Literature DB >> 20601099

Cytotoxicity and genotoxicity in vitro and irritation potency in vivo of two red phosphorus-based pyrotechnic smokes.

Matti Hemmilä1, Maija Hihkiö, Jukka-Pekka Kasanen, Mari Turunen, Merja Järvelä, Satu Suhonen, Anna-Liisa Pasanen, Hannu Norppa.   

Abstract

Two red phosphorus (RP)-based smokes (P60 and RPB), differing from each other mainly in RP content and in type of additive, were evaluated for in vitro cytotoxicity (cell viability by the trypan-blue exclusion method) and genotoxicity (comet assay) by exposing BEAS 2B human bronchial epithelial cells to the smokes in a laboratory-scale chamber for 5 min. The irritation potency of RPB smoke was studied in mice. A hexachloroethane-based smoke (HC/Zn/TNT) was used as a reference in the studies. A 5-min exposure of BEAS 2B cells to P60 smoke (1.1, 2.2 and 4.4 g/m(3), measured as H(3)PO(4)) did not induce any cytotoxic effects, while RPB smoke (1.3, 2.6 and 5.1g/m(3), measured as H(3)PO(4)) caused a mild decrease in cell viability at higher concentrations, without a clear dose-dependent effect. Neither of the RP smokes showed a genotoxic response in the comet assay with BEAS 2B cells, while HC/Zn/TNT was clearly genotoxic (0.9-3.5 g/m(3) as ZnCl(2)). In the mouse bioassay, head-only exposure to RPB smoke (20-450 mg/m(3) for 30 min as a single exposure, or 65-90 and 25-110 mg/m(3) - measured as H(3)PO(4) - for 30 min/day during 5 days) caused a concentration-dependent sensory irritation, which was evident as a decrease in respiratory rate and an increase in time-of-pause after inspiration, in a similar manner as with HC/Zn/TNT smoke. The concentration that caused a 50% decrease in respiratory frequency (RD(max)50) was calculated to be 1140 mg/m(3) for the RPB smoke and 145 mg/m(3) for the HC/Zn/TNT smoke. No pulmonary irritation was observed. 2010 Elsevier B.V. All rights reserved.

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Year:  2010        PMID: 20601099     DOI: 10.1016/j.mrgentox.2010.06.007

Source DB:  PubMed          Journal:  Mutat Res        ISSN: 0027-5107            Impact factor:   2.433


  1 in total

1.  Zebrafish Locomotor Responses Reveal Irritant Effects of Fine Particulate Matter Extracts and a Role for TRPA1.

Authors:  Joey S Stevens; Stephanie Padilla; David M DeMarini; Deborah L Hunter; W Kyle Martin; Leslie C Thompson; M Ian Gilmour; Mehdi S Hazari; Aimen K Farraj
Journal:  Toxicol Sci       Date:  2018-02-01       Impact factor: 4.849

  1 in total

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