Literature DB >> 16835595

Comparison of health effects between individuals with and without skin lesions in the population exposed to arsenic through drinking water in West Bengal, India.

Pritha Ghosh1, Mayukh Banerjee, Sujata De Chaudhuri, Rajdeep Chowdhury, Jayanta K Das, Angshuman Mukherjee, Ajoy K Sarkar, Lakshmikanta Mondal, Kalipada Baidya, Tanmoy Jyoti Sau, Apurba Banerjee, Arindam Basu, Keya Chaudhuri, Kunal Ray, Ashok K Giri.   

Abstract

A study was conducted to explore the effect of arsenic causing conjunctivitis, neuropathy and respiratory illness in individuals, with or without skin lesions, as a result of exposure through drinking water, contaminated with arsenic to similar extent. Exposed study population belongs to the districts of North 24 Parganas and Nadia, West Bengal, India. A total of 725 exposed (373 with skin lesions and 352 without skin lesions) and 389 unexposed individuals were recruited as study participants. Participants were clinically examined and interviewed. Arsenic content in drinking water, urine, nail and hair was estimated. Individuals with skin lesion showed significant retention of arsenic in nail and hair and lower amount of urinary arsenic compared to the group without any skin lesion. Individuals with skin lesion also showed higher risk for conjunctivitis ((odd's ratio) OR: 7.33, 95% CI: 5.05-10.59), peripheral neuropathy (OR: 3.95, 95% CI: 2.61-5.93) and respiratory illness (OR: 4.86, 95% CI: 3.16-7.48) compared to the group without any skin lesion. The trend test for OR of the three diseases in three groups was found to be statistically significant. Again, individuals without skin lesion in the exposed group showed higher risk for conjunctivitis (OR: 4.66, 95% CI: 2.45-8.85), neuropathy (OR: 3.99, 95% CI: 1.95-8.09), and respiratory illness (OR: 3.21, 95% CI: 1.65-6.26) when compared to arsenic unexposed individuals. Although individuals with skin lesions were more susceptible to arsenic-induced toxicity, individuals without skin lesions were also subclinically affected and are also susceptible to arsenic-induced toxicity and carcinogenicity when compared to individuals not exposed to arsenic.

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Year:  2006        PMID: 16835595     DOI: 10.1038/sj.jes.7500510

Source DB:  PubMed          Journal:  J Expo Sci Environ Epidemiol        ISSN: 1559-0631            Impact factor:   5.563


  23 in total

1.  Factors associated with arsenicosis and arsenic exposure status in Nepal: implications from community based study.

Authors:  Narendra Maden; Anjana Singh; Linda S Smith; Makhan Maharjan; Shreekrishna Shrestha
Journal:  J Community Health       Date:  2011-02

2.  Precancerous and non-cancer disease endpoints of chronic arsenic exposure: the level of chromosomal damage and XRCC3 T241M polymorphism.

Authors:  Manjari Kundu; Pritha Ghosh; Sanhita Mitra; J K Das; T J Sau; Saptarshi Banerjee; J Christopher States; Ashok K Giri
Journal:  Mutat Res       Date:  2010-10-28       Impact factor: 2.433

3.  Evaluation of the serum catalase and myeloperoxidase activities in chronic arsenic-exposed individuals and concomitant cytogenetic damage.

Authors:  Mayukh Banerjee; Nilanjana Banerjee; Pritha Ghosh; Jayanta K Das; Santanu Basu; Ajoy K Sarkar; J Christopher States; Ashok K Giri
Journal:  Toxicol Appl Pharmacol       Date:  2010-08-20       Impact factor: 4.219

4.  Polymorphisms in the TNF-α and IL10 gene promoters and risk of arsenic-induced skin lesions and other nondermatological health effects.

Authors:  Nilanjana Banerjee; Sujay Nandy; James K Kearns; Apurba K Bandyopadhyay; Jayanta K Das; Papiya Majumder; Santanu Basu; Saptarshi Banerjee; Tanmoy Jyoti Sau; J Christopher States; Ashok K Giri
Journal:  Toxicol Sci       Date:  2011-02-25       Impact factor: 4.849

Review 5.  Inorganic arsenic and respiratory health, from early life exposure to sex-specific effects: A systematic review.

Authors:  Tiffany R Sanchez; Matthew Perzanowski; Joseph H Graziano
Journal:  Environ Res       Date:  2016-02-15       Impact factor: 6.498

6.  A pilot study: the importance of inter-individual differences in inorganic arsenic metabolism for birth weight outcome.

Authors:  Catherine W Yeckel; Kathleen M McCarty; Elyssa R Gelmann; Eugen Gurzau; Anca Gurzau; Walter Goessler; Julie Kunrath
Journal:  Environ Toxicol Pharmacol       Date:  2013-10-19       Impact factor: 4.860

7.  Chronic arsenic exposure impairs macrophage functions in the exposed individuals.

Authors:  Nilanjana Banerjee; Saptarshi Banerjee; Rupashree Sen; Apurba Bandyopadhyay; Nilendu Sarma; Papiya Majumder; Jayanta K Das; Mitali Chatterjee; Syed N Kabir; Ashok K Giri
Journal:  J Clin Immunol       Date:  2009-06-10       Impact factor: 8.317

Review 8.  Drinking Water Arsenic Contamination, Skin Lesions, and Malignancies: A Systematic Review of the Global Evidence.

Authors:  Margaret R Karagas; Anala Gossai; Brandon Pierce; Habibul Ahsan
Journal:  Curr Environ Health Rep       Date:  2015-03

Review 9.  Health effects of arsenic and chromium in drinking water: recent human findings.

Authors:  Allan H Smith; Craig M Steinmaus
Journal:  Annu Rev Public Health       Date:  2009       Impact factor: 21.981

10.  Chronic exposure to arsenic in the drinking water alters the expression of immune response genes in mouse lung.

Authors:  Courtney D Kozul; Thomas H Hampton; Jennifer C Davey; Julie A Gosse; Athena P Nomikos; Phillip L Eisenhauer; Daniel J Weiss; Jessica E Thorpe; Michael A Ihnat; Joshua W Hamilton
Journal:  Environ Health Perspect       Date:  2009-03-04       Impact factor: 9.031

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