Literature DB >> 21171611

Surface iron inhibits quartz-induced cytotoxic and inflammatory responses in alveolar macrophages.

Mara Ghiazza1, Agnes M Scherbart, Ivana Fenoglio, Francesca Grendene, Francesco Turci, Gianmario Martra, Catrin Albrecht, Roel P F Schins, Bice Fubini.   

Abstract

The mechanism of enhancement/inhibition of quartz toxicity induced by iron is still unclear. Here the amount of iron on a fibrogenic quartz (Qz) was increased by wet impregnation (Fe(NO(3))(3) 0.67 and 6.7 wt %). X-ray diffraction (XRD), XRF diffuse reflectance, UV-vis, and infrared (IR) spectroscopies revealed dispersed ferric ions, and hematite aggregates at the higher loading. Surface features relevant to pathogenicity and cell responses were compared not only to the original quartz but also to reference quartz DQ12. Surface charge (ζ-potential) was more negative on the original and low-loaded specimen than on the high-loaded one. DQ12 had a less negative ζ-potential than Qz, ascribed to the absence of aluminium present in Qz (1.7 wt %). All quartz specimens were able to generate HO(•) radicals, iron-loaded samples being more reactive than original quartz. Iron deposition inhibited the rupture of a C-H bond. All quartzes were phagocytized by alveolar macrophages (AMΦ cell line NR8383) to the same extent, irrespective of their surface state. Conversely, iron loading increased AMΦ viability (evaluated by cytotoxicity and induction of apoptosis). Qz was found to be much less cytotoxic than DQ12. The induction of oxidative stress and inflammatory responses (evaluated by HO-1 mRNA expression and TNF-α mRNA and protein expression) revealed a reduction in inflammogenicity upon iron loading and a more inflammogenic potency of DQ12 ascribed to undissociated SiOH interacting via H-bonding with cell membrane components. The results suggest that besides aluminium also iron at the quartz surface may have an inhibitory effect on adverse health responses.

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Year:  2010        PMID: 21171611     DOI: 10.1021/tx1003003

Source DB:  PubMed          Journal:  Chem Res Toxicol        ISSN: 0893-228X            Impact factor:   3.739


  7 in total

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4.  Biological effects of inhaled hydraulic fracturing sand dust. VIII. Immunotoxicity.

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5.  Metal-sulfide mineral ores, Fenton chemistry and disease--particle induced inflammatory stress response in lung cells.

Authors:  Andrea D Harrington; Alexander Smirnov; Stella E Tsirka; Martin A A Schoonen
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6.  Respirable stone particles differ in their ability to induce cytotoxicity and pro-inflammatory responses in cell models of the human airways.

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Journal:  Part Fibre Toxicol       Date:  2021-05-06       Impact factor: 9.400

7.  Subchronic pulmonary pathology, iron overload, and transcriptional activity after Libby amphibole exposure in rat models of cardiovascular disease.

Authors:  Jonathan H Shannahan; Abraham Nyska; Mark Cesta; Mette C J Schladweiler; Beena D Vallant; William O Ward; Andrew J Ghio; Stephen H Gavett; Urmila P Kodavanti
Journal:  Environ Health Perspect       Date:  2011-10-06       Impact factor: 9.031

  7 in total

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