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Publications [#178111] of Bernard M Fischer

Papers Published

  1. BM Fischer, DA Domowicz, S Zheng, JL Carter, NG McElvaney, C Taggart, JR Lehmann, JA Voynow, AJ Ghio, Neutrophil elastase increases airway epithelial nonheme iron levels., Clinical and translational science, vol. 2 no. 5 (October, 2009), pp. 333-9, ISSN 1752-8062 [doi]
    (last updated on 2013/05/16)

    Alpha-1-antitrypsin (A1AT) deficiency is characterized by increased neutrophil elastase (NE) activity and oxidative stress in the lung. We hypothesized that NE exposure generates reactive oxygen species by increasing lung non-heme iron. To test this hypothesis, we measured bronchoalveolar lavage (BAL) iron and ferritin levels, using inductively coupled plasma (ICP) optical emission spectroscopy and an ELISA respectively, in A1AT-deficient patients and healthy subjects. To confirm the role of NE in regulating lung iron homeostasis, we administered intratracheally NE or control buffer to rats and measured BAL and lung iron and ferritin. Our results demonstrated that A1AT-deficient patients and rats post-elastase exposure have elevated levels of iron and ferritin in the BAL. To investigate the mechanism of NE-induced increased iron levels, we exposed normal human airway epithelial cells to either NE or control vehicle in the presence or absence of ferritin, and quantified intracellular iron uptake using calcein fluorescence and ICP mass spectroscopy. We also tested whether NE degraded ferritin in vitro using ELISA and western analysis. We demonstrated in vitro that NE increased intracellular non-heme iron levels and degraded ferritin. Our results suggest that NE digests ferritin increasing the extracellular iron pool available for cellular uptake.

    Adult • Animals • Bronchi • Female • Ferritins • Fluoresceins • Humans • Iron • Leukocyte Elastase • Male • Middle Aged • Models, Biological • Rats • Time Factors • alpha 1-Antitrypsin Deficiency • chemistry • chemistry* • metabolism • metabolism*

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