Changes in Pulmonary Function and Development of Clinical Radiation Pneumonitis in Breast Cancer Patients following Post Mastectomy Radiation Therapy
- Authors
-
-
Sindhu Nagaraj
Department of Radiation Oncology and Radiotherapy, Stadtisches Klinikum Karlsruche, Moltkestra 90, Karlsruche, Germany -
Rajesh Javarappa
Department of Radiation Oncology, Victoria Hospital, Bangalore Medical College and Research Instituite, Bengaluru 560002, India -
V. Chendil
Department of Radiation Oncology, Victoria Hospital, Bangalore Medical College and Research Instituite, Bengaluru 560002, India -
B.R. Kiran Kumar
Department of Radiation Oncology, Victoria Hospital, Bangalore Medical College and Research Instituite, Bengaluru 560002, India -
Iqbal Ahmed
Department of Radiation Oncology, Victoria Hospital, Bangalore Medical College and Research Instituite, Bengaluru 560002, India -
Amrut S. Kadam
Department of Radiation Oncology, Victoria Hospital, Bangalore Medical College and Research Instituite, Bengaluru 560002, India
-
- Keywords:
- Breast cancer, Adjuvant radiotherapy, Radiation pneumonitis, Spirometry, CLD.
- Abstract
-
Background: Lung is the main organ at risk for radiation induced injury while treating breast cancers with Post Mastectomy Radiotherapy (PMRT). Restrictive lung changes are usually seen in spirometry which tends to normalize by 1 year. Central Lung Distance (CLD) is shown to correlate well with the percentage of ipsilateral lung volume irradiated.
Aims and Objectives: Spirometric changes following Radiation Therapy (RT) to chest wall in breast cancer patients using conventional fractionation and its correlation with acute radiation pneumonitis.
Materials and Methodology: Thirty Breast cancer patients who received RT to chest wall +/- supraclavicular fossa and axilla, following Modified Radical Mastectomy (MRM) and neoadjuvant or adjuvant chemotherapy using tangential beams with Co60 teletherapy to a dose of 50 Gray in conventional fractionation were included and followed up till 6 months post RT. Baseline chest X-ray and spirometry done pre-RT were compared with those taken at 1, 3 and 6 months after completion of RT. Patients were evaluated at each visit for signs and symptoms of radiation pneumonitis, when present were graded as per Radiation Therapy Oncology Group (RTOG) criteria.
Results: There was a significant fall in Forced Vital Capacity (FVC) by the end of 3 months (p value <0.01) which improved by 6 months without any active intervention in 95% of the patients. Mean baseline FVC was 83% which decreased to 70% by the end of 3 months and 79% at 6 months. Forced Expiratory Volume in first second (FEV1) and FEV1/FVC did not show any significant change compared to baseline. Spirometric changes correlated with reversible restrictive lung changes. One out of 30 patients developed symptomatic acute radiation pneumonitis (5%) of grade 3 severity who had moderate restrictive lung disease.
Conclusion: Significant decrease in FVC of the lungs is present following PMRT in carcinoma of breast patients in the initial 3 months which tends to normalize by 6 months. 5% of the patients develop symptomatic acute lung toxicity which can be further reduced by minimizing the irradiated lung volume.
- References
-
American Cancer Society: Cancer Facts and Figures 2020. Atlanta, Ga: American Cancer Society, 2020.
Ragaz J, Olivotto I, Wilson K, Spinelli J, Durand R. Locoregional Radiation Therapy in Patients With High-Risk Breast Cancer Receiving Adjuvant Chemotherapy: 20-Year Results of the British Columbia Randomized Trial. JNCI Journal of the National Cancer Institute 2005; 97(15): 1163-1164. https://doi.org/10.1093/jnci/dji217
Truong P. Clinical practice guidelines for the care and treatment of breast cancer: Locoregional post- mastectomy radiotherapy. Canadian Medical Association Journal 2004; 170(8): 1263-1273. https://doi.org/10.1503/cmaj.1031000
Ghafoori P, Marks L, Vujaskovic Z, Kelsey C. Radiation-Induced Lung Injury: Assessment, Management, and Prevention. Review article- Physicians Practice 2008.
Movsas B, Raffin TA, Epstein AH, et al. Pulmonary radiation injury. Chest 1997; 111: 1061-1076. https://doi.org/10.1378/chest.111.4.1061
Fleckenstein K, Zgonjanin L, Chen L, et al. Temporal Onset of Hypoxia and Oxidative Stress After Pulmonary Irradiation. International Journal of Radiation Oncology Biology Physics 2007; 68(1): 196-204. https://doi.org/10.1016/j.ijrobp.2006.12.056
Lind P, Marks L, Hardenbergh P, Clough, R et al. Technical factors associated with radiation pneumonitis after local ± regional radiation therapy for breast cancer. International Journal of Radiation Oncology Biology Physics 2002; 52(1): 137-143. https://doi.org/10.1016/S0360-3016(01)01715-1
Choi Y, Munden R, Erasmus J, et al. Effects of Radiation Therapy on the Lung: Radiologic Appearances and Differential Diagnosis1. Radio Graphics 2004; 24(4): 985-997. https://doi.org/10.1148/rg.244035160
Lund MB, Myhre KL, Mdsom H. The effect on pulmonary function of tangential field technique in radiotherapy for carcinoma of the breast. B J R 1991; 64: 520-3. https://doi.org/10.1259/0007-1285-64-762-520
Price A, Jack W, Kerr G, et al. Acute radiation pneumonitis after postmastectomy irradiation: Effect of fraction size. Clinical Oncology 1990; 2(4): 224-229. https://doi.org/10.1016/S0936-6555(05)80173-6
Kimsey FC, Mendenhall NP, Ewald LM, et al. Is radiation treatment volume a predictor for acute or late effect on pulmonary function? A prospective study of patients treated with breast- conserving surgery and postoperative irradiation. Cancer 1994; 73: 2549-55. https://doi.org/10.1002/1097-0142(19940515)73:10<2549::AID-CNCR2820731016>3.0.CO;2-N
Jeba J. Radiation Pneumonitis After Conventional Radiotherapy For Breast Cancer: A Prospective Study. JCDR 2015; Vol-9(7): XC01-XC05. https://doi.org/10.7860/JCDR/2015/13969.6211
EUSOMA - GUIDELINES AND PUBLICATIONS - The curative role of radiotherapy in the treatment of operable breast cancer. [Internet]. Eusoma.org 2015 [cited 7 January 2015]. http://www.eusoma.org/Engx/Guidelines/Other/ OtherRT.aspx?cont=RT_6_3.
Budach W, Bolke E, Kammers K, et al. Adjuvant radiation therapy of regional lymph nodes in breast cancer – a meta-analysis of randomized trials-an update. Radiat Oncol 2015; 10: 258. https://doi.org/10.1186/s13014-015-0568-4
Img.medscape.com. Radiation pneumonitis [Internet] 2015 [cited 17 September 2015]. Available from: http://img. medscape.com/fullsize/migrated/455/711/smj455711.fig3.jpg.
Wennberg B, Gagliardi G, Sundbom L, et al. Early response of lung in breast cancer irradiation: radiologic density changes measured by CT and symptomatic radiation pneumonitis. Int J Radiat Oncol Biol Phys 2002; 52: 1196- 206. https://doi.org/10.1016/S0360-3016(01)02770-5
Kahán Z, Csenki M, Varga Z, et al. The Risk of Early and Late Lung Sequelae After Conformal Radiotherapy in Breast Cancer Patients. International Journal of Radiation Oncology Biology Physics 2007; 68(3): 673-681. https://doi.org/10.1016/j.ijrobp.2006.12.016
Gagliardi G, Bjöhle J, Lax I, et al. Radiation pneumonitis after breast cancer irradiation: analysis of the complication probability using the relative seriality model. International Journal of Radiation Oncology Biology Physics 2000; 46(2): 373-381. https://doi.org/10.1016/S0360-3016(99)00420-4
Chakraborty A, Sharma SC, Behera D, et al. Effect of radiation on pulmonary functions in patients with breast cancer. Indian J Chest Dis and Allied Sci 1991; 33: 195-200.
Ooi GC, Kwong DL, Ho JC, et al. Pulmonary sequelae of treatment for breast cancer: A prospective study. Int J Radiat Oncol Biol Phys 2001; 50: 411-19. https://doi.org/10.1016/S0360-3016(01)01438-9
Tokatli F, Kaya M, Kocak Z, et al. Sequential pulmonary effects of radiotherapy detected by functional and radiological end points in women with breast cancer. Clin Oncol (R Coll Radiol) 2005; 17: 39-46. https://doi.org/10.1016/j.clon.2004.07.012
Krengli M, Sacco M, Loi G, et al. Pulmonary [31] changes after radiotherapy for conservative treatment of breast cancer: a prospective study. Int J Radiat Oncol Biol Phys 2008; 70: 1460-67. https://doi.org/10.1016/j.ijrobp.2007.08.050
Lingos T, Recht A, Vicini F, et al. Radiation pneumonitis in breast cancer patients treated with conservative surgery and radiation therapy. International Journal of Radiation Oncology Biology Physics 1991; 21(2): 355-360. https://doi.org/10.1016/0360-3016(91)90782-Y
Yu T, Whitman G, Thames H, et al. Clinically Relevant Pneumonitis After Sequential Paclitaxel-Based Chemotherapy and Radiotherapy in Breast Cancer Patients. JNCI Journal of the National Cancer Institute 2004; 96(22): 1676-1681. https://doi.org/10.1093/jnci/djh315
- Downloads
- Published
- 2021-02-24
- Issue
- Vol. 9 (2020)
- Section
- Articles
How to Cite
Similar Articles
- Megha Jain, Vipin Jain, Anish Gupta, Swati Saawarn, Samar Khan, Role of Hormones in Oral Squamous Cell Carcinoma - An Update , Journal of Analytical Oncology: Vol. 6 No. 4 (2017)
- Kenji Ina, Ryuichi Furuta, Takae Kataoka, Sayaka Sugiura, Satoshi Kayukawa, Takayuki Kanamori, Takaki Kikuchi, Megumi Kabeya, Satoshi Hibi , Shu Yuasa , Adverse Effects of Bevacizumab During Treatment for Metastatic Colorectal Cancer , Journal of Analytical Oncology: Vol. 4 No. 1 (2015)
- A. Taqaddas, E-Survey: Current Status of Proton Beam Therapy in USA , Journal of Analytical Oncology: Vol. 10 (2021)
- Yaqin Yuan, Hao Qiu, Jingdong Gao, Zerong Wang, Chunliang Liu, Zhenhua Liu, Zhi Jiang, Yongjian Li, Shiliang Wu, Triptolide Inhibits MCF-7 and HepG2 Cells Invasion and Migration by Inhibiting the Synthesis of Polylactosamine Chains , Journal of Analytical Oncology: Vol. 5 No. 3 (2016)
- L. Thorslund, M. Falk, Patient Performed Reading of a Phototest - A Reliable Method? , Journal of Analytical Oncology: Vol. 1 No. 1 (2012)
- Khan Mohd. Khan, Hemant Krishna, Chandrahas V. Kulkarni, Shovan K. Majumder, Depth-Sensitive Raman Spectroscopy of Intact Formalin-Fixed and Paraffin-Embedded Tissue Blocks for Objective Diagnosis of Cancer- An Exploratory Study , Journal of Analytical Oncology: Vol. 5 No. 4 (2016)
- Maria Caffo, Lucia Merlo, Valeria Barresi, Ema Tot, Gerardo Caruso, Brain Metastases: State of the Art and Innovative Targeted Therapies , Journal of Analytical Oncology: Vol. 4 No. 3 (2015)
- F.F. Borichevsky, I.S. Lioubichtchev, A.E. Sahun, A.S. Trus, D.A. Tzerkovsky, Magnetotherapy in Experimental and Clinical Neuro-Oncology: A Review , Journal of Analytical Oncology: Vol. 12 (2023)
- Laurence A. Cole, Hyperglycosylated hCG Drives Malignancy in Most or All Human Cancers: Tying All Research Together , Journal of Analytical Oncology: Vol. 7 No. 1 (2018)
- Paola Castro-Garcia, Carmen Gil-Gas, Paloma Honrubia-Gómez, Carmen Belen Alvarez-Simón, Jesús-José Ferré-Fernández, Francisco Sánchez-Sánchez, Jose Luis Sánchez-Sánchez, Jose Mª Garcia-Bueno, Sebastiá Sabater, Guadalupe Aparicio, Luis Miguel Antón-Aparicio, Carmen Ramírez-Castillejo, C-Terminal-PEDF Reduces IC50 Doses and Chemoresistant Population of CD133 and BCRP1-Positve Cancer Stem Like Cells , Journal of Analytical Oncology: Vol. 2 No. 4 (2013)
You may also start an advanced similarity search for this article.
Most read articles by the same author(s)
- Rajesh Javarappa, Ramesh Bilimagga, V. Chendil, B.R. Kiran Kumar, Amrut S. Kadam, Acute Haematological Variations in Patients Receiving Radiotherapy and its Correlation with Volume of the Bone Marrow and Radiation Dose , Journal of Analytical Oncology: Vol. 9 (2020)
- Hashmath Khanum, Iqbal Ahmed, V. Chendil, Rajesh Javarappa, Amrut Kadam, Role of Oral Glutamine in Prevention and Treatment of Oral Mucositis in Head and Neck Cancer Patients Receiving Chemoradiation , Journal of Analytical Oncology: Vol. 8 (2019)