Long-term consequences of arsenic poisoning during infancy due to contaminated milk powder

被引:62
作者
Dakeishi M. [1 ]
Murata K. [1 ]
Grandjean P. [2 ,3 ]
机构
[1] Department of Environmental Health Sciences, Akita University, School of Medicine, Akita 010-8543
[2] Department of Environmental Medicine, Institute of Public Health, University of Southern Denmark, Odense C, DK-5000
[3] Department of Environmental Health, Harvard School of Public Health, Landmark 3-111E, Boston, MA 02215
关键词
Arsenic; Arsenic Concentration; Intelligence Quotient; Skin Pigmentation; Arsenic Exposure;
D O I
10.1186/1476-069X-5-31
中图分类号
学科分类号
摘要
Arsenic toxicity is a global health problem affecting many millions of people. The main source of exposure is drinking water contaminated by natural geological sources. Current risk assessment is based on the recognized carcinogenicity of arsenic, but neurotoxic risks have been overlooked. In 1955, an outbreak of arsenic poisoning occurred among Japanese infants, with more than 100 deaths. The source was contaminated milk powder produced by the Morinaga company. Detailed accounts of the Morinaga dried milk poisoning were published in Japanese only, and an overview of this poisoning incident and its long-term consequences is therefore presented. From analyses available, the arsenic concentration in milk made from the Morinaga milk powder is calculated to be about 4-7 mg/L, corresponding to daily doses slightly above 500 μg/kg body weight. Lower exposures would result from using diluted milk. Clinical poisoning cases occurred after a few weeks of exposure, with a total dose of about 60 mg. This experience provides clear-cut evidence for hazard assessment of the developmental neurotoxicity. At the present time, more than 600 surviving victims, now in their 50s, have been reported to suffer from severe sequelae, such as mental retardation, neurological diseases, and other disabilities. Along with more recent epidemiological studies of children with environmental arsenic exposures, the data amply demonstrate the need to consider neurotoxicity as a key concern in risk assessment of inorganic arsenic exposure. © 2006 Dakeishi et al; licensee BioMed Central Ltd.
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共 26 条
[1]  
Matschullat J., Arsenic in the geosphere - A review, Sci Total Environ, 249, pp. 297-312, (2000)
[2]  
Arsenic in Drinking Water, (1999)
[3]  
Arsenic and Arsenic Compounds, Second Edition (EHC 224), (2001)
[4]  
Blom S., Lagerkvist B., Linderholm H., Arsenic exposure to smelter workers. Clinical and neurophysiological studies, Scand J Work Environ Health, 11, pp. 265-269, (1985)
[5]  
Gerr F., Letz R., Ryan P.B., Green R.C., Neurological effects of environmental exposure to arsenic in dust and soil among humans, Neurotoxicology, 21, pp. 475-487, (2000)
[6]  
Hafeman D.M., Ahsan H., Louis E.D., Siddique A.B., Slavkovich V., Cheng Z., Van Geen A., Graziano J.H., Association between arsenic exposure and a measure of subclinical sensory neuropathy in Bangladesh, J Occup Environ Med, 47, pp. 778-784, (2005)
[7]  
Report of Arsenic Poisoning Incident Due to Powdered Milk in Okayama Prefecture (in Japanese), (1957)
[8]  
Andersen H.R., Nielsen J.B., Grandjean P., Toxicologic evidence of developmental neurotoxicity of environmental chemicals, Toxicology, 144, pp. 121-127, (2000)
[9]  
Rice D., Barone Jr. S., Critical periods of vulnerability for the developing nervous system: Evidence from humans and animal models, Environ Health Perspect, 108, SUPPL. 3, pp. 511-533, (2000)
[10]  
Grandjean P., Landrigan P.J., Developmental neurotoxicity of industrial chemicals: A silent pandemic, Lancet, (2006)