Literature DB >> 28164228

Electrothermal Vaporization-QQQ-ICP-MS for Determination of Chromium in Mainstream Cigarette Smoke Particulate.

Mark R Fresquez1,2, Nathalie Gonzalez-Jimenez2,3, Naudia Gray4, Liza Valentin-Blasini4, Clifford H Watson4, R Steven Pappas4.   

Abstract

Chromium is transported in mainstream tobacco smoke at very low concentrations. However, when chromium is deposited too deeply in the lungs for mucociliary clearance, or is in a particle that is too large to pass directly through tissues, it bioaccumulates in the lungs of smokers. It is important to determine the concentrations of chromium that are transported in mainstream smoke. Several reliable studies have resulted in reports of chromium concentrations in smoke particulate that were below limits of detection (LODs) for the instruments and methods employed. In this study, electrothermal vaporization-triple quad-inductively coupled plasma-mass spectrometry (ETV-QQQ-ICP-MS) was chosen for determination of chromium concentrations in mainstream smoke because of the high sensitivity of ETV combined with QQQ-ICP-MS. The smoke from five reference, quality control, and commercial cigarettes was analyzed using ETV-QQQ-ICP-MS with isotope dilution for quantitative determination of chromium. The method LOD was sufficiently low that chromium concentrations in mainstream smoke could indeed be determined. The chromium concentrations in the smoke particulate were between 0.60 and 1.03 ng/cigarette. The range of chromium concentrations was at or below previously reported LODs. Determination of the oxidation state of the chromium transported in mainstream smoke would also be important, in consideration of the fact that both chromium(III) and chromium(VI) oxidation states cause inhalation toxicity, but chromium(VI) is also a carcinogen. It was possible to separate the oxidation states using ETV-QQQ-ICP-MS. However, determination of individual species at the levels found in mainstream smoke particulate matter was not possible with the present method. Published by Oxford University Press 2017. This work is written by (a) US Government employee(s) and is in the public domain in the US.

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Year:  2017        PMID: 28164228      PMCID: PMC5504516          DOI: 10.1093/jat/bkx010

Source DB:  PubMed          Journal:  J Anal Toxicol        ISSN: 0146-4760            Impact factor:   3.367


  16 in total

1.  Pulmonary metal distribution in urban dwellers.

Authors:  F Tsuchiyama; N Hisanaga; E Shibata; T Aoki; H Takagi; T Ando; Y Takeuchi
Journal:  Int Arch Occup Environ Health       Date:  1997       Impact factor: 3.015

2.  Triple Quad-ICP-MS Measurement of Toxic Metals in Mainstream Cigarette Smoke from Spectrum Research Cigarettes.

Authors:  R Steven Pappas; Naudia Gray; Nathalie Gonzalez-Jimenez; Mark Fresquez; Clifford H Watson
Journal:  J Anal Toxicol       Date:  2015-09-10       Impact factor: 3.367

3.  Determination of Toxic Metals in Little Cigar Tobacco with 'Triple Quad' ICP-MS.

Authors:  R Steven Pappas; Naudia Martone; Nathalie Gonzalez-Jimenez; Mark R Fresquez; Clifford H Watson
Journal:  J Anal Toxicol       Date:  2015-02-27       Impact factor: 3.367

4.  Analysis of toxic metals in commercial moist snuff and Alaskan iqmik.

Authors:  R S Pappas; S B Stanfill; C H Watson; D L Ashley
Journal:  J Anal Toxicol       Date:  2008-05       Impact factor: 3.367

5.  Cigarette yields and human exposure: a comparison of alternative testing regimens.

Authors:  David Hammond; Geoffrey T Fong; K Michael Cummings; Richard J O'Connor; Gary A Giovino; Ann McNeill
Journal:  Cancer Epidemiol Biomarkers Prev       Date:  2006-08       Impact factor: 4.254

6.  Smoke composition and predicting relationships for international commercial cigarettes smoked with three machine-smoking conditions.

Authors:  M E Counts; M J Morton; S W Laffoon; R H Cox; P J Lipowicz
Journal:  Regul Toxicol Pharmacol       Date:  2005-01-26       Impact factor: 3.271

Review 7.  Application of toxicological risk assessment principles to the chemical constituents of cigarette smoke.

Authors:  J Fowles; E Dybing
Journal:  Tob Control       Date:  2003-12       Impact factor: 7.552

8.  Characterization of SPECTRUM Variable Nicotine Research Cigarettes.

Authors:  Patricia Richter; Pappas R Steven; Roberto Bravo; Joseph G Lisko; Maria Damian; Nathalie Gonzalez-Jimenez; Naudia Gray; Lisa M Keong; Jacob B Kimbrell; Peter Kuklenyik; Tameka S Lawler; Grace E Lee; Magaly Mendez; Jose Perez; Shakia Smith; Hang Tran; Robert Tyx; Clifford H Watson
Journal:  Tob Regul Sci       Date:  2016

9.  Toxic metal concentrations in mainstream smoke from cigarettes available in the USA.

Authors:  R Steven Pappas; Mark R Fresquez; Naudia Martone; Clifford H Watson
Journal:  J Anal Toxicol       Date:  2014-02-16       Impact factor: 3.367

10.  Quantitative analysis of some important metals and metalloids in tobacco products by inductively coupled plasma-mass spectrometry (ICP-MS).

Authors:  Syed Ghulam Musharraf; Muhammad Shoaib; Amna Jabbar Siddiqui; Muhammad Najam-Ul-Haq; Aftab Ahmed
Journal:  Chem Cent J       Date:  2012-06-18       Impact factor: 4.215

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  3 in total

1.  Analysis of Toxic Metals in Electronic Cigarette Aerosols Using a Novel Trap Design.

Authors:  Mary Halstead; Naudia Gray; Nathalie Gonzalez-Jimenez; Mark Fresquez; Liza Valentin-Blasini; Clifford Watson; R Steven Pappas
Journal:  J Anal Toxicol       Date:  2020-03-07       Impact factor: 3.367

2.  Toxic Metals in Liquid and Aerosol from Pod-Type Electronic Cigarettes.

Authors:  Naudia Gray; Mary Halstead; Liza Valentin-Blasini; Clifford Watson; R Steven Pappas
Journal:  J Anal Toxicol       Date:  2022-02-14       Impact factor: 3.220

3.  Cancer potencies and margin of exposure used for comparative risk assessment of heated tobacco products and electronic cigarettes aerosols with cigarette smoke.

Authors:  Gregory Rodrigo; Guy Jaccard; Donatien Tafin Djoko; Alexandra Korneliou; Marco Esposito; Maxim Belushkin
Journal:  Arch Toxicol       Date:  2020-10-06       Impact factor: 5.153

  3 in total

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