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本文引用的文献

1
Carpet-dust chemicals as measures of exposure: Implications of variability.作为暴露量度的地毯灰尘化学物质:变异性的影响
Emerg Themes Epidemiol. 2012 Mar 23;9(1):2. doi: 10.1186/1742-7622-9-2.
2
Dietary cadmium exposure and risk of postmenopausal breast cancer: a population-based prospective cohort study.膳食镉暴露与绝经后乳腺癌风险:一项基于人群的前瞻性队列研究。
Cancer Res. 2012 Mar 15;72(6):1459-66. doi: 10.1158/0008-5472.CAN-11-0735.
3
Associations between proteins and heavy metals in urine at low environmental exposures: evidence of reverse causality.低环境暴露下尿液中蛋白质与重金属的关联:反向因果关系的证据。
Toxicol Lett. 2012 May 5;210(3):345-52. doi: 10.1016/j.toxlet.2012.02.005. Epub 2012 Feb 13.
4
Relation between dietary cadmium intake and biomarkers of cadmium exposure in premenopausal women accounting for body iron stores.考虑体铁储存时,绝经前妇女膳食镉摄入与镉暴露生物标志物之间的关系。
Environ Health. 2011 Dec 16;10:105. doi: 10.1186/1476-069X-10-105.
5
Cadmium exposure and cancer mortality in the Third National Health and Nutrition Examination Survey cohort.镉暴露与第三次全国健康和营养调查队列的癌症死亡率。
Occup Environ Med. 2012 Feb;69(2):153-6. doi: 10.1136/oemed-2011-100111. Epub 2011 Nov 7.
6
Differences in urine cadmium associations with kidney outcomes based on serum creatinine and cystatin C.基于血清肌酐和胱抑素 C 的尿镉与肾脏结局的相关性差异。
Environ Res. 2011 Nov;111(8):1236-42. doi: 10.1016/j.envres.2011.07.012. Epub 2011 Aug 25.
7
Sampling of urinary cadmium: differences between 24-h urine and overnight spot urine sampling, and impact of adjustment for dilution.尿镉采样:24 小时尿与夜间单次尿采样的差异,以及稀释调整的影响。
Int Arch Occup Environ Health. 2012 Feb;85(2):189-96. doi: 10.1007/s00420-011-0658-z. Epub 2011 Jun 9.
8
The relationship between body iron stores and blood and urine cadmium concentrations in US never-smoking, non-pregnant women aged 20-49 years.美国 20-49 岁不吸烟、非妊娠女性体内铁储存量与血液和尿液中镉浓度的关系。
Environ Res. 2011 Jul;111(5):702-7. doi: 10.1016/j.envres.2011.03.007. Epub 2011 Apr 19.
9
Sources of cadmium exposure among healthy premenopausal women.健康绝经前妇女的镉暴露源。
Sci Total Environ. 2011 Apr 1;409(9):1632-7. doi: 10.1016/j.scitotenv.2011.01.037. Epub 2011 Feb 17.
10
Biomonitorization of cadmium, chromium, manganese, nickel and lead in whole blood, urine, axillary hair and saliva in an occupationally exposed population.职业暴露人群全血、尿液、腋毛和唾液中镉、铬、锰、镍和铅的生物监测。
Sci Total Environ. 2011 Feb 15;409(6):1172-80. doi: 10.1016/j.scitotenv.2010.11.033. Epub 2011 Jan 6.

加利福尼亚州北部女性尿液中镉浓度的决定因素和个体内变异性。

Determinants and within-person variability of urinary cadmium concentrations among women in northern California.

机构信息

Cancer Prevention Institute of California, Berkeley, California, USA.

出版信息

Environ Health Perspect. 2013 Jun;121(6):643-9. doi: 10.1289/ehp.1205524. Epub 2013 Apr 3.

DOI:10.1289/ehp.1205524
PMID:23552363
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3672909/
Abstract

BACKGROUND

Cadmium (Cd) is a toxic metal associated with increased morbidity and mortality. Urinary Cd (U-Cd) concentration is considered a biomarker of long-term exposure.

OBJECTIVES

Our objectives were to evaluate the within-person correlation among repeat samples and to identify predictors of U-Cd concentrations.

METHODS

U-Cd concentrations (micrograms per liter) were measured in 24-hr urine samples collected from 296 women enrolled in the California Teachers Study in 2000 and a second 24-hr sample collected 3-9 months later from 141 of the participants. Lifestyle and sociodemographic characteristics were obtained via questionnaires. The Total Diet Study database was used to quantify dietary cadmium intake based on a food frequency questionnaire. We estimated environmental cadmium emissions near participants' residences using a geographic information system.

RESULTS

The geometric mean U-Cd concentration was 0.27 µg/L and the range was 0.1-3.6 µg/L. The intraclass correlation among repeat samples from an individual was 0.50. The use of a single 24-hr urine specimen to characterize Cd exposure in a case-control study would result in an observed odds ratio of 1.4 for a true odds ratio of 2.0. U-Cd concentration increased with creatinine, age, and lifetime pack-years of smoking among ever smokers or lifetime intensity-years of passive smoking among nonsmokers, whereas it decreased with greater alcohol consumption and number of previous pregnancies. These factors explained 42-44% of the variability in U-Cd concentrations.

CONCLUSION

U-Cd levels varied with several individual characteristics, and a single measurement of U-Cd in a 24-hr sample did not accurately reflect medium- to long-term body burden.

摘要

背景

镉(Cd)是一种有毒金属,与发病率和死亡率的增加有关。尿镉(U-Cd)浓度被认为是长期暴露的生物标志物。

目的

我们的目的是评估重复样本之间的个体内相关性,并确定 U-Cd 浓度的预测因素。

方法

我们测量了 2000 年参加加利福尼亚教师研究的 296 名女性的 24 小时尿液样本中的 U-Cd 浓度(微克/升),并从其中 141 名参与者中收集了 3-9 个月后的第二个 24 小时样本。通过问卷调查获得生活方式和社会人口统计学特征。使用基于食物频率问卷的总膳食研究数据库来量化饮食中的镉摄入量。我们使用地理信息系统估计参与者居住地附近的环境镉排放量。

结果

U-Cd 浓度的几何平均值为 0.27 µg/L,范围为 0.1-3.6 µg/L。个体重复样本之间的组内相关系数为 0.50。在病例对照研究中,使用单个 24 小时尿液样本来描述 Cd 暴露会导致观察到的比值比为 1.4,而真实比值比为 2.0。U-Cd 浓度随肌酐、年龄和终生吸烟的吸烟包年数(对于曾吸烟者)或非吸烟者的终生被动吸烟强度年数而增加,而随酒精摄入量和既往妊娠次数的增加而降低。这些因素解释了 U-Cd 浓度变异性的 42-44%。

结论

U-Cd 水平随几个个体特征而变化,单次 24 小时尿液样本中的 U-Cd 测量值不能准确反映中至长期的体内负荷。