Literature DB >> 32203696

Quality of life after breast-conserving therapy and adjuvant radiotherapy for non-low-risk ductal carcinoma in situ (BIG 3-07/TROG 07.01): 2-year results of a randomised, controlled, phase 3 trial.

Madeleine T King1, Emma K Link2, Tim J Whelan3, Ivo A Olivotto4, Ian Kunkler5, Antonia Helen Westenberg6, Guenther Gruber7, Penny Schofield8, Boon H Chua9.   

Abstract

BACKGROUND: BIG 3-07/TROG 07.01 is an international, multicentre, randomised, controlled, phase 3 trial evaluating tumour bed boost and hypofractionation in patients with non-low-risk ductal carcinoma in situ following breast-conserving surgery and whole breast radiotherapy. Here, we report the effects of diagnosis and treatment on health-related quality of life (HRQOL) at 2 years.
METHODS: The BIG 3-07/TROG 07.01 trial is ongoing at 118 hospitals in 11 countries. Women aged 18 years or older with completely excised non-low-risk ductal carcinoma in situ were randomly assigned, by use of a minimisation algorithm, to tumour bed boost or no tumour bed boost, following conventional whole breast radiotherapy or hypofractionated whole breast radiotherapy using one of three randomisation categories. Category A was a 4-arm randomisation of tumour bed boost versus no boost following conventional whole breast radiotherapy (50 Gy in 25 fractions over 5 weeks) versus hypofractionated whole breast radiotherapy (42·5 Gy in 16 fractions over 3·5 weeks). Category B was a 2-arm randomisation between tumour bed boost versus no boost following conventional whole breast radiotherapy, and category C was a 2-arm randomisation between tumour bed boost versus no boost following hypofractionated whole breast radiotherapy. Stratification factors were age at diagnosis, planned endocrine therapy, and treating centre. The primary endpoint, time to local recurrence, will be reported when participants have completed 5 years of follow-up. The HRQOL statistical analysis plan prespecified eight aspects of HRQOL, assessed by four questionnaires at baseline, end of treatment, and at 6, 12, and 24 months after radiotherapy: fatigue and physical functioning (EORTC QLQ-C30); cosmetic status, breast-specific symptoms, arm and shoulder functional status (Breast Cancer Treatment Outcome Scale); body image and sexuality (Body Image Scale); and perceived risk of invasive breast cancer (Cancer Worry Scale and a study-specific question). For each of these measures, tumour bed boost was compared with no boost, and conventional whole breast radiotherapy compared with hypofractionated whole breast radiotherapy, by use of generalised estimating equation models. Analyses were by intention to treat, with Hochberg adjustment for multiple testing. This trial is registered with ClinicalTrials.gov, NCT00470236.
FINDINGS: Between June 1, 2007, and Aug 14, 2013, 1208 women were enrolled and randomly assigned to receive no tumour bed boost (n=605) or tumour bed boost (n=603). 396 of 1208 women were assigned to category A: conventional whole breast radiotherapy with tumour bed boost (n=100) or no boost (n=98), or to hypofractionated whole breast radiotherapy with tumour bed boost (n=98) or no boost (n=100). 447 were assigned to category B: conventional whole breast radiotherapy with tumour bed boost (n=223) or no boost (n=224). 365 were assigned to category C: hypofractionated whole breast radiotherapy with tumour bed boost (n=182) or no boost (n=183). All patients were followed up at 2 years for the HRQOL analysis. 1098 (91%) of 1208 patients received their allocated treatment, and most completed their scheduled HRQOL assessments (1147 [95%] of 1208 at baseline; 988 [87%] of 1141 at 2 years). Cosmetic status was worse with tumour bed boost than with no boost across all timepoints (difference 0·10 [95% CI 0·05-0·15], global p=0·00014, Hochberg-adjusted p=0·0016); at the end of treatment, the estimated difference between tumour bed boost and no boost was 0·13 (95% CI 0·06-0·20; p=0·00021), persisting at 24 months (0·13 [0·06-0·20]; p=0·00021). Arm and shoulder function was also adversely affected by tumour bed boost across all timepoints (0·08 [95% CI 0·03-0·13], global p=0·0033, Hochberg adjusted p=0·045); the difference between tumour bed boost and no boost at the end of treatment was 0·08 (0·01 to 0·15, p=0·021), and did not persist at 24 months (0·04 [-0·03 to 0·11], p=0·29). None of the other six prespecified aspects of HRQOL differed significantly after adjustment for multiple testing. Conventional whole breast radiotherapy was associated with worse body image than hypofractionated whole breast radiotherapy at the end of treatment (difference -1·10 [95% CI -1·79 to -0·42], p=0·0016). No significant differences were reported in the other PROs between conventional whole breast radiotherapy compared with hypofractionated whole breast radiotherapy.
INTERPRETATION: Tumour bed boost was associated with persistent adverse effects on cosmetic status and arm and shoulder functional status, which might inform shared decision making while local recurrence analysis is pending. FUNDING: National Health and Medical Research Council, Susan G Komen for the Cure, Breast Cancer Now, OncoSuisse, Dutch Cancer Society.
Copyright © 2020 Elsevier Ltd. All rights reserved.

Entities:  

Year:  2020        PMID: 32203696     DOI: 10.1016/S1470-2045(20)30085-1

Source DB:  PubMed          Journal:  Lancet Oncol        ISSN: 1470-2045            Impact factor:   41.316


  11 in total

Review 1.  Hypofractionated breast irradiation: a multidisciplinary review of the Senonetwork study group.

Authors:  Bruno Meduri; Fiorenza De Rose; Carlo Cabula; Isabella Castellano; Lucia Da Ros; Massimo Maria Grassi; Sandra Orrù; Fabio Puglisi; Rubina Manuela Trimboli; Antonella Ciabattoni
Journal:  Med Oncol       Date:  2021-05-10       Impact factor: 3.064

2.  Comparing hypofractionated and conventionally fractionated whole breast irradiation for patients with ductal carcinoma in situ after breast conservation: a propensity score-matched analysis from a national multicenter cohort (COBCG-02 study).

Authors:  Icro Meattini; Marta Scorsetti; Fiorenza De Rose; Maria Carmen De Santis; Bruno Meduri; Ciro Franzese; Davide Franceschini; Pierfrancesco Franco; Nadia Pasinetti; Valentina Lancellotta; Patrizia Giacobazzi; Eliana La Rocca; Elisa D'Angelo; Laura Lozza; Lorenzo Livi
Journal:  J Cancer Res Clin Oncol       Date:  2021-01-02       Impact factor: 4.553

Review 3.  Genomically Guided Breast Radiation Therapy: A Review of the Current Data and Future Directions.

Authors:  Casey L Liveringhouse; Iman R Washington; Roberto Diaz; Rachel B Jimenez; Eleanor E Harris; Rachel Rabinovitch; Wendy A Woodward; Javier F Torres-Roca; Kamran A Ahmed
Journal:  Adv Radiat Oncol       Date:  2021-05-28

Review 4.  SPIRIT-PRO Extension explanation and elaboration: guidelines for inclusion of patient-reported outcomes in protocols of clinical trials.

Authors:  Melanie Calvert; Madeleine King; Rebecca Mercieca-Bebber; Olalekan Aiyegbusi; Derek Kyte; Anita Slade; An-Wen Chan; E Basch; Jill Bell; Antonia Bennett; Vishal Bhatnagar; Jane Blazeby; Andrew Bottomley; Julia Brown; Michael Brundage; Lisa Campbell; Joseph C Cappelleri; Heather Draper; Amylou C Dueck; Carolyn Ells; Lori Frank; Robert M Golub; Ingolf Griebsch; Kirstie Haywood; Amanda Hunn; Bellinda King-Kallimanis; Laura Martin; Sandra Mitchell; Thomas Morel; Linda Nelson; Josephine Norquist; Daniel O'Connor; Michael Palmer; Donald Patrick; Gary Price; Antoine Regnault; Ameeta Retzer; Dennis Revicki; Jane Scott; Richard Stephens; Grace Turner; Antonia Valakas; Galina Velikova; Maria von Hildebrand; Anita Walker; Lari Wenzel
Journal:  BMJ Open       Date:  2021-06-30       Impact factor: 2.692

5.  Five-Year Longitudinal Analysis of Patient-Reported Outcomes and Cosmesis in a Randomized Trial of Conventionally Fractionated Versus Hypofractionated Whole-Breast Irradiation.

Authors:  Julius K Weng; Xiudong Lei; Pamela Schlembach; Elizabeth S Bloom; Simona F Shaitelman; Isidora Y Arzu; Gregory Chronowski; Tomas Dvorak; Emily Grade; Karen Hoffman; George Perkins; Valerie K Reed; Shalin J Shah; Michael C Stauder; Eric A Strom; Welela Tereffe; Wendy A Woodward; Gabriel N Hortobagyi; Kelly K Hunt; Thomas A Buchholz; Benjamin D Smith
Journal:  Int J Radiat Oncol Biol Phys       Date:  2021-05-13       Impact factor: 8.013

6.  The Acute and Late Toxicities of MRI-Guided External Beam Partial Breast Irradiation Delivered Using a Once-Per-Day Regimen.

Authors:  Hye In Lee; Kyubo Kim; Jin Ho Kim; Ji Hyun Chang; Kyung Hwan Shin
Journal:  Front Oncol       Date:  2021-03-23       Impact factor: 6.244

7.  Comparing Hypofractionated With Conventional Fractionated Radiotherapy After Breast-Conserving Surgery for Early Breast Cancer: A Meta-Analysis of Randomized Controlled Trials.

Authors:  Lihu Gu; Wei Dai; Rongrong Fu; Hongfeng Lu; Jingyi Shen; Yetan Shi; Mengting Zhang; Ke Jiang; Feng Wu
Journal:  Front Oncol       Date:  2021-10-01       Impact factor: 6.244

8.  A graphical LASSO analysis of global quality of life, sub scales of the EORTC QLQ-C30 instrument and depression in early breast cancer.

Authors:  Paula Poikonen-Saksela; Eleni Kolokotroni; Leena Vehmanen; Johanna Mattson; Georgios Stamatakos; Riikka Huovinen; Pirkko-Liisa Kellokumpu-Lehtinen; Carl Blomqvist; Tiina Saarto
Journal:  Sci Rep       Date:  2022-02-08       Impact factor: 4.379

9.  Hypofractionation and Concomitant Boost in Ductal Carcinoma In Situ (DCIS): Analysis of a Prospective Case Series with Long-Term Follow-Up.

Authors:  Domenico Cante; Marina Paolini; Cristina Piva; Edoardo Petrucci; Lorenzo Radici; Silvia Ferrario; Guido Mondini; Silvia Bagnera; Maria Rosa La Porta; Pierfrancesco Franco
Journal:  Life (Basel)       Date:  2022-06-14

10.  Validation of a Patient-Reported Outcome Measure for Moist Desquamation among Breast Radiotherapy Patients.

Authors:  Cheryl Duzenli; Elisa K Chan; Theodora Koulis; Sheri Grahame; Joel Singer; David Morris; Josslynn Spence; Terry Lee; Levi Burns; Robert A Olson
Journal:  Curr Oncol       Date:  2022-07-07       Impact factor: 3.109

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