optimized critical steps in sample preparation, defined routines for sample analysis and retracing of regions of interest, developed software for semi/fully automatic 3D reconstruction and defined preliminary conditions for an hybrid light/electron microscopy morphometry approach.
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spelling pubmed-26354772009-02-10 High Data Output and Automated 3D Correlative Light–Electron Microscopy Method Vicidomini, Giuseppe Gagliani, Maria C Canfora, Michela Cortese, Katia Frosi, Fabio Santangelo, Clara Di Fiore, Pier Paolo Boccacci, Patrizia Diaspro, Alberto Tacchetti, Carlo Traffic Toolbox Correlative light/electron microscopy (CLEM) allows the simultaneous observation of a given subcellular structure by fluorescence light microscopy (FLM) and electron microscopy. The use of this approach is becoming increasingly frequent in cell biology. In this study, we report on a new high data output CLEM method based on the use of cryosections. We successfully applied the method to analyze the structure of rough and smooth Russell bodies used as model systems. The major advantages of our method are (i) the possibility to correlate several hundreds of events at the same time, (ii) the possibility to perform three-dimensional (3D) correlation, (iii) the possibility to immunolabel both endogenous and recombinantly expressed proteins at the same time and (iv) the possibility to combine the high data analysis capability of FLM with the high precision–accuracy of transmission electron microscopy in a CLEM hybrid morphometry analysis. We have identified and optimized critical steps in sample preparation, defined routines for sample analysis and retracing of regions of interest, developed software for semi/fully automatic 3D reconstruction and defined preliminary conditions for an hybrid light/electron microscopy morphometry approach. Blackwell Publishing Ltd 2008-11 2008-09-16 /pmc/articles/PMC2635477/ /pubmed/18817522 http://dx.doi.org/10.1111/j.1600-0854.2008.00815.x Text en © 2008 The Authors Journal compilation © 2008 Blackwell Munksgaard
spellingShingle Toolbox
Vicidomini, Giuseppe
Gagliani, Maria C
Canfora, Michela
Cortese, Katia
Frosi, Fabio
Santangelo, Clara
Di Fiore, Pier Paolo
Boccacci, Patrizia
Diaspro, Alberto
Tacchetti, Carlo
High Data Output and Automated 3D Correlative Light–Electron Microscopy Method
title High Data Output and Automated 3D Correlative Light–Electron Microscopy Method
title_full High Data Output and Automated 3D Correlative Light–Electron Microscopy Method
title_fullStr High Data Output and Automated 3D Correlative Light–Electron Microscopy Method
title_full_unstemmed High Data Output and Automated 3D Correlative Light–Electron Microscopy Method
title_short High Data Output and Automated 3D Correlative Light–Electron Microscopy Method
title_sort high data output and automated 3d correlative light–electron microscopy method
topic Toolbox
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2635477/
https://www.ncbi.nlm.nih.gov/pubmed/18817522
http://dx.doi.org/10.1111/j.1600-0854.2008.00815.x
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