Literature DB >> 16774873

Urinary mercapturic acids and a hemoglobin adduct for the dosimetry of acrylamide exposure in smokers and nonsmokers.

Michael Urban1, Dominique Kavvadias, Kirsten Riedel, Gerhard Scherer, Anthony R Tricker.   

Abstract

Acrylamide, used in the manufacture of polyacrylamide and grouting agents, is also present in the diet and tobacco smoke. It is a neurotoxin and a probable human carcinogen. Analytical methods were established to determine the mercapturic acids of acrylamide (N-acetyl-S-(2-carbamoylethyl)-L-cysteine, AAMA) and its metabolite glycidamide (N-(R/S)-acetyl-S-(2-carbamoyl-2-hydroxyethyl)-L-cysteine, GAMA) by high-performance liquid chromatography-tandem mass spectrometry (LC-MS/MS), as well as the N-terminal valine adduct of acrylamide (N-2-carbamoylethylvaline, AAVal) released by N-alkyl Edman degradation of hemoglobin by gas chromatography-mass spectrometry (GC-MS). Twenty-four-hour urine samples from 60 smokers and 60 nonsmokers were analyzed for AAMA and GAMA, and blood samples were analyzed for AAVal. Smokers excreted 2.5-fold higher amounts of AAMA and 1.7-fold higher amounts of GAMA in their urine and had 3-fold higher levels of AAVal in their blood. All three biomarkers of acrylamide exposure were strongly correlated with the smoking dose as determined by the daily cigarette consumption, nicotine equivalents (the molar sum of nicotine, cotinine, trans-3'-hydroxycotinine, and their respective glucuronides) in urine, salivary cotinine, and carbon monoxide in expired breath. In nonsmokers, a weak but significant correlation between AAMA and the estimated dietary intake of acrylamide was found. It is concluded that all three biomarkers of acrylamide are suitable for the determination of exposure in both smokers and nonsmokers.

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Year:  2006        PMID: 16774873     DOI: 10.1080/08958370600748430

Source DB:  PubMed          Journal:  Inhal Toxicol        ISSN: 0895-8378            Impact factor:   2.724


  15 in total

1.  Biological monitoring for occupational acrylamide exposure from acrylamide production workers.

Authors:  Yu-Fang Huang; Kuen-Yuh Wu; Saou-Hsing Liou; Shi-Nian Uang; Chu-Chih Chen; Wei-Chung Shih; Shih-Chuan Lee; Chih-Chun Jean Huang; Mei-Lien Chen
Journal:  Int Arch Occup Environ Health       Date:  2010-07-02       Impact factor: 3.015

2.  A Randomized Clinical Trial of Snus Examining the Effect of Complete Versus Partial Cigarette Substitution on Smoking-Related Behaviors, and Biomarkers of Exposure.

Authors:  Ellen Meier; Bruce R Lindgren; Amanda Anderson; Sarah A Reisinger; Kaila J Norton; Joni Jensen; Lori Strayer; Laura Dick; Mei-Kuen Tang; Menglan Chen; Steven G Carmella; Stephen S Hecht; Sharon E Murphy; Jing Yang; Irina Stepanov; Richard J O'Connor; Peter G Shields; Dorothy K Hatsukami
Journal:  Nicotine Tob Res       Date:  2020-04-17       Impact factor: 4.244

3.  Estimation of exposure to dietary acrylamide based on mercapturic acids level in urine of Polish women post partum and an assessment of health risk.

Authors:  Hanna Mojska; Iwona Gielecińska; Aleksandra Zielińska; Joanna Winiarek; Włodzimierz Sawicki
Journal:  J Expo Sci Environ Epidemiol       Date:  2015-04-01       Impact factor: 5.563

4.  Quantitative analysis of trihydroxybutyl mercapturic acid, a urinary metabolite of 1,3-butadiene, in humans.

Authors:  Srikanth Kotapati; Brock A Matter; Amy L Grant; Natalia Y Tretyakova
Journal:  Chem Res Toxicol       Date:  2011-08-04       Impact factor: 3.739

5.  Mitochondrial Localization of SARM1 in Acrylamide Intoxication Induces Mitophagy and Limits Neuropathy.

Authors:  Shuai Wang; Mingxue Song; Hui Yong; Cuiqin Zhang; Kang Kang; Zhidan Liu; Yiyu Yang; Zhengcheng Huang; Shu'e Wang; Haotong Ge; Xiulan Zhao; Fuyong Song
Journal:  Mol Neurobiol       Date:  2022-09-29       Impact factor: 5.682

Review 6.  Dietary acrylamide and human cancer: a systematic review of literature.

Authors:  Mandeep K Virk-Baker; Tim R Nagy; Stephen Barnes; John Groopman
Journal:  Nutr Cancer       Date:  2014-05-29       Impact factor: 2.900

7.  The acrylamide content of smokeless tobacco products.

Authors:  Kevin McAdam; Harriet Kimpton; Carl Vas; David Rushforth; Andrew Porter; Brad Rodu
Journal:  Chem Cent J       Date:  2015-10-12       Impact factor: 4.215

8.  Urinary biomarkers of smokers' exposure to tobacco smoke constituents in tobacco products assessment: a fit for purpose approach.

Authors:  Evan O Gregg; Emmanuel Minet; Michael McEwan
Journal:  Biomarkers       Date:  2013-07-31       Impact factor: 2.658

9.  A correlation study applied to biomarkers of internal and effective dose for acrylonitrile and 4-aminobiphenyl in smokers.

Authors:  Gerhard Scherer; Kirk Newland; Ermioni Papadopoulou; Emmanuel Minet
Journal:  Biomarkers       Date:  2014-04-22       Impact factor: 2.658

10.  Switching from usual brand cigarettes to a tobacco-heating cigarette or snus: Part 2. Biomarkers of exposure.

Authors:  Michael W Ogden; Kristin M Marano; Bobbette A Jones; Walter T Morgan; Mitchell F Stiles
Journal:  Biomarkers       Date:  2015-11-10       Impact factor: 2.658

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