Children's Environmental Health: Intergenerational Equity in Action—A Civil Society Perspective
Mariann Lloyd-Smith
International POPs Elimination Network, Ballina, Australia
National Toxics Network Inc., Ballina, Australia
Search for more papers by this authorBro Sheffield-Brotherton
National Toxics Network Inc., Ballina, Australia
Sustainable Solutions Pty Ltd, Elsternwick, Australia
Search for more papers by this authorMariann Lloyd-Smith
International POPs Elimination Network, Ballina, Australia
National Toxics Network Inc., Ballina, Australia
Search for more papers by this authorBro Sheffield-Brotherton
National Toxics Network Inc., Ballina, Australia
Sustainable Solutions Pty Ltd, Elsternwick, Australia
Search for more papers by this authorAbstract
Since World War II, approximately 80,000 new commercial synthetic chemicals have been released into the environment, with approximately 1500 new chemicals released annually. Most of these have not been adequately tested for their impacts on human health or their particular impacts on children and the developing fetus. Yet, children are exposed to hazardous chemicals through residues in their food, indoor and outdoor air pollution, and through household products and contaminated house dust. Many of these synthetic chemicals are persistent and bio-accumulative, remaining in the human body long after exposure. Developing fetuses acquire toxic chemicals that have bioaccumulated in the mother's body and readily cross the placental barrier. Babies are now born with many man-made chemicals in their small bodies. Newborns take in more through breast milk or formula. There are no tests to assess the combined impacts of the “chemical soup” to which children are exposed. WHO, UNICEF, and UNEP have reported a growing number of children's health impacts caused by exposure to hazardous chemicals, including asthma, birth defects, hypospadias, behavioral disorders, learning disabilities, autism, cancer, dysfunctional immune systems, neurological impairments, and reproductive disorders. WHO states that approximately 3 million children under the age of five die every year due to environmental hazards, and this is not limited to developing countries. All children, both in the developing and developed world are affected by exposure to hazardous chemicals. In 2004, the European Union's Ministerial Conference on Children's Environmental Health identified air pollution, unsafe water conditions, and lead exposure as the main culprits in the death and disabling of children in Europe. The conference found that by reducing exposure to hazardous chemicals, the lives of many children could be saved. The key issues in children's environmental health and potential policy and management remedies are examined from both national (Australian) and international perspectives.
References
- 1 U.S. National Academy of Sciences. 2004. Putting Research to the Test: Improvements Needed in Clinical Studies Involving Children. National Academies InFocus, Vol. 4 No. 2. Available at http://infocusmagazine.org/4.2/soc_children.html.
- 2 WHO, ILO & UNEP. 2006. Helping to Protect Children from the Harmful Effects of Chemicals. International Program on Chemical Safety. Available at http://www.who.int/ipcs/en/.
- 3 UNEP, UNICEF & WHO. 2002. Children in the New Millennium: Environmental Impact on Health. Available at http://www.unep.org, http://www.unicef.org and http://www.who.int.
- 4 IFCS Children and Chemical Safety Working Group. 2005. Chemical Safety and Children's Health: Protecting the World's Children from Harmful Chemical Exposures—A Global Guide to Resources, October.
- 5 Furlong, C.E. et al . 2006. PON1 status of farmworker mothers and children as a predictor of organophosphate sensitivity. Pharmacogenet. Genomics 16: 183–190.
- 6 Landrigan, P.J. et al . 1998. Children's health and the environment: a new agenda for prevention research. Environ. Health Perspect. 106(Suppl. 3): 787–794.
- 7
Olin, S.R. &
B.R. Sonawane. 2003. Workshop to develop a framework for assessing risks to children from exposure to environmental agents, September 2003.
Environ. Health Perspect.
111/12: 1524–1526.
10.1289/ehp.6183 Google Scholar
- 8 Pluim, H.J. et al . 1994. Clinical laboratory manifestations of exposure to background levels of dioxins in the perinatal period. Acta Paediatr. 83: 583–587.
- 9 Ilsen A. et al . 1996. Signs of enhanced neuromotor maturation in children due to perinatal load with background levels of dioxins. Chemosphere 33: 1317–1326.
- 10 Weisglas-Kuperus, N. et al . 1995. Immunologic effects of background prenatal and postnatal exposure to dioxins and polychlorinated biphenyls in Dutch infants. Pediatr. Res. 38: 404–410.
- 11 Needleman, H.L. et al . 1989. The long-term effects of exposure to low doses of lead in childhood—An 11-year follow-up report. N. Engl. J. Med. 322.
- 12 Needleman, H.L. et al . 1996. Bone lead levels and delinquent behavior. JAMA 275.
- 13 Canfield, R.L. et al . 2003. Intellectual impairment in children with blood lead concentrations below 5 micrograms per deciliter. N. Engl. J. Med. 348: 1527–1536.
- 14 Campbell, J.R., R.N. Rosier, L. Novotny & J.E. Puzas. 2004. The association between environmental lead exposure and bone density in children. Environ. Health Perspect. 112.
- 15 Opler, M.G.A. et al . 2004. Prenatal lead exposure, delta-aminolevulinic acid, and schizophrenia. Environ. Health Perspect. 112: 548–552.
- 16 Centers for Disease Control and Prevention. 1997. Hypospadias Trends in Two US Survelliance Systems. Press Release, November 6.
- 17 Barton, H.A. et al . 2005. Assessing susceptibility from early-life exposure to carcinogens. Environ. Health Perspect. 13: 1125–1133.
- 18 Euractiv. 2006. Press Release, EU Research to Look into Chemical Exposure of Babies. Press Release February 24. 2006. Available at http://www.euractiv.com/Article?tcmuri=tcm:29-152907-16&type=New.
- 19 Environmental Working Group, Body Burden. 2005. The Pollution in Newborns; A Benchmark Investigation of Industrial Chemicals, Pollutants and Pesticides in Umbilical Cord Blood. July 14. Available at http://www.ewg.org/reports/bodyburden2/execsumm.php.
- 20 Greenpeace Nederland, Greenpeace International & WWF-UK. 2005. A Present for Life; Hazardous Chemicals in Umbilical Cord Blood. Available at http://www.panda.org/about_wwf/what_we_do/toxics/publications/index.cf.
- 21 Department of Health and Human Services, Centers for Disease Control and Prevention. 2003. Second National Report on Human Exposure to Environmental Chemicals.
- 22 Deuble, L. et al . 2000. Environmental pollutants in meconium in Townsville. Australia . Unpublished.
- 23 Budd, L.E. 1993. Children's Health & Chemicals, One Paediatrician's Experience. Unpublished Lecture Notes.
- 24 National Health and Medical Research Council & Therapeutic Goods Administration. 2002. Dioxins: Recommendation for a Tolerable Monthly Intake for Australians.
- 25 UNEP Chemicals. 2002. Fire Retardant, Polybrominated diphenyl ethers (PBDEs): Regional Reports of the Regionally-Based Assessment of Persistent Toxic Substances Program. Available from http://www.chem.unep.ch/pts.
- 26 Stapleton, H. et al . 2004. Debromination of the flame retardant decabromodiphenyl ether by juvenile carp (Cyprinus carpio) following dietary exposure. Environ. Sci. Technol. 38: 112–119.
- 27 Choi, J.W. et al . 2003. Polybrominated dibenzo-p-dioxins, dibenzofurans, diphenyl ethers in Japanese human adipose tissue. Environ. Sci. Technol. 37: 817–821.
- 28 Guvenius, D.M. et al . 2003. Human prenatal and postnatal exposure to polybrominated diphenyl ethers, polychlorinated biphenyls, polychlorobiphenylols and pentachlorophenol. Environ. Health Perspect. 111: 1235–1241.
- 29 Hardell, L. et al . 1998. Concentrations of the flame retardant 2,2′4,4-tetrabrominated diphenyl ether in human adipose tissue in Swedish persons and the risk for non-Hodgkin's lymphoma. Oncol. Res. 10: 429–432.
- 30 Mazdai, A. et al . 2003. Polybrominated diphenyl ethers in maternal and fetal blood samples. Environ. Health Perspect. 111: 1249-1252.
- 31 She, J. et al . 2002. PBDEs in San Francisco Bay area: measurements in harbor seals blubber and human breast adipose tissue. Chemosphere 46: 697–707.
- 32 Harden, F., L. Toms, J. J. Ryan & J. Müller. Determination of the Levels of Polybrominated Diphenylethers (PBDEs) in Pooled Blood Sera Obtained from Australians Aged 31–45 Years. National Research Centre for Environmental Toxicology, University of Queensland . Brisbane , Australia .
- 33 Harden, F., J. Muller & L. Toms. 2005. Organochlorine Pesticides (OCPs) and Polybrominated Diphenyl Ethers (PBDEs) in the Australian Population: Levels in Human Milk. Report for Environment Protection and Heritage Council. Available at http://www.ephc.gov.au/ephc/ocp_pbde_human_milk.html.
- 34 Thomsen, C., E. Lundanes & G. Becher. 2002. Brominated flame retardants in archived serum samples from Norway: a study on temporal trends and the role of age. Environ. Sci. Technol. 6: 1414–1418.
- 35 Stapleton, H.M., M. Schantz & S. Wise. 2004. Polybrominated Diphenyl Ether Measurements in Household Dust. Presentation to the Third International Workshop on BFRs, Univ. of Toronto, Canada, June 6–9.
- 36 McPherson, A., B. Thorpe & A. Blake. 2004. Brominated Flame Retardants in Dust on Computers; The Case For Safer Chemicals and Better Computer Design. Available at http://www.computertakeback.org.
- 37 USEPA, Office of Pollution Prevention and Toxics Risk Assessment Division. 2002. Revised Draft Hazard Assessment of Perfluorooctanoic Acid and its Salts. November 4.
- 38 Kärrman, A. et al . 2005. Perfluorinated compounds in serum from Australian urban and rural regions. EMG—Fluorinated Compounds, pp. 780–783.
- 39 USEPA, Office of Pollution Prevention and Toxics Risk Assessment Division. 2003. Preliminary Risk Assessment of the Developmental Toxicity Associated with Exposure to Perfluorooctanoic Acid and its Salts. April 10.
- 40 Spitzer, E. 1999. Comments of New York State Attorney in re: United States Environmental Protection Agency's Preliminary Risk Assessment for Chlorpyrifos Reregistration Eligibility Decision. Docket Control Number 0PP-34203. December 27, amended January 3, 2000.
- 41 Tarplee, B., Executive Secretary, Food Quality Protection Act Safety Factor Committee Health Effects Division. 2000. Memorandum, Subject: Chlorpyrifos—Re-evaluation Report of the FQPA Safety Factor, HED DOC. NO. 014077. April 4.
- 42 Deuble, L. et al . 1999. Environmental pollutants in meconium in Townsville. Unpublished.
- 43 Lovekamp, T.N. & B. J. Davis. 2001. Mono-(2-ethylhexyl) phthalate suppresses aromatase transcript levels and estradiol in cultured rat granulose cells. Toxicol. Appl. Pharmacol. 172: 217–224.
- 44 Nencioni, A., S. Wesselborg & P. Brossart. 2003. Role of peroxisome proliferators-activiated receptor gamma & its ligands in the control of immune responses. Crit. Rev. Immunol. 23: 1–13.
- 45 Sharpe, R.M. & D.S. Irvine. 2004. How strong is the evidence of a link between environmental chemical and adverse effects on human reproductive health? Br. Med. J. 328: 447–451.
- 46 NICNAS. 2006. Applicants for PEC Assessment of Phthalates. Available at http://www.nicnas.gov.au/Industry/Existing_Chemicals/PEC_Declarations/Phthalates_List_of_Applicants_PDF.pdf.
- 47 Greenpeace Nederland, Greenpeace International & WWF-UK. 2005. A Present for Life: Hazardous Chemicals in Umbilical Cord Blood. Available at http://www.panda.org/about_wwf/what_we_do/toxics/publications/index.cfm.
- 48 Rule, K.L., V.R. Ebbett & P.J. Vikesland. 2005. Formation of chloroform and chlorinated organics by free-chlorine-mediated oxidation of triclosan. Environ. Sci. Technol. 39: 3176–3185.
- 49 NICNAS. 2003. Declaration of Triclosan as a Priority Existing Chemical. Available at http://www.nicnas.gov.au/Publications/Chemical_Gazette/pdf/2003may_whole.pdf#page=43.
- 50 NICNAS. 2006. Update on the Assessment of Priority Existing Chemical Triclosan. Available at http://www.nicnas.gov.au/Industry/Existing_Chemicals/PEC_Declarations/updatetriclosan072006.pdf.
- 51 European Environment Agency & WHO Regional Office for Europe. 2002. Children's Health and Environment. A Review of Evidence. Environmental Issue Report No. 29.
- 52 World Bank. 2002. Toxics and Poverty: The Impact of Toxic Substances on the Poor in Developing Countries.
- 53 Intergovernmental Forum on Chemical Safety. 2003. Forum IV Final Report (IFCS/FORUM-IV/16w) Executive Summary: Children and Chemical Safety.