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Synchrotron X-ray microscopy reveals early calcium and iron interaction with crocidolite fibers in the lung of exposed mice.

Authors :
Pascolo, Lorella
Zabucchi, Giuliano
Gianoncelli, Alessandra
Kourousias, George
Trevisan, Elisa
Pascotto, Ernesto
Casarsa, Claudia
Ryan, Chris
Lucattelli, Monica
Lungarella, Giuseppe
Cavarra, Eleonora
Bartalesi, Barbara
Zweyer, Marina
Cammisuli, Francesca
Melato, Mauro
Borelli, Violetta
Source :
Toxicology Letters. Jan2016, Vol. 241, p111-120. 10p.
Publication Year :
2016

Abstract

Human exposure to asbestos can cause a wide variety of lung diseases that are still a current major health concern, even if asbestos has been banned in many countries. It has been shown in many studies that asbestos fibers, ingested by alveolar macrophages, disrupt lung iron homeostasis by sequestering iron. Calcium can also be deposited on the fibers. The pathways along which iron and above all calcium interact with fibers are still unknown. Our aim was that of investigating if the iron accumulation induced by the inhaled asbestos fibers also involves calcium ions accumulation. Lung sections of asbestos-exposed mice were analyzed using an extremely sensitive procedure available at the synchrotron facilities, that provides morphological and chemical information based on X-ray fluorescence microspectroscopy (μ-XRF). In this study we show that (1) where conventional histochemical procedures revealed only weak deposits of iron and calcium, μ-XRF analysis is able to detect significant deposits of both iron and calcium on the inhaled asbestos fibers; (2) the extent of the deposition of these ions is proportionally directly related and (3) iron and calcium deposition on inhaled asbestos fibers is concomitant with the appearance of inflammatory and hyperplastic reactions. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03784274
Volume :
241
Database :
Academic Search Index
Journal :
Toxicology Letters
Publication Type :
Academic Journal
Accession number :
111739794
Full Text :
https://doi.org/10.1016/j.toxlet.2015.11.016