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Seasonal perspective of dietary arsenic consumption and urine arsenic in an endemic population

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Abstract

Exposure to arsenic in arsenic endemic areas is most remarkable environmental health challenges. Although effects of arsenic contamination are well established, reports are unavailable on probable seasonal variation due to changes of food habit depending on winter and summer seasons, especially for endemic regions of Nadia district, West Bengal. Complete 24-h diets, drinking–cooking water, first morning voided urine samples, and diet history were analyzed on 25 volunteers in arsenic endemic Chakdah block of Nadia district, once in summer followed by once in winter from the same participants. Results depicted no seasonal variation of body weight and body mass index. Arsenic concentration of source drinking and cooking water decreased (p = 0.04) from 26 μg L−1 in summer to 6 μg L−1 in winter season. We recorded a seasonal decrease of water intake in male (3.8 and 2.5 L day −1) and female (2.6 and 1.2 L day−1) participants from summer to winter. Arsenic intake through drinking water decreased (p = 0.04) in winter (29 μg day−1) than in summer (100 μg day−1), and urinary arsenic concentration decreased (p = 0.018) in winter (41 μg L−1) than in summer (69 μg L−1). Dietary arsenic intake remained unchanged (p = 0.24) over the seasons. Hence, we can infer that human health risk assessment from arsenic needs an insight over temporal scale.

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References

  • Alam, M. G. M., Snow, E. T., & Tanaka, A. (2003). Arsenic and heavy metal contamination of vegetables grown in Samta village, Bangladesh. Science of the Total Environment, 308, 83–96.

    Article  CAS  Google Scholar 

  • Antelmi, A., Lovreglio, P., Drago, I., Greco, L., Meliddo, G., Manghisi, M. S., et al. (2007). Significance and limitation of creatinine adjustment for urinary chromium and arsenic in biological monitoring of occupational exposure to these metallic elements. Giornale Italiano di Medicina del Lavoro ed Ergonomia, 29, 288–291.

    CAS  Google Scholar 

  • ATSDR. (2007). Toxicological profile for arsenic. Agency for Toxic Substances and Disease Registry. http://www.atsdr.cdc.gov/ToxProfiles/tp2.pdf. Accessed 11 August 2013.

  • BIS (Bureau of Indian Standards). (2004). Indian standard drinking water specification, first revision. IS-10500. New Delhi, Delhi: Bureau of Indian Standards. http://www.indiawaterportal.org/sites/indiawaterportal.org/files/Drinking_Water_Standards_BIS_10500_2004_by_BIS.pdf. Accessed 15 August 2013.

  • Biswas, A., Biswas, S., & Santra, S. C. (2012). Risk from winter vegetables and pulses produced in arsenic endemic areas of Nadia district: field study comparison with market basket survey. Bulletin of Environmental Contamination and Toxicology, 88(6), 909–914.

    Article  CAS  Google Scholar 

  • Biswas, A., Biswas, S., Lavu, R. S. V., Gupta, P. C., & Santra, S. C. (2013a). Arsenic prone rice cultivars—a study in endemic region. Paddy and Water Environment. doi:10.1007/s10333-013-0392-0.

    Google Scholar 

  • Biswas, A., Biswas, S., & Santra, S. C. (2013b). Arsenic in irrigated water, soil and rice: perspective of cropping seasons. Paddy and Water Environment. doi:10.1007/s10333-013-0396-9.

    Google Scholar 

  • Biswas, A., Deb, D., Ghose, A., Du Laing, G., De Neve, J., Santra, S. C., et al. (2014). Dietary arsenic consumption and urine arsenic in an endemic population: response to improvement of drinking water quality in a 2-year consecutive study. Environmental Science and Pollution Research, 21, 609–619.

    Article  CAS  Google Scholar 

  • Chowdhury, U. K., Rahaman, M. M., Mondal, B. K., Pal, K., Lodh, D., Biswas, B. K., et al. (2001). Ground water arsenic contamination and human suffering in West Bengal, India and Bangladesh. Environmental Sciences, 8, 393–415.

    CAS  Google Scholar 

  • Das, D., Chatterjee, A., Mandal, B. K., Samanta, G., & Chakroborti, D. (1995). Arsenic in ground water in six districts of West Bengal, India: the biggest arsenic calamity in the world. Part 2. Arsenic concentration in drinking water, hair, nails, urine, skin-scale and liver tissue (biopsy) of the affected people. Analyst, 120, 917–924.

    Article  CAS  Google Scholar 

  • Datta, B. K., Mishra, A., Singh, A., Sar, T. K., Sarkar, S., Bhatacharya, A., et al. (2010). Chronic arsenicosis in cattle with special reference to its metabolism in arsenic endemic village of Nadia district West Bengal India. Science of the Total Environment, 409, 284–288.

    Article  CAS  Google Scholar 

  • Deb, D., Biswas, A., Ghose, A., Das, A., Majumdar, K.K., Guha Mazumder, D.N. (2012). Nutritional deficiency and arsenical manifestations: a perspective study in an arsenic endemic region of West Bengal, India. Publ Health Nutr. doi:10.1017/S1368980012004697.

  • Dittmar, J., Voegelin, A., Roberts, L. C., Hug, S. J., Saha, G. C., Ali, M. A., et al. (2007). Spatial distribution and temporal variability of arsenic in irrigated rice fields in Bangladesh. 2. Paddy soil. Environmental Science and Technology, 41, 5967–5972.

    Article  CAS  Google Scholar 

  • Duxbury, J. M., Mayer, A. B., Lauren, J. G., & Hassan, N. (2003). Food chain aspects of arsenic contamination in Bangladesh: effects on quality and productivity of rice. Journal of Environmental Science & Health A, 38, 61–69.

    Article  CAS  Google Scholar 

  • FAO and WHO. (2011). Evaluation of certain contaminants in food: seventy second report of the joint FAO/WHO expert committee on food additives. Geneva: World Health Organization.

    Google Scholar 

  • Farid, A.T.M., Sen, R., Haque, M.A., Hossain, K.M., Panaullah, G.M., Meisner, C.A., et al. (2005). Arsenic status of water, soil, rice grain and straw of individual shallow tube well command area of Brahmanbaria. In: Behavior of arsenic in aquifers, soils and plants (Conference Proceedings), Dhaka, 2005.

  • Gallagher, D., Visser, M., Sepulveda, D., Pierson, R. N., Harris, T., & Heymsfield, S. B. (1996). How useful is body mass index for comparison of body fatness across age, sex, and ethnic groups? American Journal of Epidemiology, 143, 228–239.

    Article  CAS  Google Scholar 

  • Guha Mazumder, D. N., Ghose, A., Majumdar, K. K., Ghosh, N., Saha, C., & Guha Mazumder, R. N. (2010). Arsenic contamination of ground water and its health impact on population of district of Nadia, West Bengal, India. Indian Journal of Community Medicine , 35, 331–338.

    Article  Google Scholar 

  • Guha Mazumder, D. N., Deb, D., Biswas, A., Saha, C., Nandy, A., Ganguly, B., et al. (2013). Evaluation of dietary arsenic exposure and its biomarkers: a case study of West Bengal, India. Journal of Environmental Science and Health, Part A, 488, 896–904.

    Article  Google Scholar 

  • Hels, O., Hassan, N., Tetens, I., & Thilsted, S. H. (2003). Food consumption, energy and nutrient intake and nutritional status in rural Bangladesh: changes from 1981-82 to 1995-96. European Journal of Clinical Nutrition, 57, 586–594.

    Article  CAS  Google Scholar 

  • Huq, S. M. I., Joardar, J. C., Parvin, S., Correll, R., & Naidu, R. (2006). Arsenic contamination in food-chain: transfer of arsenic into food materials through groundwater irrigation. Journal of Health, Population, and Nutrition, 24, 305–316.

    Google Scholar 

  • Islam, M.R., Jahiruddin, M., Rahman, G.K.M.M., Miah, M.A.M., Farid, A.T.M., Panaullah, G.M., et al. (2005). Arsenic in paddy soils of Bangladesh: levels, distribution and contribution of irrigation and sediments. In: Behavior of arsenic in aquifers, soils and plants (Conference Proceedings), Dhaka, 2005.

  • Kile, M. L., Houseman, E. A., Breton, C. V., Smith, T., Quamruzzaman, O., Rahman, M., et al. (2007). Association between total ingested arsenic and toenail arsenic concentrations. Journal of Environmental Science and Health, Part A, 42(12), 1827–1834.

    Article  CAS  Google Scholar 

  • Marchiset-Ferlay, N., Savanovitch, C., & Sauvant-Rochat, M. P. (2012). What is the best biomarker to assess arsenic exposure via drinking water? Environmental International, 39, 150–171.

    Article  CAS  Google Scholar 

  • Meharg, A. A., & Rahman, M. M. (2003). Arsenic contamination of Bangladesh paddy field soils: implications for rice contribution to arsenic consumption. Environmental Science and Technology, 37, 229–234.

    Article  CAS  Google Scholar 

  • Nermell, B., Lindberg, A. L., Rahman, M., Berglund, M., Persson, L. A., Arifeen, S. E., et al. (2008). Urinary arsenic concentration adjustment factors and malnutrition. Environmental Research, 106, 212–218.

    Article  CAS  Google Scholar 

  • NRC (National Research Council). (1999). Health Effects of Arsenic. Arsenic in drinking water (pp. 83–149). Washington DC: National Academic Press.

    Google Scholar 

  • Ohno, K., Yanase, T., Matsuo, Y., Kimura, T., Rahman, M. H., Magara, Y., et al. (2007). Arsenic intake via water and food by a population living in an arsenic-affected area of Bangladesh. Science of the Total Environment, 381(1–3), 68–76.

    Article  CAS  Google Scholar 

  • Rahman, M. A., Hasegawa, H., Rahman, M. A., Rahman, M. M., & Miah, M. A. (2006). Influence of cooking method on arsenic retention in cooked rice related to dietary exposure. Science of the Total Environment, 370, 51–60.

    Article  CAS  Google Scholar 

  • Roychowdhury, T., Uchino, T., Tokunaga, H., & Ando, M. (2002). Survey of arsenic in food composites from an arsenic affected area of West Bengal, India. Food and Chemical Toxicology, 40, 1611–1621.

    Article  CAS  Google Scholar 

  • Watanabe, C., Kawata, A., Sudo, N., Sekiyama, M. M., Tsukasa, I. T., Munjoo, B. M., et al. (2004). Water intake in an Asian population living in arsenic contaminated area. Toxicology and Applied Pharmacology, 198, 272–282.

    Article  CAS  Google Scholar 

  • WHO Technical Publication No. 30 Clinical Aspects of Arsenicosis. (2005). In D. Caussy (Ed.), A field guide for detection, management and surveillance of arsenicosis cases (pp. 5–9). New Delhi: WHO Regional Office for South East Asia.

    Google Scholar 

  • Williams, P. N., Price, A. H., Raab, A., Hossain, S. A., Feldmann, J., & Meharg, A. A. (2005). Variation in arsenic speciation and concentration in paddy rice related to dietary exposure. Environmental Science and Technology, 39, 5531–5540.

    Article  CAS  Google Scholar 

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Authors sincerely acknowledge the participants of this study.

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Correspondence to Anirban Biswas.

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Biswas, A., Deb, D., Ghose, A. et al. Seasonal perspective of dietary arsenic consumption and urine arsenic in an endemic population. Environ Monit Assess 186, 4543–4551 (2014). https://doi.org/10.1007/s10661-014-3718-5

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  • DOI: https://doi.org/10.1007/s10661-014-3718-5

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