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Sökning: (WFRF:(Cao Yang 1972 )) pers:(Wu Chunhua) > (2020)

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1.
  • Guo, Jianqiu, et al. (författare)
  • Associations of melamine and cyanuric acid exposure with markers of kidney function in adults : Results from NHANES 2003-2004
  • 2020
  • Ingår i: Environment International. - : Elsevier. - 0160-4120 .- 1873-6750. ; 141
  • Tidskriftsartikel (refereegranskat)abstract
    • Higher melamine exposure may increase the risk of kidney stone formation and kidney injury in infants, but little is known about the potential nephrotoxic effects of environmental low-dose melamine and its derivative exposure on kidney function of adults in the general population. Our objective was to assess associations between urinary concentrations of melamine and its derivative, cyanuric acid, and kidney function through analyzing the data from the National Health and Nutrition Examination Survey (NHANES) 2003-2004. Information on 298 participants aged ≥20 years was utilized. Urinary melamine and cyanuric acid levels were measured using liquid chromatography-tandem mass spectrometry (LC-MS/MS). Estimated glomerular filtration rate (eGFR) and urinary albumin-to-creatinine ratio (UACR) were calculated to reflect kidney function. Covariate-adjusted creatinine standardization concentrations accounting for sex, race, age, race/ethically, and body mass index, was employed to control potential confounding of kidney function. Multivariable linear regression models were conducted to estimate associations of covariate-adjusted creatinine standardization urinary melamine and cyanuric acid concentrations with eGFR and UACR. Log-binomial regression models were performed to estimate risks of impaired kidney function and hypertension associated with urinary melamine and cyanuric acid levels. The geometric mean values of urinary melamine and cyanuric acid concentrations were 1.51 μg/L [95% confidence interval (CI): 1.21 μg/L, 1.89 μg/L] and 5.86 μg/L (95% CI: 5.34 μg/L, 6.44 μg/L), respectively. The median value of estimated daily intake (EDI) for melamine was 0.06 (ranging from undetectable to 1.11) μg/kg body weight/day calculated by urinary concentration and creatinine excretion accounting for sex and body weight. Adults in the fourth quartile of melamine and cyanuric acid exposure had 0.142 mL/min/1.73 m2 (95% CI: -0.271, -0.014) and 0.106 mL/min/1.73 m2 (95% CI: -0.020, 0.006) lower eGFR for melamine and cyanuric acid, respectively, compared to participants in the first quartile of exposure with adjustment for potential confounders. To our best knowledge, this is the first study to report associations between melamine and its derivative and kidney function of the U.S. adults from NHANES 2003-2004. The suggestive evidence revealed that individuals with high melamine exposure had lower eGFR than those with low melamine exposure, although no significant association between melamine and cyanuric acid exposure and markers of kidney function was observed. These findings should be interpreted with caution regarding the possible reverse causality.
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2.
  • Guo, Jianqiu, et al. (författare)
  • Early life triclosan exposure and neurodevelopment of children at 3 years in a prospective birth cohort
  • 2020
  • Ingår i: International journal of hygiene and environmental health (Print). - : Urban & Fischer. - 1438-4639 .- 1618-131X. ; 224
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND: Early life exposure to triclosan, an emerging endocrine disrupting chemical, may adversely impact childhood neurodevelopment, but limited epidemiologic studies have examined the associations.OBJECTIVE: We evaluated the associations between prenatal and postnatal triclosan exposure and child neurodevelopment at 3 years.METHODS: The study included 377 mother-child pairs who participated in Sheyang Mini Birth Cohort Study (SMBCS), a longitudinal birth cohort in China. Triclosan concentrations in maternal and 3-year-old child urine samples were quantified using gas chromatography-tandem mass spectrometry (GC-MS/MS). Gesell Developmental Schedules (GDS) were used to assess child neurodevelopment at 3 years of age. Multivariate linear regression models were applied to estimate associations of prenatal and postnatal urinary triclosan concentrations with children's developmental quotients (DQs).RESULTS: Detection frequencies of triclosan in maternal and childhood urine samples were 100% and 99.5%, respectively. The median values of prenatal and postnatal urinary triclosan levels were 0.65 and 0.44 μg/L, respectively. One ln-unit increase of maternal urinary triclosan concentration was associated with increase of DQ scores in motor area of children (regression coefficient, β = 0.28, 95% confidence interval, CI: 0.03, 0.54; p = 0.03). In sex-stratified analyses, maternal urinary triclosan levels were significantly related to increases in DQ scores in motor area among boys (β = 0.25, 95%CI: 0.01, 0.50; p = 0.04), while postnatal urinary triclosan concentrations were inversely associated with DQ scores in social area in boys (β = -0.37, 95%CI: -0.72, -0.03; p = 0.03).CONCLUSIONS: The findings suggested that prenatal triclosan exposure predicted increases in motor scores, while postnatal triclosan exposure was related to reductions in social scores of 3-year-old children. These associations were only observed in boys. The biological mechanisms linking triclosan exposure to neurodevelopment await further studies.
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3.
  • Guo, Jianqiu, et al. (författare)
  • Maternal and childhood urinary phenol concentrations, neonatal thyroid function, and behavioral problems at 10 years of age : The SMBCS study
  • 2020
  • Ingår i: Science of the Total Environment. - : Elsevier. - 0048-9697 .- 1879-1026. ; 743
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND: Environmental phenols, bisphenol A (BPA), triclosan (TCS), and benzophenone-3 (BP-3), are known as emerging endocrine-disrupting chemicals; however, their impacts on thyroid hormones and children's neurobehaviors are still unclear.OBJECTIVES: We aimed to examine the associations of prenatal and childhood exposure to phenols with neonatal thyroid function and childhood behavioral problems aged 10 years.METHODS: A total of 386 mother-singleton pairs were included from Sheyang Mini Birth Cohort Study (SMBCS), a longitudinal birth cohort in China. We quantified urinary BPA, TCS and BP-3 concentrations in maternal and 10-year-old children's urine samples using gas chromatography tandem mass spectrometry and thyroid function parameters in cord serum samples. Caregivers completed the Strength and Difficulties Questionnaire (SDQ) for their children at 10 years of age. Multivariable linear regression models and logistic regression models were applied to estimate associations of urinary phenol concentrations with thyroid hormones and risks of children's behavioral problems, respectively.RESULTS: The median values of urinary BPA, TCS and BP-3 concentrations for pregnant women were 1.75 μg/L, 0.54 μg/L and 0.37 μg/L, while 1.29 μg/L, 6.64 μg/L and 1.39 μg/L for children, respectively. Maternal urinary BPA concentrations were in associations with 1.00% [95% confidence interval (CI): 0.20%, 1.92%] increases in cord serum FT4 concentrations and significantly associated with increased risks of total difficulties [odds ratio (OR): 1.45, 95% CI: 1.07, 1.97], while maternal urinary levels of BP-3 were significantly related to poorer prosocial behaviors (OR: 1.58, 95% CI: 1.04, 2.39) of children at 10 years of age. In sex-stratified analyses, maternal urinary BPA concentrations were related to increased total difficulty subscales only in boys.CONCLUSIONS: The findings indicated that higher prenatal urinary BPA concentrations were associated with increased risks of total difficulties, especially in boys and maternal urinary BP-3 concentrations were related to poorer prosocial behaviors at 10 years.
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4.
  • Li, Wenting, et al. (författare)
  • Effects of prenatal exposure to five parabens on neonatal thyroid function and birth weight : Evidence from SMBCS study
  • 2020
  • Ingår i: Environmental Research. - : Academic Press. - 0013-9351 .- 1096-0953. ; 188
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND: Parabens, suspected as endocrine-disrupting chemicals, are nearly ubiquitous in the human body and exposure to these chemicals during pregnancy may disrupt thyroid hormones homeostasis and even affect fetal growth, although the impacts are still unclear.OBJECTIVES: We aimed to estimate associations of maternal urinary paraben concentrations with cord serum thyroid hormones and birth weight.METHODS: A subset of 437 mother-newborn pairs were included from a prospective birth cohort with five parabens quantified in maternal urine and seven thyroid function indicators measured in cord serum samples. Multivariable linear regression models and elastic net regression (ENR) models were applied to explore associations between individual and mixtures of prenatal urinary paraben concentrations and thyroid hormones and birth weight, respectively.RESULTS: Maternal urinary ethyl-paraben (EtP) concentrations were associated with increased cord serum total triiodothyronine levels (TT3) [percent change: 1.51%; 95% confidence interval (CI): 0.20%, 2.74%; p=0.017]. Urinary propyl-paraben (PrP) levels predicted higher thyroid peroxidase antibodies (percent change: 4.19%, 95% CI: 0.20%, 8.44%; p=0.041). Maternal urinary EtP and butyl-paraben (BuP) concentrations were significantly positively associated with birth weight [regression coefficient, (β)=40.9g, 95% CI: 3.99, 76.6; p=0.030; β=62.1g, 95% CI: 8.70, 115; p=0.023, for EtP and BuP, respectively]. In sex-stratified analyses, positive relationship between EtP levels and birth weight was observed in boys. Urinary EtP concentrations predicted higher TT3 levels in cord serum samples, assessing parabens as a chemical mixture with ENR models.CONCLUSIONS: Prenatal exposure to parabens may affect thyroid hormone indicators with increased serum TT3 levels and associate with higher birth weight, especially in boys. The underlying biological mechanisms and effects of prenatal paraben exposures on disruption of thyroid function homeostasis and potential impacts of childhood growth and development needed to be further investigated.
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5.
  • Zhang, Jiming, et al. (författare)
  • Early-life carbamate exposure and intelligence quotient of seven-year-old children
  • 2020
  • Ingår i: Environment International. - : Elsevier. - 0160-4120 .- 1873-6750. ; 145
  • Tidskriftsartikel (refereegranskat)abstract
    • Background: Early-life carbamate exposure during developmental period has been linked with adverse health effects and attracted attention.Methods: Three hundred and three children at age of seven were included in the current study. Urinary carbofuranphenol concentrations were measured using gas chromatography-tandem mass spectrometry. Verbal, performance and full-scale intelligence quotients (IQ(V), IQ(P), and IQ(FS)) were assessed using Wechsler Intelligence Scale for Children-Chinese Revised. Generalized linear models were used to explore the associations between carbofuranphenol levels and IQs. Generalized estimating equations were used to explore long-term health effect and sensitive time window.Results: Carbofuranphenol was detected in 96.6% of the seven-year-old urinary samples, the geometric mean, median, and inter quartile range of the carbofuranphenol concentrations were 0.67 mu g/L, 0.30 mu g/L, and 0.09-3.72 mu g/L, respectively, which were similar with the level of three-year-old children from the SMBCS cohort. Seven-year-old carbofuranphenol level was negatively associated with IQP [beta = -0.044; 95% confidence interval (CI): -0.087, -0.001; p = 0.045]. Three-year-old carbofuranphenol level was negatively associated with IQP (beta =-0.100; 95% CI: -0.186, -0.014; p= 0.022) and IQFS (beta =-0.087; 95% CI: -0.173, -0.001; p = 0.047). Carbamate exposure of maternal and children at both three and seven years old had negative associations with IQP (beta = -0.089; 95% CI: -0.171, -0.007; p = 0.034), and IQFS (beta = -0.064; 95% CI: -0.127, -0.000; p = 0.049) of children at age of seven.Conclusion: Results of the present study verify that children in an agricultural region of China were widely exposed to carbamate pesticides. Carbamate exposure in utero and at three and seven years may adversely impact children's neurodevelopment.
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