Literature DB >> 18000653

A new in vitro cellular system for the analysis of mineral fiber biopersistence.

Hermine Dika Nguea1, Aymon de Reydellet, Patrice Lehuédé, Alain de Méringo, Anne Robé, Alain Le Faou, Bertrand H Rihn.   

Abstract

The toxicity of mineral fibers, whether they are natural or man made (MMMF), is usually evaluated in vivo using biopersistence tests in rodents. Development of an in vitro cellular model would be worthwhile in order to reduce, refine and finally replace animal models. For this purpose, we developed an in vitro assay using human monocytic cell line (U-937) to evaluate a new manufactured rock wool fiber (HDN) biodegradation. Experiments on earlier known mineral fibers asbestos (crocidolite) and glass wool fibers (CM44) were also performed. U-937 responded to HDN and CM44 only if they were activated. Among the different activators we used, Escherichia coli living cells as well as FS were the most efficient as evidenced by alterations of HDN and CM44 surface, detected by scanning electron microscopy, and by the measure of silicon released from the rock wool fibers. Asbestos fibers were not degraded when incubated in the presence of living bacteria. The MMMF modifications were function of the fiber composition, the time of exposure to activated cells and the concentration of activators. The pattern of MMMF degradation by our in vitro system was in accordance with those observed in an in vivo study, thus indicating that the fiber degradation by macrophage cells activated by E. coli living cells as well as FS is a valuable system to assess mineral fibers' biopersistence.

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Year:  2007        PMID: 18000653     DOI: 10.1007/s00204-007-0257-7

Source DB:  PubMed          Journal:  Arch Toxicol        ISSN: 0340-5761            Impact factor:   5.153


  3 in total

Review 1.  Nanomaterials: certain aspects of application, risk assessment and risk communication.

Authors:  Peter Laux; Jutta Tentschert; Christian Riebeling; Albert Braeuning; Otto Creutzenberg; Astrid Epp; Valérie Fessard; Karl-Heinz Haas; Andrea Haase; Kerstin Hund-Rinke; Norbert Jakubowski; Peter Kearns; Alfonso Lampen; Hubert Rauscher; Reinhilde Schoonjans; Angela Störmer; Axel Thielmann; Uwe Mühle; Andreas Luch
Journal:  Arch Toxicol       Date:  2017-12-22       Impact factor: 5.153

2.  Biosolubility of high temperature insulation wools in simulated lung fluids.

Authors:  Annapaola Cannizzaro; Federica Angelosanto; Elena Barrese; Antonella Campopiano
Journal:  J Occup Med Toxicol       Date:  2019-05-14       Impact factor: 2.646

3.  In vitro acellular dissolution of mineral fibres: A comparative study.

Authors:  Alessandro F Gualtieri; Simone Pollastri; Nicola Bursi Gandolfi; Magdalena Lassinantti Gualtieri
Journal:  Sci Rep       Date:  2018-05-04       Impact factor: 4.379

  3 in total

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