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Published in: Cancer Causes & Control 2/2009

01-03-2009 | Original Paper

Infectious exposure in the first year of life and risk of central nervous system tumors in children: analysis of day care, social contact, and overcrowding

Authors: N. J. Harding, J. M. Birch, S. J. Hepworth, P. A. McKinney

Published in: Cancer Causes & Control | Issue 2/2009

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Abstract

Little is known regarding the aetiology of central nervous system tumors in children. Recent studies have speculated on a potential infectious aetiology, but no clear associations have been found. This article uses parent reported questionnaire data from the UK Childhood Cancer Study (UKCCS), a population-based case–control study, to examine the relationship between the infectious exposure in the first year of life and the likelihood of developing a CNS tumor. The variables representing infectious exposure were social contact (including social contact with other infants and attendance at informal and formal day care), sharing a bedroom with another child, birth order, and exposure to a school-age child within the home. Children reported to have had no social contact with other infants in the first year of life displayed an increased risk of developing a CNS tumor when compared to those who had (OR 1.37, 95% CI 1.08–1.75). This effect was most prominent in the primitive neuroectodermal tumor/medulloblastoma subgroup (OR 1.78, 95% CI 1.12–2.83). Those who had attended informal (OR 0.86, 95% CI 0.68–1.09) or formal day care (OR 0.93, 95% CI 0.68–1.26) showed slightly non-statistically significant reduced risks when compared to those reporting social contact only. No association with any of the other variables was observed. Overall, the inconsistent findings by variable and tumor subtype suggest that an early exposure to infections is not strongly implicated in the aetiology of CNS tumors. However, the effect for social contact outside the home, particularly for PNET/medulloblastomas warrants further investigation.
Literature
1.
go back to reference Linet MS, Wacholder S, Zahm SH (2003) Interpreting epidemiologic research: lessons from studies of childhood cancer. Pediatrics 112(1 Pt 2):218–232PubMed Linet MS, Wacholder S, Zahm SH (2003) Interpreting epidemiologic research: lessons from studies of childhood cancer. Pediatrics 112(1 Pt 2):218–232PubMed
3.
go back to reference Buckley JD et al (1996) Concordance for childhood cancer in twins. Med Pediatr Oncol 26(4):223–229. doi:10.1002/(SICI)1096-911X(199604)26:4<223::AID-MPO1>3.0.CO;2-LPubMedCrossRef Buckley JD et al (1996) Concordance for childhood cancer in twins. Med Pediatr Oncol 26(4):223–229. doi:10.1002/(SICI)1096-911X(199604)26:4<223::AID-MPO1>3.0.CO;2-LPubMedCrossRef
5.
go back to reference Little J (1999) Epidemiology of childhood cancer, International Agency for Research on Cancer, IARC Scientific Publications No. 149. IARC Scientific Publications, Lyon Little J (1999) Epidemiology of childhood cancer, International Agency for Research on Cancer, IARC Scientific Publications No. 149. IARC Scientific Publications, Lyon
15.
go back to reference McDade TW et al (2001) Prenatal undernutrition, postnatal environments, and antibody response to vaccination in adolescence. Am J Clin Nutr 74(4):543–548PubMed McDade TW et al (2001) Prenatal undernutrition, postnatal environments, and antibody response to vaccination in adolescence. Am J Clin Nutr 74(4):543–548PubMed
22.
go back to reference Wald ER, Guerra N, Byers C (1991) Frequency and severity of infections in day care: three-year follow-up. J Pediatr 118(4 Pt 1):509–514PubMed Wald ER, Guerra N, Byers C (1991) Frequency and severity of infections in day care: three-year follow-up. J Pediatr 118(4 Pt 1):509–514PubMed
23.
go back to reference Louhiala PJ et al (1995) Form of day care and respiratory infections among Finnish children. Am J Public Health 85(8 Pt 1):1109–1112PubMedCrossRef Louhiala PJ et al (1995) Form of day care and respiratory infections among Finnish children. Am J Public Health 85(8 Pt 1):1109–1112PubMedCrossRef
24.
go back to reference Holmes SJ, Morrow AL, Pickering LK (1996) Child-care practices: effects of social change on the epidemiology of infectious diseases and antibiotic resistance. Epidemiol Rev 18(1):10–28PubMed Holmes SJ, Morrow AL, Pickering LK (1996) Child-care practices: effects of social change on the epidemiology of infectious diseases and antibiotic resistance. Epidemiol Rev 18(1):10–28PubMed
29.
go back to reference Chang ET et al (2004) Childhood social environment and Hodgkin’s lymphoma: new findings from a population-based case–control study. Cancer Epidemiol Biomarkers Prev 13(8):1361–1370PubMed Chang ET et al (2004) Childhood social environment and Hodgkin’s lymphoma: new findings from a population-based case–control study. Cancer Epidemiol Biomarkers Prev 13(8):1361–1370PubMed
32.
go back to reference UK Childhood Cancer Study Investigators (2000) The United Kingdom Childhood Cancer Study: objectives, materials and method. UK Childhood Cancer Study Investigators. Br J Cancer 82(5):1073–1102. doi:10.1054/bjoc.1999.1045 CrossRef UK Childhood Cancer Study Investigators (2000) The United Kingdom Childhood Cancer Study: objectives, materials and method. UK Childhood Cancer Study Investigators. Br J Cancer 82(5):1073–1102. doi:10.​1054/​bjoc.​1999.​1045 CrossRef
33.
go back to reference Arvin AM, Koropchak CM, Wittek AE (1983) Immunologic evidence of reinfection with varicella-zoster virus. J Infect Dis 148(2):200–205PubMed Arvin AM, Koropchak CM, Wittek AE (1983) Immunologic evidence of reinfection with varicella-zoster virus. J Infect Dis 148(2):200–205PubMed
35.
go back to reference Fritz A (2000) International classification of diseases for oncology, vol vii, 3rd edn. World Health Organization, Geneva 240 pp Fritz A (2000) International classification of diseases for oncology, vol vii, 3rd edn. World Health Organization, Geneva 240 pp
36.
go back to reference Townsend PPP, Beattie A (1988) Health and deprivation: inequality and the North. Croom Helm, London Townsend PPP, Beattie A (1988) Health and deprivation: inequality and the North. Croom Helm, London
38.
go back to reference McNally RJ et al (2001) Temporal increases in the incidence of childhood solid tumors seen in Northwest England (1954–1998) are likely to be real. Cancer 92(7):1967–1976. doi:10.1002/1097-0142(20011001)92:7<1967::AID-CNCR1716>3.0.CO;2-#PubMedCrossRef McNally RJ et al (2001) Temporal increases in the incidence of childhood solid tumors seen in Northwest England (1954–1998) are likely to be real. Cancer 92(7):1967–1976. doi:10.1002/1097-0142(20011001)92:7<1967::AID-CNCR1716>3.0.CO;2-#PubMedCrossRef
39.
go back to reference Kleihues P, Cavenee WK, International Agency for Research on Cancer (2000) Pathology and genetics of tumours of the nervous system. IARC Press, Lyon 314 pp Kleihues P, Cavenee WK, International Agency for Research on Cancer (2000) Pathology and genetics of tumours of the nervous system. IARC Press, Lyon 314 pp
45.
go back to reference Greaves MF, Alexander FE (1993) An infectious etiology for common acute lymphoblastic leukemia in childhood? Leukemia 7(3):349–360PubMed Greaves MF, Alexander FE (1993) An infectious etiology for common acute lymphoblastic leukemia in childhood? Leukemia 7(3):349–360PubMed
46.
go back to reference Office for National Statistics (2003) Day care places for children. In: Summerfield C, Babb P (eds) Social trends, vol 33. HMSO, London Office for National Statistics (2003) Day care places for children. In: Summerfield C, Babb P (eds) Social trends, vol 33. HMSO, London
47.
go back to reference Heuch JM et al (1998) Risk of primary childhood brain tumors related to birth characteristics: a Norwegian prospective study. Int J Cancer 77(4):498–503. doi:10.1002/(SICI)1097-0215(19980812)77:4<498::AID-IJC4>3.0.CO;2-PPubMedCrossRef Heuch JM et al (1998) Risk of primary childhood brain tumors related to birth characteristics: a Norwegian prospective study. Int J Cancer 77(4):498–503. doi:10.1002/(SICI)1097-0215(19980812)77:4<498::AID-IJC4>3.0.CO;2-PPubMedCrossRef
Metadata
Title
Infectious exposure in the first year of life and risk of central nervous system tumors in children: analysis of day care, social contact, and overcrowding
Authors
N. J. Harding
J. M. Birch
S. J. Hepworth
P. A. McKinney
Publication date
01-03-2009
Publisher
Springer Netherlands
Published in
Cancer Causes & Control / Issue 2/2009
Print ISSN: 0957-5243
Electronic ISSN: 1573-7225
DOI
https://doi.org/10.1007/s10552-008-9224-8

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