Co-exposure of arsenic and cadmium through drinking water and tobacco smoking: Risk assessment on kidney dysfunction

被引:0
作者
Muhammad B. Arain
Tasneem G. Kazi
Jameel Ahmed Baig
Hassan I. Afridi
Kapil D. Sarajuddin
Haleem Brehman
Sadaf S. Panhwar
机构
[1] Abdul Wali Khan University Mardan,Department of Chemistry
[2] University of Sindh,National Center of Excellence in Analytical Chemistry, Department of Analytical Chemistry
来源
Environmental Science and Pollution Research | 2015年 / 22卷
关键词
Kidney dysfunction; Arsenic; Cadmium; Drinking water; Tobacco smoking; Risk assessment;
D O I
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中图分类号
学科分类号
摘要
The combined exposure of arsenic (As) and cadmium (Cd) causes more pronounced renal toxicity. The study aimed to evaluate the level of As and Cd in biological samples (blood and urine) of adults males, age ranged (30–50 years) exposed referent (ER) and exposed kidney patients (EKP), consumed contaminated drinking water of lake and smoking local cigarettes manufactured by tobacco plants grown on agricultural soil, irrigated with contaminated lake water. For comparative purpose age matched nonexoposed referent (NR) and nonexposed kidney patient (NKP), consumed municipal treaded water and smoking branded cigarette were also selected. The As and Cd levels in drinking water, biological samples, tobacco of branded and nonbranded cigarettes were analyzed using electrothermal atomic absorption spectrometry. The As and Cd concentrations in lake water were higher than the permissible limit recommended by the World Health Organization for drinking water. The As and Cd levels in local cigarette tobacco were found to be 3- to 4-folds higher than branded cigarettes. The biochemical parameters especially urinary N-acetyl-β-glucosaminidase (NAG) of ER, EKP, ER, and EKP subjects were studied as a biomarkers of renal dysfunction. The NAG values were found to be higher in EKP as compared to NKP (p < 0.01). The linear regressions showed higher correlations between As and Cd concentrations in water versus blood and urine samples of EKP (r = 0.71–0.78 and 0.68–0.72), as compared to NKP (p < 0.05).
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页码:350 / 357
页数:7
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  • [1] Abernathy CO(1999)Arsenic: health effects, mechanisms of actions, and research issues Environ Health Perspect 107 593-288
  • [2] Afridi HI(2008)Evaluation of status of toxic metals in biological samples of diabetes ellitus patients Diabetes Res Clin Pract 80 280-604
  • [3] Anawar H(2002)Arsenic poisoning in groundwater: health risk and geochemical sources in Bangladesh Environ Int 27 597-48
  • [4] Akai J(2010)Chemical safety of meat and meat products Meat Sci 86 38-1856
  • [5] Mostofa K(2008)Total dissolved and bioavailable elements in water and sediment samples and their accumulation in Chemosphere 70 1845-224
  • [6] Safiullah S(2008) of polluted Manchar Lake J Hazard Mater 155 216-248
  • [7] Tareq S(2009)Hazardous impact of toxic metals on tobacco leaves grown in contaminated soil by ultrasonic assisted pseudo-digestion: multivariate study Food Chem Toxicol 47 242-790
  • [8] Andrée S(1996)Determination of arsenic levels in lake water, sediment, and foodstuff from selected area of Sindh, Pakistan: estimation of daily dietary intake Free Radic Biol Med 21 783-72
  • [9] Jira W(1990)Arsenic induces oxidant stress and NF-kB activation in cultured aortic endothelial cells Toxicol Environ Chem 27 65-702
  • [10] Schwind K-H(1990)Early markers of cadmium nephrotoxicity: biological significance and predictive value Lancet 336 699-120