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韩国国家环境卫生调查(KoNEHS)中无烟家庭非吸烟居民尿中可替宁的特征分析。

Characterization of urinary cotinine in non-smoking residents in smoke-free homes in the Korean National Environmental Health Survey (KoNEHS).

作者信息

Kim Jeonghoon, Lee Kiyoung

机构信息

Department of Environmental Health, Graduate School of Public Health, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul, 151-742, Republic of Korea.

Department of Environmental Health Research, Seoul Medical Center, 156 Sinnae-ro, Jungnang-gu, Seoul, 131-795, Republic of Korea.

出版信息

BMC Public Health. 2016 Jul 11;16:538. doi: 10.1186/s12889-016-3212-9.

Abstract

BACKGROUND

The objectives of this study were to determine urinary cotinine concentrations in non-smoking residents of smoke-free homes and to establish the relationship of urinary cotinine with housing type and other socio-demographic and secondhand smoke (SHS) exposure factors.

METHODS

We used data from the Korean National Environmental Health Survey I (2009-2011). The study included 814 non-smoking adult residents living in apartments, attached, and detached housing. Residents who lived with smokers were excluded. Urinary cotinine concentration was used as a biomarker for SHS exposure. The factors associated with urinary cotinine levels in non-smoking residents were determined using multivariate regression analysis.

RESULTS

Urinary cotinine was detected in 88 % of the 814 non-smoking residents of smoke-free homes. The urinary cotinine concentrations of residents living in attached [1.18 ng/mg creatinine (Cr)] and detached housing (1.23 ng/mg Cr) were significantly higher than those of residents who lived in apartments (0.69 ng/mg Cr). Urinary cotinine concentrations were significantly higher in residents who were men, those with a household income ≤1000 USD/month, those who were former smokers with >1 year and ≤1 year of not smoking, and those who experienced SHS odor every day. In the multivariate regression analysis, housing type, sex, former smoking status, and frequency of experiencing SHS odor were associated with urinary cotinine concentrations (R (2) = 0.14).

CONCLUSIONS

The majority of non-smoking residents of smoke-free homes had detectable urinary cotinine. Housing type, sex, former smoking status, and frequency of experiencing SHS odor were predictors for urinary cotinine concentrations in the study participants.

摘要

背景

本研究的目的是确定无烟家庭中不吸烟居民的尿可替宁浓度,并建立尿可替宁与住房类型、其他社会人口统计学因素以及二手烟暴露因素之间的关系。

方法

我们使用了韩国国家环境卫生调查I(2009 - 2011年)的数据。该研究纳入了814名居住在公寓、联排房屋和独立房屋中的不吸烟成年居民。与吸烟者同住的居民被排除在外。尿可替宁浓度被用作二手烟暴露的生物标志物。使用多变量回归分析确定与不吸烟居民尿可替宁水平相关的因素。

结果

在814名无烟家庭的不吸烟居民中,88%检测到尿可替宁。居住在联排房屋[1.18纳克/毫克肌酐(Cr)]和独立房屋(1.23纳克/毫克Cr)中的居民尿可替宁浓度显著高于居住在公寓中的居民(0.69纳克/毫克Cr)。男性居民、家庭收入≤1000美元/月的居民、戒烟超过1年且≤1年的前吸烟者以及每天都能闻到二手烟气味的居民尿可替宁浓度显著更高。在多变量回归分析中,住房类型、性别、以前的吸烟状况以及闻到二手烟气味的频率与尿可替宁浓度相关(R² = 0.14)。

结论

无烟家庭中的大多数不吸烟居民尿可替宁可检测到。住房类型、性别、以前的吸烟状况以及闻到二手烟气味的频率是研究参与者尿可替宁浓度的预测因素。

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本文引用的文献

1
Decrease in the urine cotinine concentrations of Korean non-smokers between 2009 and 2011 following implementation of stricter smoking regulations.
Int J Hyg Environ Health. 2016 Jan;219(1):123-8. doi: 10.1016/j.ijheh.2015.10.001. Epub 2015 Oct 13.
2
Air Quality, Biomarker Levels, and Health Effects on Staff in Korean Restaurants and Pubs Before and After a Smoking Ban.
Nicotine Tob Res. 2015 Nov;17(11):1337-46. doi: 10.1093/ntr/ntv012. Epub 2015 Feb 3.
3
National and state estimates of secondhand smoke infiltration among U.S. multiunit housing residents.
Nicotine Tob Res. 2013 Jul;15(7):1316-21. doi: 10.1093/ntr/nts254. Epub 2012 Dec 17.
4
Environmental monitoring of secondhand smoke exposure.
Tob Control. 2013 May;22(3):147-55. doi: 10.1136/tobaccocontrol-2011-050301. Epub 2012 Sep 4.
5
Assessing secondhand smoke using biological markers.
Tob Control. 2013 May;22(3):164-71. doi: 10.1136/tobaccocontrol-2011-050298. Epub 2012 Sep 2.
6
'Neighbour smoke'--exposure to secondhand smoke in multiunit dwellings in Denmark in 2010: a cross-sectional study.
Tob Control. 2013 May;22(3):190-3. doi: 10.1136/tobaccocontrol-2011-050393. Epub 2012 Jun 12.
7
Secondhand smoke levels in public building main entrances: outdoor and indoor PM2.5 assessment.
Tob Control. 2012 Nov;21(6):543-8. doi: 10.1136/tobaccocontrol-2011-050040. Epub 2011 Sep 28.
8
Does the smoke ever really clear? Thirdhand smoke exposure raises new concerns.
Environ Health Perspect. 2011 Feb;119(2):A70-4. doi: 10.1289/ehp.119-a70.
9
Tobacco-smoke exposure in children who live in multiunit housing.
Pediatrics. 2011 Jan;127(1):85-92. doi: 10.1542/peds.2010-2046. Epub 2010 Dec 13.

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