Literature DB >> 14506632

Oxalate deposition on asbestos bodies.

Andrew J Ghio1, Victor L Roggli, Judy H Richards, Kay M Crissman, Jacqueline D Stonehuerner, Claude A Piantadosi.   

Abstract

We report on a deposition of oxalate crystals on ferruginous bodies after occupational exposure to asbestos demonstrated in 3 patients. We investigated the mechanism and possible significance of this deposition by testing the hypothesis that oxalate generated through nonenzymatic oxidation of ascorbate by asbestos-associated iron accounts for the deposition of the crystal on a ferruginous body. Crocidolite asbestos (1000 microg/mL) was incubated with 500 micromol H(2)O(2) and 500 micromol ascorbate for 24 hours at 22 degrees C. The dependence of oxalate generation on iron-catalyzed oxidant production was tested with the both the metal chelator deferoxamine and the radical scavenger dimethylthiourea. Incubation of crocidolite, H(2)O(2), and ascorbate in vitro generated approximately 42 nmol of oxalate in 24 hours. Oxalate generation was diminished significantly by the inclusion of either deferoxamine or dimethylthiourea in the reaction mixture. Incubation of asbestos bodies and uncoated fibers isolated from human lung with 500 micromol H(2)O(2) and 500 micromol ascorbate for 24 hours at 22 degrees C resulted in the generation of numerous oxalate crystals. We conclude that iron-catalyzed production of oxalate from ascorbate can account for the deposition of this crystal on ferruginous bodies.

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Year:  2003        PMID: 14506632     DOI: 10.1016/s0046-8177(03)00252-1

Source DB:  PubMed          Journal:  Hum Pathol        ISSN: 0046-8177            Impact factor:   3.466


  1 in total

1.  Synchrotron soft X-ray imaging and fluorescence microscopy reveal novel features of asbestos body morphology and composition in human lung tissues.

Authors:  Lorella Pascolo; Alessandra Gianoncelli; Burkhard Kaulich; Clara Rizzardi; Manuela Schneider; Cristina Bottin; Maurizio Polentarutti; Maya Kiskinova; Antonio Longoni; Mauro Melato
Journal:  Part Fibre Toxicol       Date:  2011-02-07       Impact factor: 9.400

  1 in total

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