Literature DB >> 8317438

Measuring exposure to environmental tobacco smoke in studies of acute health effects.

M C Marbury1, S K Hammond, N J Haley.   

Abstract

The relations among three methods of measuring exposure to environmental tobacco smoke, questionnaires, urinary cotinine, and a passive monitor for ambient nicotine, were investigated in a study of 48 children in Minnesota in 1989. Subjects were all under 2 years of age and did not attend day care. Passive nicotine monitors were placed in the activity room and the child's bedroom for 1 week, urine samples were collected at the beginning and end of the week for cotinine analysis, and a detailed questionnaire concerning cigarette smoking was administered at the end of the week. These same measures were obtained weekly for 8 weeks for 22 of the children. Among households with smokers, concentrations of ambient nicotine and urinary cotinine were lowest when the father smoked, intermediate when the mother smoked, and highest when both parents smoked. Activity room concentrations were highly correlated with both urinary cotinine (r = 0.81) and the total number of cigarettes smoked in the house (r = 0.86). Regression equations indicated that knowing who smoked in the house was a more important predictor of ambient nicotine than knowing the amount smoked. Both urinary cotinine and ambient nicotine demonstrated variability over time, although ambient nicotine was less variable. In addition, 100% of possible ambient nicotine samples were collected in contrast to 80% of urine samples. The results of the study suggest that both urinary cotinine and ambient nicotine provide better information about the exposure of young children to environmental tobacco smoke than questionnaire data alone, and that ambient nicotine may be the more useful in this population based on its greater stability and ease of collection.

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Year:  1993        PMID: 8317438     DOI: 10.1093/oxfordjournals.aje.a116612

Source DB:  PubMed          Journal:  Am J Epidemiol        ISSN: 0002-9262            Impact factor:   4.897


  23 in total

1.  Reported measures of environmental tobacco smoke exposure: trials and tribulations.

Authors:  M F Hovell; J M Zakarian; D R Wahlgren; G E Matt; K M Emmons
Journal:  Tob Control       Date:  2000       Impact factor: 7.552

2.  Thirdhand Smoke in the Homes of Medically Fragile Children: Assessing the Impact of Indoor Smoking Levels and Smoking Bans.

Authors:  Thomas F Northrup; Georg E Matt; Melbourne F Hovell; Amir M Khan; Angela L Stotts
Journal:  Nicotine Tob Res       Date:  2015-08-26       Impact factor: 4.244

3.  Transforming growth factor- 1 C-509T polymorphism, oxidant stress, and early-onset childhood asthma.

Authors:  Muhammad T Salam; W James Gauderman; Rob McConnell; Pi-Chu Lin; Frank D Gilliland
Journal:  Am J Respir Crit Care Med       Date:  2007-08-02       Impact factor: 21.405

4.  White blood cell DNA adducts in a cohort of asthmatic children exposed to environmental tobacco smoke.

Authors:  Stephen E Wilson; Glenn Talaska; Robert S Kahn; Brenda Schumann; Jane Khoury; Anthony C Leonard; Bruce P Lanphear
Journal:  Int Arch Occup Environ Health       Date:  2010-03-25       Impact factor: 3.015

5.  Comparison of parental reports of smoking and residential air nicotine concentrations in children.

Authors:  U Gehring; B P Leaderer; J Heinrich; M Oldenwening; M E C A Giovannangelo; E Nordling; G Merkel; G Hoek; T Bellander; B Brunekreef
Journal:  Occup Environ Med       Date:  2006-08-15       Impact factor: 4.402

6.  Seasonal variation and environmental predictors of exhaled nitric oxide in children with asthma.

Authors:  Adam J Spanier; Richard W Hornung; Robert S Kahn; Michelle B Lierl; Bruce P Lanphear
Journal:  Pediatr Pulmonol       Date:  2008-06

7.  Development of a simple and rapid elisa of urinary cotinine for epidemiological application.

Authors:  N Yoshioka; Y Dohi; K Yonemasu
Journal:  Environ Health Prev Med       Date:  1998-04       Impact factor: 3.674

8.  Active and passive exposure status to tobacco smoke of department store employees measured by cotinine ELISA.

Authors:  N Yoshioka; K Yonemasu; Y Dohi; T Sakanashi; R Mizutani; N Kurumatani; Y Zheng; T Ohkado
Journal:  Environ Health Prev Med       Date:  1998-07       Impact factor: 3.674

9.  Environmental exposures, nitric oxide synthase genes, and exhaled nitric oxide in asthmatic children.

Authors:  Adam J Spanier; Robert S Kahn; Richard W Hornung; Ning Wang; Guangyun Sun; Michelle B Lierl; Bruce P Lanphear
Journal:  Pediatr Pulmonol       Date:  2009-08

10.  To what extent do parents strive to protect their children from environmental tobacco smoke in the Nordic countries? A population-based study.

Authors:  K E Lund; A Skrondal; H Vertio; A R Helgason
Journal:  Tob Control       Date:  1998       Impact factor: 7.552

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