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British Journal of Cancer logoLink to British Journal of Cancer
. 2001 Aug;85(3):362–366. doi: 10.1054/bjoc.2001.1868

Excess breast cancer risk and the role of parity, age at first childbirth and exposure to radiation in infancy

E Holmberg 1, L-E Holm 2, M Lundell 3, A Mattsson 4, A Wallgren 5, P Karlsson 5
PMCID: PMC2364061  PMID: 11487266

Abstract

Exposure to ionizing radiation is a known risk factor for breast cancer and the fertility pattern is a recognized modifier of breast cancer risk. The aim of this study was to elucidate the interaction between these 2 factors. This study is based on a Swedish cohort of 17 202 women who had been irradiated for skin haemangiomas in infancy between 1920 and 1965. The mean age at treatment was 6 months and the median breast dose was 0.05 Gy (range 0–35.8 Gy). Follow-up information on vital status, parity, age at first childbirth and breast cancer incidence was retrieved through record linkage with national population registers for the period 1958–1995. Analyses of excess relative risk (ERR) models were performed using Poisson regression methods. In this cohort, the fertility pattern differed from that in the Swedish population, with significantly fewer childbirths overall and before 25 years of age but more childbirth after that age. There were 307 breast cancers in the cohort and the standardized incidence ratio (SIR) was 1.22 (95% CI 1.09–1.36). A linear dose–response model with stratification for fertility pattern and menopausal status resulted in the best fit of the data. ERR/Gy was 0.33 (95% CI 0.17–0.53). In absolute terms this means an excess of 2.1 and 5.4 cases per Gy per 104breast-years in the age groups 40–49 and 50–59 years respectively. The fertility pattern influenced the breast cancer risk in this irradiated population in a similar way to that observed in other studies. SIR at dose = 0 was highest, 2.31, among postmenopausal nulliparous women (95% CI 1.48–3.40, n = 62). SIR at dose = 0 was lowest in pre- or postmenopausal women with a first childbirth before 25 years of age; 0.89 (0.71–1.09) and 0.88 (0.58–1.25) respectively. Thus, in addition to the dose–effect response in the cohort, part of the breast cancer excess could be explained by a different fertility pattern. The estimates of ERR/Gy for the various categories of age at first childbirth, number of children, menopausal status and ovarian dose were very similar, contradicting any interaction effects on the scale of relative risk. © 2001 Cancer Research Campaign http://www.bjcancer.com

Keywords: excess risk, breast neoplasma, ionizing radiation, cohort studies, fertility pattern, haemangioma

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Selected References

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  1. Baral E., Larsson L. E., Mattsson B. Breast cancer following irradiation of the breast. Cancer. 1977 Dec;40(6):2905–2910. doi: 10.1002/1097-0142(197712)40:6<2905::aid-cncr2820400621>3.0.co;2-y. [DOI] [PubMed] [Google Scholar]
  2. Boice J. D., Jr, Preston D., Davis F. G., Monson R. R. Frequent chest X-ray fluoroscopy and breast cancer incidence among tuberculosis patients in Massachusetts. Radiat Res. 1991 Feb;125(2):214–222. [PubMed] [Google Scholar]
  3. Davis F. G., Boice J. D., Jr, Hrubec Z., Monson R. R. Cancer mortality in a radiation-exposed cohort of Massachusetts tuberculosis patients. Cancer Res. 1989 Nov 1;49(21):6130–6136. [PubMed] [Google Scholar]
  4. Goodman M. T., Cologne J. B., Moriwaki H., Vaeth M., Mabuchi K. Risk factors for primary breast cancer in Japan: 8-year follow-up of atomic bomb survivors. Prev Med. 1997 Jan-Feb;26(1):144–153. doi: 10.1006/pmed.1996.9979. [DOI] [PubMed] [Google Scholar]
  5. Hoffman D. A., Lonstein J. E., Morin M. M., Visscher W., Harris B. S., 3rd, Boice J. D., Jr Breast cancer in women with scoliosis exposed to multiple diagnostic x rays. J Natl Cancer Inst. 1989 Sep 6;81(17):1307–1312. doi: 10.1093/jnci/81.17.1307. [DOI] [PubMed] [Google Scholar]
  6. Howe G. R., McLaughlin J. Breast cancer mortality between 1950 and 1987 after exposure to fractionated moderate-dose-rate ionizing radiation in the Canadian fluoroscopy cohort study and a comparison with breast cancer mortality in the atomic bomb survivors study. Radiat Res. 1996 Jun;145(6):694–707. [PubMed] [Google Scholar]
  7. Hrubec Z., Boice J. D., Jr, Monson R. R., Rosenstein M. Breast cancer after multiple chest fluoroscopies: second follow-up of Massachusetts women with tuberculosis. Cancer Res. 1989 Jan 1;49(1):229–234. [PubMed] [Google Scholar]
  8. Källén B., Karlsson P., Lundell M., Wallgren A., Holm L. E. Outcome of reproduction in women irradiated for skin hemangioma in infancy. Radiat Res. 1998 Feb;149(2):202–208. [PubMed] [Google Scholar]
  9. Land C. E., Hayakawa N., Machado S. G., Yamada Y., Pike M. C., Akiba S., Tokunaga M. A case-control interview study of breast cancer among Japanese A-bomb survivors. II. Interactions with radiation dose. Cancer Causes Control. 1994 Mar;5(2):167–176. doi: 10.1007/BF01830263. [DOI] [PubMed] [Google Scholar]
  10. Lundell M. Estimates of absorbed dose in different organs in children treated with radium for skin hemangiomas. Radiat Res. 1994 Dec;140(3):327–333. [PubMed] [Google Scholar]
  11. Lundell M., Mattsson A., Karlsson P., Holmberg E., Gustafsson A., Holm L. E. Breast cancer risk after radiotherapy in infancy: a pooled analysis of two Swedish cohorts of 17,202 infants. Radiat Res. 1999 May;151(5):626–632. [PubMed] [Google Scholar]
  12. MacMahon B., Cole P., Lin T. M., Lowe C. R., Mirra A. P., Ravnihar B., Salber E. J., Valaoras V. G., Yuasa S. Age at first birth and breast cancer risk. Bull World Health Organ. 1970;43(2):209–221. [PMC free article] [PubMed] [Google Scholar]
  13. Modan B., Chetrit A., Alfandary E., Katz L. Increased risk of breast cancer after low-dose irradiation. Lancet. 1989 Mar 25;1(8639):629–631. doi: 10.1016/s0140-6736(89)92140-5. [DOI] [PubMed] [Google Scholar]
  14. Shore R. E., Hildreth N., Woodard E., Dvoretsky P., Hempelmann L., Pasternack B. Breast cancer among women given X-ray therapy for acute postpartum mastitis. J Natl Cancer Inst. 1986 Sep;77(3):689–696. doi: 10.1093/jnci/77.3.689. [DOI] [PubMed] [Google Scholar]
  15. Tokunaga M., Land C. E., Tokuoka S. Follow-up studies of breast cancer incidence among atomic bomb survivors. J Radiat Res. 1991 Mar;32 (Suppl):201–211. doi: 10.1269/jrr.32.supplement_201. [DOI] [PubMed] [Google Scholar]
  16. Tokunaga M., Land C. E., Tokuoka S., Nishimori I., Soda M., Akiba S. Incidence of female breast cancer among atomic bomb survivors, 1950-1985. Radiat Res. 1994 May;138(2):209–223. [PubMed] [Google Scholar]

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