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Where is it and how much? Mapping and quantifying elements in single cells

Authors :
S. Lagomarsino
Stefano Iotti
Concettina Cappadone
Emil Malucelli
Azzurra Sargenti
Alessandra Gianoncelli
Michela Fratini
Giovanna Farruggia
Lucia Merolle
Andrea Notargiacomo
Malucelli, Emil
Fratini, Michela
Notargiacomo, Andrea
Gianoncelli, Alessandra
Merolle, Lucia
Sargenti, Azzurra
Cappadone, Concettina
Farruggia, Giovanna
Lagomarsino, Stefano
Iotti, Stefano
Source :
Analyst (Lond., 1877, Print) 141 (2016): 5221–5235. doi:10.1039/c6an01091a, info:cnr-pdr/source/autori:Malucelli, Emil; Fratini, Michela; Notargiacomo, Andrea; Gianoncelli, Alessandra; Merolle, Lucia; Sargenti, Azzurra; Cappadone, Concettina; Farruggia, Giovanna; Lagomarsino, Stefano; Iotti, Stefano/titolo:Where is it and how much? Mapping and quantifying elements in single cells/doi:10.1039%2Fc6an01091a/rivista:Analyst (Lond., 1877, Print)/anno:2016/pagina_da:5221/pagina_a:5235/intervallo_pagine:5221–5235/volume:141
Publication Year :
2016
Publisher :
Chemical Society, London , Regno Unito, 2016.

Abstract

The biological function of a chemical element in cells not only requires the determination of its intracellular quantity, but also the spatial distribution of its concentration. Different strategies can be employed to quantify and map the intracellular concentration of elements in single cells. The assessment of the intracellular elemental concentration, which is the relevant information, requires the measurement of cell volume. This challenging and demanding task requires combining different techniques allowing gathering of both morphological and compositional information on the same cell. Moreover, the need to analyse samples more similar to their natural state requires complex hardware equipment, and supplementary efforts in preparation protocols. Nevertheless, the response to the question: "where is it and how much?" is worth all these efforts. This review aims at providing an insight into the recent and most advanced techniques and strategies for quantifying and mapping chemical elements in single cells. We describe and discuss indirect detection techniques (label based) which make use of fluorescent dyes, and direct ones (label free), such as particle induced X-ray emission, proton backscattering spectrometry, scanning transmission ion spectrometry, nano-secondary ion mass spectrometry, X-ray fluorescence microscopy, complemented by X-ray imaging.

Details

Language :
English
Database :
OpenAIRE
Journal :
Analyst (Lond., 1877, Print) 141 (2016): 5221–5235. doi:10.1039/c6an01091a, info:cnr-pdr/source/autori:Malucelli, Emil; Fratini, Michela; Notargiacomo, Andrea; Gianoncelli, Alessandra; Merolle, Lucia; Sargenti, Azzurra; Cappadone, Concettina; Farruggia, Giovanna; Lagomarsino, Stefano; Iotti, Stefano/titolo:Where is it and how much? Mapping and quantifying elements in single cells/doi:10.1039%2Fc6an01091a/rivista:Analyst (Lond., 1877, Print)/anno:2016/pagina_da:5221/pagina_a:5235/intervallo_pagine:5221–5235/volume:141
Accession number :
edsair.doi.dedup.....31f4895e80c406e816fb10084b965847