Hostname: page-component-76fb5796d-vvkck Total loading time: 0 Render date: 2024-04-26T14:38:33.790Z Has data issue: false hasContentIssue false

Osteosarcoma of the sternum after radiotherapy for breast cancer in a patient with suspected hereditary cancer syndrome: a case report

Published online by Cambridge University Press:  15 May 2020

Gaurav Trivedi*
Affiliation:
Department of Radiation Oncology, Command Hospital Central Command, Lucknow, UP226002, India
Sankalp Singh
Affiliation:
Department of Radiation Oncology, Command Hospital Central Command, Lucknow, UP226002, India
Nishant Lohia
Affiliation:
Department of Radiation Oncology, Command Hospital Central Command, Lucknow, UP226002, India
S. Viswanath
Affiliation:
Department of Medical Oncology, Command Hospital Central Command, Lucknow, UP226002, India
Manoj Prashar
Affiliation:
Department of Medical Oncology, Command Hospital Central Command, Lucknow, UP226002, India
Harish S
Affiliation:
Department of Surgical Oncology, Command Hospital Central Command, Lucknow, UP226002, India
*
Author for correspondence: Gaurav Trivedi, Department of Radiation Oncology, Command Hospital Central Command, Lucknow, UP226002, India. E-mail: gauravtrivedi23@ymail.com

Abstract

Introduction:

Radiation-induced malignancies are a rare phenomenon. Post-radiation sarcoma accounts for 0·5–5·5% of all sarcomas. Adjuvant radiotherapy (RT) after surgery plays a significant role in the treatment of breast cancer. Sarcomas of the breast, chest wall, sternum, axilla or supraclavicular region have been reported as a rare complication of RT for breast cancer. Osteosarcoma (OS) of the sternal bone is a rarely reported entity. OS of the sternum secondary to therapeutic ionising radiation is an even rarer diagnosis, and no such cases have been reported in India as per our literature search. Here we report such a case of post-radiation sarcoma after breast cancer treatment—OS presenting in the sternum and both the second ribs in a young lady.

Findings:

Our patient developed a sarcoma within a previously irradiated field. The latent period was 7·5 years. She initially suffered from a breast carcinoma for which she underwent radical surgery in the form of modified radical mastectomy. She also received 50 Gy RT dose to the chest wall and axilla. She subsequently developed an OS of chest wall in the high-dose region of RT. Another key factor is the high possibility of familial/hereditary cancer inheritance syndrome like Li-Fraumeni in our patient. Though she was never tested for p53 mutations, her young age at first diagnosis (26 years), extremely strong positive family history and spectra of cancers affecting her first-degree blood relatives (brain tumours, leukaemia) strongly hint at the possibility of such a cancer syndrome. Retrospectively, the question certainly arises, given her young age and family history, whether this patient was a right candidate for RT even once as compared to the fact that she received radiation twice.

Type
Case Study
Copyright
© The Author(s), 2020. Published by Cambridge University Press

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Cahan, W G. Sarcoma arising in irradiated bone: report of eleven cases. Cancer 1948; 1: 329.3.0.CO;2-7>CrossRefGoogle Scholar
Murray, E M, Werner, D, Greeff, E A, Taylor, D A. Postradiation sarcomas: 20 cases and a literature review. Int J Radiat Oncol Biol Phys 1999; 45(4): 951961.CrossRefGoogle ScholarPubMed
Sheppard, D G, Libshitz, H I. Post-radiation sarcomas: a review of the clinical and imaging features in 63 cases. Clin Radiol 2001; 56(1): 2229.CrossRefGoogle ScholarPubMed
Veronesi, U et al. Twenty-year follow-up of a randomized study comparing breast-conserving surgery with radical mastectomy for early breast cancer. N Engl J Med 2002; 347(16): 12271232.CrossRefGoogle ScholarPubMed
Seinen, J M, et al. Radiation-associated angiosarcoma after breast cancer: high recurrence rate and poor survival despite surgical treatment with R0 resection. Ann Surg Oncol 2012; 19(8): 27002706.CrossRefGoogle ScholarPubMed
Kirova, Y M, Vilcoq, J R, Asselain, B, Sastre-Garau, X, Fourquet, A. Radiationinduced sarcomas after radiotherapy for breast carcinoma: a largescale singleinstitution review. Cancer 2005104(4): 856863.CrossRefGoogle ScholarPubMed
Erel, E, Vlachou, E, Athanasiadou, M, Hassan, S, Chandrasekar, C R, Peart, F. Management of radiation-induced sarcomas in a tertiary referral centre: a review of 25 cases. Breast 2010; 19(5): 424427.CrossRefGoogle Scholar
Downey, R J, Hums, A G, Martini, N. Primary and secondary malignancies of the sternum. Semin Thorac Cardiovasc Surg 1999; 11(3): 293296. Elsevier.CrossRefGoogle ScholarPubMed
Acharya, S, et al. Thyroid neoplasms after therapeutic radiation for malignancies during childhood or adolescence. Cancer Interdisciplinary Int J Am Cancer Soc 2003; 97(10): 23972403.Google ScholarPubMed
Huang, J, Walker, R, Groome, P G, Shelley, W, Mackillop, W J. Risk of thyroid carcinoma in a female population after radiotherapy for breast carcinoma. Cancer 2001; 92(6): 14111418.3.0.CO;2-9>CrossRefGoogle Scholar
Kirova, Y M, Gambotti, L, De Rycke, Y, Vilcoq, J R, Asselain, B, Fourquet, A. Risk of second malignancies after adjuvant radiotherapy for breast cancer: a large-scale, single-institution review. Int J Radiat Oncol Biol Phys 2007; 68(2): 359363.CrossRefGoogle ScholarPubMed
Rubino, C et al. Radiation dose and risk of soft tissue and bone sarcoma after breast cancer treatment. Breast Cancer Res Treat 2005; 89(3): 277288.CrossRefGoogle ScholarPubMed
Krueger, E A, Fraass, B A, McShan, D L, Marsh, R, Pierce, L J. Potential gains for irradiation of chest wall and regional nodes with intensity modulated radiotherapy. Int J Radiat Oncol Biol Phys 2003; 56(4): 10231037.CrossRefGoogle ScholarPubMed
Tabone, M D et al. Outcome of radiation-related osteosarcoma after treatment of childhood and adolescent cancer: a study of 23 cases. J Clin Oncol 1999; 17(9): 27892795.CrossRefGoogle ScholarPubMed
Jung, YS et al. Nation-wide Korean breast cancer data from 2008 using the breast cancer registration program. J Breast Cancer 2011; 14(3): 229236.CrossRefGoogle ScholarPubMed
Sheth, G R, Cranmer, L D, Smith, B D, Grasso-LeBeau, L, Lang, J E. Radiation-induced sarcoma of the breast: a systematic review. Oncologist 2012; 17(3): 405.CrossRefGoogle ScholarPubMed
Heymann, S, et al. Radio-induced malignancies after breast cancer postoperative radiotherapy in patients with Li-Fraumeni syndrome. Radiat Oncol 2010; 5(1): 104.CrossRefGoogle ScholarPubMed
Fei, P, El-Deiry, W S. P53 and radiation responses. Oncogene 2003; 22: 57745783.CrossRefGoogle ScholarPubMed