I Palumbo1, B Palumbo2, M L Fravolini3, M Marcantonini4, E Perrucci5, M E Latini6, L Falcinelli5, I Sabalich2, C Tranfaglia2, G Schillaci7, E Mannarino8, C Aristei9. 1. Radiation Oncology Section, University of Perugia, Perugia General Hospital, Perugia, Italy. Electronic address: isabella.palumbo@unipg.it. 2. Nuclear Medicine and Health Physics Section, University of Perugia, Perugia, Italy. 3. Department of Engineering, University of Perugia, Italy. 4. Medical Physics Unit, Perugia General Hospital, Perugia, Italy. 5. Radiation Oncology Division, Perugia General Hospital, Perugia, Italy. 6. Radiology Division, Perugia General Hospital, Perugia, Italy. 7. Internal Medicine Unit, Department of Medicine, University of Perugia, Italy. 8. Internal Medicine, Angiology and Arteriosclerosis Diseases Unit, Department of Medicine, University of Perugia, Italy. 9. Radiation Oncology Section, University of Perugia, Perugia General Hospital, Perugia, Italy.
Abstract
PURPOSE: Our study evaluated brain natriuretic peptide (BNP) changes over time after adjuvant radiotherapy (RT) in women with left-sided breast cancer investigating its correlation with heart dosimetric parameters. METHODS: Forty-three patients underwent clinical cardiac examination, electrocardiogram (ECG), echocardiography and BNP measurement before RT (T0) and 1 (T1), 6 (T6) and 12 months (T12) after. After T12 cardiac assessment was performed annually in each patient. Mean values and standard deviation (SD) of BNP, left ventricular ejection fraction (LVEF), V20, V25, V30, V45 and mean dose were calculated. Normalized BNP (BNPn) was calculated as follows: BNPnT1 = BNPT1/BNPT0, BNPnT6 = BNPT6/BNPT0, BNPnT12 = BNPT12/BNPT0. Absolute BNP and BNPn values were used for data analysis. RESULTS: Median follow-up from the end of RT to the last check-up was 87 months (range 37-120 months). Minimum follow-up was 74 months except for two patients, who died at respectively 37 and 47 months after RT. In all patients LVEF did not change significantly (p = 0.22) after RT. BNP increased significantly (p < 0.001), particularly 1 and 6 months after RT. It slightly decreased after 12 months. BNP did not correlate with V20, V25, V30, V45, mean dose and MHD. All BNPn correlated significantly (p < 0.05) with V20, V25, V30, V45, mean dose and MHD. Four patients had a cardiac event; in the only subject who developed myocardial infarction, V20, V25, V30 and V45 were the highest and BNP increased from T1 and persisted high even at T12. CONCLUSION: Our results confirm that BNP could be a useful minimally invasive marker of early RT related cardiac impairment.
PURPOSE: Our study evaluated brain natriuretic peptide (BNP) changes over time after adjuvant radiotherapy (RT) in women with left-sided breast cancer investigating its correlation with heart dosimetric parameters. METHODS: Forty-three patients underwent clinical cardiac examination, electrocardiogram (ECG), echocardiography and BNP measurement before RT (T0) and 1 (T1), 6 (T6) and 12 months (T12) after. After T12 cardiac assessment was performed annually in each patient. Mean values and standard deviation (SD) of BNP, left ventricular ejection fraction (LVEF), V20, V25, V30, V45 and mean dose were calculated. Normalized BNP (BNPn) was calculated as follows: BNPnT1 = BNPT1/BNPT0, BNPnT6 = BNPT6/BNPT0, BNPnT12 = BNPT12/BNPT0. Absolute BNP and BNPn values were used for data analysis. RESULTS: Median follow-up from the end of RT to the last check-up was 87 months (range 37-120 months). Minimum follow-up was 74 months except for two patients, who died at respectively 37 and 47 months after RT. In all patients LVEF did not change significantly (p = 0.22) after RT. BNP increased significantly (p < 0.001), particularly 1 and 6 months after RT. It slightly decreased after 12 months. BNP did not correlate with V20, V25, V30, V45, mean dose and MHD. All BNPn correlated significantly (p < 0.05) with V20, V25, V30, V45, mean dose and MHD. Four patients had a cardiac event; in the only subject who developed myocardial infarction, V20, V25, V30 and V45 were the highest and BNP increased from T1 and persisted high even at T12. CONCLUSION: Our results confirm that BNP could be a useful minimally invasive marker of early RT related cardiac impairment.
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