Clinical trials frequently include multiple end points that mature at different times. The initial report, typically based on the primary end point, may be published when key planned co-primary or secondary analyses are not yet available. Clinical Trial Updates provide an opportunity to disseminate additional results from studies, published in JCO or elsewhere, for which the primary end point has already been reported.The APHINITY trial (ClinicalTrials.gov identifier: NCT01358877) previously demonstrated that pertuzumab added to adjuvant trastuzumab and chemotherapy improved invasive disease-free survival (iDFS) for patients with early human epidermal growth factor receptor 2-positive (HER2+) breast cancer (BC). Here, we report the preplanned third interim analysis of overall survival (OS) and a descriptive updated iDFS analysis with 8.4 years of median follow-up of 4,804 patients in the intent-to-treat population. The 8-year OS was 92.7% in the pertuzumab versus 92.0% in the placebo group (hazard ratio [HR], 0.83 [95% CI, 0.68 to 1.02]; P = .078, above the 0.006 significance threshold). The HR was 0.80 [95% CI 0.63 to 1.00] in the node-positive cohort and 0.99 [95% CI, 0.64 to 1.55] in the node-negative cohort. Updated results of 8-year iDFS in the node-positive cohort showed an absolute improvement of 4.9% favoring pertuzumab (86.1% v 81.2%; HR, 0.72 [95% CI, 0.60 to 0.87]). The node-negative cohort did well without adding pertuzumab (8-year iDFS and OS in the placebo group were 93.3% and 96.4%, respectively). The iDFS benefit was seen in the hormone receptor-negative (HR, 0.82 [95% CI, 0.64 to 1.06]) and HR+ cohorts (HR of 0.75 [95% CI, 0.61 to 0.92]). Despite improvement in overall iDFS, the addition of pertuzumab did not improve OS at this third interim analysis.
Background: Trastuzumab increases the incidence of cardiac events (CEs) in patients with breast cancer (BC). Dual blockade with pertuzumab (P) and trastuzumab (T) improves BC outcomes and is the standard of care for high-risk human epidermal growth factor receptor 2 (HER2)-positive early BC patients. We analyzed the cardiac safety of P and T in the phase III APHINITY trial.Patients and methods: Left ventricular ejection fraction (LVEF) > 55% was required at study entry. LVEF assessment was carried out every 3 months during treatment, every 6 months up to month 36, and yearly up to 10 years. Primary CE was defined as heart failure class III/IV and a significant decrease in LVEF (defined as >10% from baseline and to <50%), or cardiac death. Secondary CE was defined as a confirmed significant decrease in LVEF, or CEs confirmed by the cardiac advisory board.Results: The safety analysis population consisted of 4769 patients. With 74 months of median follow-up, CEs were observed in 159 patients (3.3%): 83 (3.5%) in P + T and 76 (3.2%) in T arms, respectively. Most CEs occurred during anti-HER2 therapy (123; 77.4%) and were asymptomatic or mildly symptomatic decreases in LVEF (133; 83.6%). There were two cardiac deaths in each arm (0.1%). Cardiac risk factors indicated were age > 65 years, body mass index > 25 kg/m2, baseline LVEF between 55% and <60%, and use of an anthracycline-containing chemotherapy regimen. Acute recovery from a CE based on subsequent LVEF values was observed in 127/155 patients (81.9%).Conclusions: Dual blockade with P + T does not increase the risk of CEs compared with T alone. The use of anthracycline-based chemotherapy increases the risk of a CE; hence, non-anthracycline chemotherapy may be considered, particularly in patients with cardiovascular risk factors.
Background: Geographic location and national income may influence access to innovation in healthcare. We aimed to study if geographical location and national income influenced the timelines to activate the global phase III APHINITY trial, evaluating adjuvant pertuzumab in patients with HER2-positive early breast cancer. Methods: Time from regulatory authority (RA) submission to approval (RAA), time to Ethics Committee/Institutional Review Board (EC/IRB) approval, time from study approval by EC/IRB to first randomised patient and from first to last randomised patient were collected. Analyses were conducted grouping countries by geographical region or economic income classification. Results: Forty-one countries (of 42) had data available regarding all relevant timelines. No statistical difference was observed between the time to RAA and geographical region (p = 0.47), although there was a trend to longer time to RAA in upper middle-income economies (p = 0.07). Except for time from first to last patient randomised, there was wide variation in timelines overall and within geographical regions and economic income groups. Conclusions: Geographical location and income classification did not appear to be the major drivers influencing time for clinical trial activation. Wide variability in activation timelines within geographical regions and income groups exists and is worthy of further investigation.
Aim: The APHINITY trial showed that adding adjuvant pertuzumab (P) to trastuzumab and chemotherapy, compared with adding placebo (Pla), significantly improved invasive disease-free survival (IDFS) for patients with HER2+ early breast cancer both overall and for the node-positive (N+) cohort. We explored whether adding P could benefit some Nsubpopulations and whether to consider de-escalation for some N+ subpopulations. Methods: Subpopulation Treatment Effect Pattern Plot (STEPP) is an exploratory, graphical method that plots estimates of treatment effect for overlapping patient subpopulations defined by a covariate of interest. We used STEPP to estimate Kaplan-Meier differences in 6-year IDFS percentages (P minus Pla: D +/- standard error [SE]), both overall and by nodal status, for overlapping subpopulations defined by (1) a clinical composite risk score, (2) tumour infiltrating lymphocytes (TILs) percentage, and (3) human epidermal growth factor receptor 2 (HER2) FISH copy number. Because of multiplicity, a D of at least three SE is required to Results: The average absolute gains in 6-year IDFS percentages were 2.8 +/- 0.9 overall; 4.5 +/- 1.2 for N+ and 0.1 +/- 1.1 for N-. Largest gains were for patients with intermediate clinical composite risk (5.3 +/- 1.9 overall; 6.9 +/- 2.3 N+; 4.0 +/- 3.0 N-), highest TILs percentage (6.3 +/- 1.7 overall; 7.4 +/- 2.4 N+; 3.2 +/- 1.7 N-), and intermediate HER2 copy number (2.8 +/- 1.9 overall; 7.4 +/- 2.5 N+; -1.3 +/- 1.9 N-), but clear evidence indicating a pattern Conclusions: STEPP plots for N- did not identify subpopulations clearly benefiting from adding P, and those for N+ did not identify subpopulations warranting de-escalation. TILs per
From Nov 2011 until Aug2013, the randomized, phase III, double-blind APHINITY trial enrolled 2400 patients with HER2+, operable breast cancer assigned to receive pertuzumab (P) added to adjuvant trastuzumab (T) and chemotherapy and 2405 to receive placebo plus T and chemotherapy.
PURPOSE APHINITY, at 45 months median follow-up, showed that pertuzumab added to adjuvant trastuzumab and chemotherapy significantly improved invasive disease–free survival (IDFS) (hazard ratio 0.81 [95% CI, 0.66 to 1.00], P = .045) for patients with early human epidermal growth factor receptor 2 (HER2)–positive breast cancer (BC), specifically those with node-positive or hormone receptor (HR)–negative disease. We now report the preplanned second interim overall survival (OS) and descriptive updated IDFS analysis with 74 months median follow-up. METHODS After surgery and central HER2-positive confirmation, 4,805 patients with node-positive or high-risk node-negative BC were randomly assigned (1:1) to either 1-year pertuzumab or placebo added to standard adjuvant chemotherapy and 1-year trastuzumab. RESULTS This interim OS analysis comparing pertuzumab versus placebo did not reach the P = .0012 level required for statistical significance (P = .17, hazard ratio 0.85). Six-year OS were 95% versus 94% with 125 deaths (5.2%) versus 147 (6.1%), respectively. IDFS analysis based on 508 events (intent-to-treat population) showed a hazard ratio of 0.76 (95% CI, 0.64 to 0.91) and 6-year IDFS of 91% and 88% for pertuzumab and placebo groups, respectively. The node-positive cohort continues to derive clear IDFS benefit from pertuzumab (hazard ratio 0.72 [95% CI, 0.59 to 0.87]), 6-year IDFS being 88% and 83%, respectively. Benefit was not seen in the node-negative cohort. In a subset analysis, IDFS benefit from pertuzumab showed a hazard ratio of 0.73 (95% CI, 0.59 to 0.92) for HR-positive disease and a hazard ratio of 0.83 (95% CI, 0.63 to 1.10) for HR-negative disease. Primary cardiac events remain < 1% in both the treatment groups. No new safety signals were seen. CONCLUSION This analysis confirms the IDFS benefit from adding pertuzumab to standard adjuvant therapy for patients with node-positive HER2-positive early BC. Longer follow-up is needed to fully assess OS benefit.
Abstract Background: The primary analysis of the randomized, double-blind, placebo-controlled APHINITY trial, published in 2017, including 4804 patients (pts) with HER2-positive, early breast cancer with 45.4 months' median follow-up, demonstrated that adjuvant pertuzumab (P) added to trastuzumab and chemotherapy, statistically significantly improved invasive disease-free survival (IDFS) compared with placebo (Pla) added to trastuzumab and chemotherapy overall and for pts with node-positive (N+) disease. In 2019, updated descriptive analyses of IDFS with 74.1 months' median follow-up, demonstrated sustained benefit of adding P both overall (HR, 0.76; 95% CI, 0.64-0.91), and for N+ disease (HR, 0.72; 95% CI, 0.59-0.87), while confidence intervals remained wide for the node-negative (N-) cohort (HR, 1.02; 95% CI, 0.69-1.53). There is great interest to explore how these significant overall results translate into absolute treatment benefits for different patient subpopulations. Methods: Subpopulation Treatment Effect Pattern Plot (STEPP) is an exploratory, graphical method that plots estimates of treatment effect for overlapping patient subpopulations defined by a covariate of interest. Four continuous covariates of interest are considered for defining subpopulations in this report: i) a clinical composite risk score (see below), ii) TILs percentage, iii) HER2 FISH copy number, and iv) a clinical-biological composite risk score combining the previous three factors. Pts with lowest values for the covariate comprise the extreme left STEPP subpopulation, and pts with highest values comprise the extreme right subpopulation. The clinical composite risk score for IDFS based on the overall cohort was calculated using a Cox regression model including the following prespecified clinical characteristics: number of positive nodes, tumor size, age, and centrally-reviewed hormone receptor status. Composite risk scores were scaled between 0 and 100 with higher scores reflecting higher risk of an IDFS event. An example of low clinical risk factors would be T1N0 and aged 40-64; while high risk would be T3N2 or higher and ages <40 or ≥65. At 74.1 months' median follow-up, the composite risk of an IDFS event did not depend on hormone receptor status. Differences in Kaplan-Meier estimates of 6-year IDFS percents (P minus Pla) were used as estimates of treatment effect for each subpopulation. The overall analyses (N=4804) used 9 overlapping subpopulations with ~1000 pts in each, the N- analyses (N=1799) used 5 subpopulations with ~500 pts in each, and the N+ analyses (N=3005) used 7 subpopulations with ~750 pts in each. Intermediate (middle) subpopulations were the 5th, 3rd, and 4th, respectively. Results: Table of 6-year IDFS percents (%) from Aphinity STEPPs, Overall and for N- and N+ cohorts. For each analysis, results are shown for the two subpopulations at either extreme of the STEPP (i.e. lowest and highest risk or values) as well as the intermediate STEPP subpopulation. Conclusions: Based on the two extreme and one intermediate subpopulations of the STEPP analyses shown in the table, the intermediate clinical composite risk subpopulation and the highest TILs percentages had the largest absolute improvements in 6-year IDFS percents for P compared with Pla. Table of 6-year IDFS percents (%) from Aphinity STEPPs, Overall and for N- and N+ cohorts.6-year IDFS %Overall (N=4804)Node-Negative (N=1799)Node-Positive (N=3005)PPlaΔ±SEPPlaΔ±SEPPlaΔ±SEOverall Average Results90.687.82.8±0.995.094.90.1±1.187.983.44.5±1.2Clinical composite riskLowest risk (0 - 21)95.396.2-0.9±1.396.196.5-0.4±1.5---Intermediate (39 - 63)92.687.35.3±1.995.091.04.0±3.093.686.76.9±2.3Highest risk (81 - 100)80.575.84.7±2.8---79.475.44.0±3.2TILs percentageLowest values (0-9)90.487.82.6±2.094.795.2-0.5±2.087.282.64.6±2.7Intermediate (13-21)89.487.71.7±2.194.294.10.1±2.285.484.80.6±2.7Highest values (≥31)95.689.36.3±1.798.194.93.2±1.792.384.97.4±2.4HER2 copy numberLowest values (1-8)87.186.40.7±2.292.794.8-2.1±2.284.182.12.0±2.8Intermediate (9.5-11)91.889.02.8±1.994.996.1-1.3±1.990.783.37.4±2.5Highest values (13-32)90.588.91.6±2.096.095.10.9±2.087.785.32.4±2.6Clinical-biological composite riskLowest risk (0-21)96.796.40.3±1.298.295.72.5±1.6---Intermediate (40-60)93.489.53.9±1.991.792.7-1.0±2.594.288.85.4±2.2Highest risk (79-100)80.175.94.2±2.7---79.575.24.3±3.2 Citation Format: Richard D. Gelber, Xin Victoria Wang, Bernard F. Cole, David Cameron, Fatima Cardoso, Vivianne Tjan-Heijnen, Ian Krop, Sherene Loi, Roberto Salgado, Astrid Kiermaier, Elizabeth Frank, Debora Fumagalli, Carmela Caballero, Evandro de Azambuja, Marion Procter, Emma Clark, Eleonora Restuccia, Sarah Heeson, Jose Bines, Sibylle Loibl, Martine Piccart-Gebhardt. 6-year absolute invasive disease-free survival (IDFS) benefit of adding adjuvant pertuzumab to trastuzumab and chemotherapy for patients with early HER2-positive breast cancer: A STEPP analysis of the APHINITY (BIG 4-11) trial [abstract]. In: Proceedings of the 2020 San Antonio Breast Cancer Virtual Symposium; 2020 Dec 8-11; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2021;81(4 Suppl):Abstract nr PS10-01.
We assessed health-related quality of life (symptoms of therapy/patient functioning/global health status), in APHINITY (pertuzumab/placebo, trastuzumab, and chemotherapy as adjuvant HER2-positive early breast cancer therapy). Patients received 1 year/18 cycles of pertuzumab/placebo with trastuzumab and chemotherapy and completed EORTC QLQ-C30 and BR23 questionnaires until 36 months post-randomisation/disease recurrence. Changes ≥10 points from baseline were considered clinically meaningful. 87–97% of patients completed questionnaires. In the pertuzumab versus placebo arms, mean decrease in physical function scores (baseline → end of taxane) was −10.7 (95% CI −11.4, −10.0) versus −10.6 (−11.4, −9.9), mean decrease in global health status was −11.2 (−12.2, −10.2) versus −10.2 (−11.1, −9.2), and mean increase in diarrhoea scores (baseline → end of taxane) was +22.3 (21.0, 23.6) versus +9.2 (8.2, 10.2). Diarrhoea scores remained elevated versus baseline in the pertuzumab arm throughout HER2-targeted treatment (week 25: +13.2; end of treatment: +12.2). Role functioning was maintained in both arms. Improved invasive disease-free survival achieved by adding pertuzumab to trastuzumab and chemotherapy did not adversely affect the ability to conduct activities of daily living versus trastuzumab and chemotherapy alone. Patient-reported diarrhoea worsened during taxane therapy in both arms, persisting during HER2-targeted treatment in the pertuzumab arm. NCT01358877.
510 Background: Trastuzumab (T) increases the incidence of cardiac events (CEs) in patients (pts) with early breast cancer (BC). Dual blockade with P+T improves BC outcomes and is the standard of care for high-risk HER2-positive BC pts following the phase 3 APHINITY trial that evaluated the addition of P or placebo (Pla) to T and chemotherapy (CT). We analyzed the cardiac safety of P+T in APHINITY. Methods: APHINITY eligibility required a left ventricular ejection fraction (LVEF) ≥55% at study entry. LVEF assessment was performed every 3 months (mos) during treatment, every 6 mos up to month 36, and yearly thereafter. Primary CE was defined as heart failure (HF) class III/IV and a significant decrease in LVEF of at least 10 percentage points from baseline and to <50%, or cardiac death. Secondary CE was defined as a confirmed significant decrease in LVEF or CEs confirmed by the cardiac advisory board. Results: The safety analysis population consists of 4,769 pts. With 74 mos median follow-up (FU), CEs were observed in 159 pts (3.3%): 83 (3.5%) in the P+T and 76 (3.2%) in Pla+T arms, respectively. Most CEs occurred during anti-HER2 therapy: 123/159 (77.4%) and were asymptomatic or mildly symptomatic LVEF decrease (133/159; 83.6%) (Table 1). There were 2 cardiac deaths in each arm (0.1%). More CEs occurred in pts receiving an anthracycline-based CT compared to those receiving non-anthracycline CT (139 vs. 20 CEs, respectively). Acute recovery from a CE based on subsequent LVEF values was observed in 127/155 pts (81.9%). Conclusions: Dual blockade with P+T does not increase the risk of CE compared to Pla+T alone. The use of anthracycline-based CT increases the risk of a CE; hence non-anthracycline CT may be considered particularly in pts with other cardiovascular risk factors. Clinical trial information: NCT01358877. [Table: see text]
Background: The APHINITY trial demonstrated that pertuzumab, when added to adjuvant trastuzumab and chemotherapy, modestly but statistically significantly improved invasive disease-free survival (IDFS) among patients with HER2-positive, operable breast cancer. From November 2011 until August 2013, 2400 patients were randomly assigned to receive pertuzumab and 2405 to receive placebo. The clinical cut off-date for the primary analysis was 19 Dec 2016 after a median follow-up of 45.4 months. In the intent-to-treat (ITT) population, the estimates of the 3-year rates of IDFS were 94.1% in the pertuzumab group and 93.2% in the placebo group (hazard ratio [HR], 0.81; 95% confidence interval [CI], 0.66 to 1.00; P=0.045). The benefit appeared more pronounced in patients with node-positive disease, with a HR of 0.77 (95% CI 0.62-0.96), and in those with hormone receptor-negative disease, where the HR …
Abstract Background: The APHINITY trial demonstrated that pertuzumab, when added to adjuvant trastuzumab and chemotherapy, modestly but statistically significantly improved invasive disease-free survival (IDFS) among patients with HER2-positive, operable breast cancer. From November 2011 until August 2013, 2400 patients were randomly assigned to receive pertuzumab and 2405 to receive placebo. The clinical cut off-date for the primary analysis was 19 Dec 2016 after a median follow-up of 45.4 months. In the intent-to-treat (ITT) population, the estimates of the 3-year rates of IDFS were 94.1% in the pertuzumab group and 93.2% in the placebo group (hazard ratio [HR], 0.81; 95% confidence interval [CI], 0.66 to 1.00; P=0.045). The benefit appeared more pronounced in patients with node-positive disease, with a HR of 0.77 (95% CI 0.62-0.96), and in those with hormone receptor-negative disease, where the HR was 0.76 (95% CI 0.56-1.04). Based on these results, pertuzumab in combination with trastuzumab was approved for high risk early HER2-positive breast cancer patients. The first interim analysis of OS took place at that same time. A total of 169 patients had died, with no significant treatment effect with regards to mortality found at that time. Diarrhea, grade 3 or higher, was more frequent within the pertuzumab group (9.8%) compared with the placebo group (3.7%). Heart failure, cardiac death, and cardiac dysfunction were infrequent in both treatment groups. Results: At 74.1 months of median follow-up (clinical cut-off date June 19, 2019), we now report results of the pre-planned, calendar-driven second interim OS analysis which requires a p-value of 0.0012 to reach statistical significance. Updated descriptive analyses of IDFS and cardiac safety were also performed. Fewer deaths were observed in the pertuzumab (P) arm [125 (5.2%) vs 147 (6.1%)], however statistical significance was not reached at this interim analysis. The hazard ratio for OS is 0.85 [95% CI 0.67-1.07 (p=0.17)]; 6-year OS percents are 94.8% vs 93.9% (0.9% difference).Updated IDFS results based on 508 events in the ITT population are: hazard ratio 0.76 [95% CI 0.64-0.91]; 6-year IDFS percents are 90.6% vs 87.8% (2.8% difference). Of note, the difference was due mainly to the reduction in distant (5.9% vs 7.7%) and loco-regional (1.2% vs 2.0%) BC relapses. The node-positive cohort continues to derive clear benefit from the addition of P: hazard ratio 0.72 (95% CI 0.59-0.87). The benefit in terms of 6-year IDFS percent is 4.5% [87.9% vs 83.4%].In the node-negative cohort, the IDFS hazard ratio is 1.02 (95% CI; 0.69-1.53) with 95% of patients being event-free in both arms at 6 years.With longer follow up, a treatment benefit of P is also seen in the hormone receptor (HR) positive cohort: IDFS hazard ratio for HR positive is 0.73 (95% CI 0.59 -0.92). IDFS hazard ratio for HR negative is 0.83 (95% CI 0.63 -1.10). No new cardiac safety concerns emerged. One additional primary cardiac event (heart failure) was reported in the P arm and 1 additional patient in each arm had a secondary cardiac event resulting to 18 and 8 for primary cardiac events and 65 and 68 for secondary cardiac events in the P and placebo arms, respectively. The benefit of P in HER2+ early BC is maintained, with the greatest benefit continuing to be observed in the node positive population. With longer follow-up, the benefit of P no longer appears to depend on HR status. Continued follow up of patients is very important to determine possible benefit for OS. A calendar-driven third interim OS analysis is planned in 2.5 years, and the event-driven final OS analysis is planned when 640 deaths have occurred. Citation Format: Martine Piccart, Marion Procter, Debora Fumagalli, Evandro de Azambuja, Emma Clark, Michael S. Ewer, Eleonora Restuccia, Guy Jerusalem, Susan Dent, Linda Reaby, Hervé Bonnefoi, Ian Krop, Tsang-Wu Liu, Tadeusz Pieńkowski, Masakazu Toi, Nicolas Wilcken, Michael Andersson, Young-Hyuck Im, Ling-Ming Tseng, Hans-Joachim Lueck, Marco Colleoni, Estefania Monturus, Mihaela Sicoe, Sébastien Guillaume, José Bines, Richard Gelber, Giuseppe Viale, Christoph Thomssen. Interim overall survival analysis of APHINITY (BIG 4-11): A randomized multicenter, double-blind, placebo-controlled trial comparing chemotherapy plus trastuzumab plus pertuzumab versus chemotherapy plus trastuzumab plus placebo as adjuvant therapy in patients with operable HER2-positive early breast cancer [abstract]. In: Proceedings of the 2019 San Antonio Breast Cancer Symposium; 2019 Dec 10-14; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2020;80(4 Suppl):Abstract nr GS1-04.
BACKGROUND:The APHINITY (BIG 4-11) study showed that pertuzumab significantly improved the rates of invasive disease-free survival among patients with human epidermal growth factor receptor 2 (HER2)-positive, operable breast cancer when added to adjuvant trastuzumab and chemotherapy. Because diarrhea was a common adverse event that could compromise treatment administration, we evaluated the incidence and management of diarrhea in the APHINITY study.PATIENTS AND METHODS:The APHINITY trial is a prospective, randomized, multicenter, multinational, double-blind, placebo-controlled trial. The eligible patients were randomly assigned to receive standard adjuvant chemotherapy and 1 year of trastuzumab combined with pertuzumab or placebo. The diarrhea incidence, severity (National Cancer Institute common terminology criteria for adverse events, version 4.0), onset, and management were analyzed.RESULTS:A total of 4805 patients were randomized. Diarrhea of any grade was the most common adverse event and occurred in 71% of patients in the pertuzumab arm versus 45% in the placebo arm. Diarrhea grade 3 to 4 was observed in 10% and 4% in the pertuzumab and placebo arms, respectively. The greatest incidence of diarrhea was reported during the concomitant administration of HER2-targeted therapy and taxane (61% vs. 34% of patients experienced an event with pertuzumab vs. placebo, respectively). A marked decrease was observed on chemotherapy cessation. Antidiarrheal agents were commonly used, and diarrhea rarely caused treatment dose modifications or discontinuation.CONCLUSION:Diarrhea was a common adverse event in the APHINITY study. Most episodes were low grade and were generally manageable with common antidiarrheal agents. The incidence of diarrhea was greater with the combination of a taxane and HER2-targeted treatment and decreased once chemotherapy was stopped.
521 Background: In APHINITY (NCT01358877), adding P to H + C significantly improved invasive disease-free survival in pts with HER2-positive EBC (von Minckwitz, NEJM 2017). Pt-reported health-related quality of life (HRQoL; symptoms of therapy, patient functioning, and global health status) was a secondary outcome, assessed by EORTC QLQ-C30, QLQ-BR23, and EQ-5D 3L questionnaires. Methods: Pts received 1 year (18 cycles) of P or Pla and H + standard adjuvant C (3–4 cycles of anthracycline-based C followed by 3–4 cycles of taxane, or 6 cycles of docetaxel + carboplatin). Pts completed measures until recurrence or 36 months post-randomization (whichever was first). Assessments were performed at screening, end of anthracycline, taxane, and HER2-targeted therapy, at Week 25, and at 6, 12, and 24 months following the end of HER2-targeted therapy. Mean and mean change from baseline (BL) scores were assessed in each arm and time point; results were defined as clinically meaningful if they differed by ± 10 points (Osoba, JCO 1998). Results: Questionnaire completion rates were > 85% throughout. Mean physical function scores (SD; 95% CI) decreased from BL to Week 13 (end of taxane): –10.7 (17.2; –11.4, –10.0) with P and –10.6 (17.7; –11.4, –9.9) with Pla during C. Scores returned to BL during HER2-targeted treatment. There was no clinically meaningful decline in role function from BL to Week 13 in either arm: –8.0 (28.6; –9.2, –6.8) with P and –8.5 (29.5; –9.8, –7.3) with Pla during C. Diarrhea symptom score differences from BL were clinically meaningful with P (at Week 13), and scores returned to BL at the end of targeted therapy (P + H). Diarrhea symptom scores were worst at Week 13 in both arms (P +22.3 [29.8; 21.0, 23.6]; Pla +9.2 [23.9; 8.2, 10.2]). Conclusions: In one of the largest HRQoL data sets reported to date in HER2-positive EBC, there was no clinically meaningful worsening of role function, indicating that patients’ abilities to conduct daily activities did not differ by treatment arm. Patient-reported diarrhea symptoms worsened to a greater extent in the P arm during both C and HER2-targeted treatment. Clinical trial information: NCT01358877.
Abstract Background Diarrhea is the most commonly reported adverse event (AE) on pertuzumab (Ptz) in both early and metastatic breast cancer (BC) settings. We report safety analyses of diarrhea from the large adjuvant APHINTY study in HER2 positive early breast cancer (EBC). Patients and methods In this exploratory analysis, the safety population included 2364 patients in the Ptz arm and 2405 in the placebo (Pla) arm. No specific prophylaxis was mandated by the protocol, however early intervention with loperamide as well as fluid and electrolyte replacement was recommended. Diarrhea incidence, severity (NCI-CTCAE v4.0), onset and management were analyzed. Results Diarrhea was the most common AE in the Ptz arm (71.3% vs. 45.2% in the Pla arm) and the events were mostly G1. Diarrhea ≥G3 was observed in 9.8% and 3.7% in Ptz and Pla arms, respectively. The highest incidence was reported during administration of HER2 targeted therapy and taxane (61.4% vs. 33.8% with Ptz and Pla, respectively) with a marked decrease observed upon chemotherapy cessation (18.1% vs. 9.2% with Ptz and Pla, respectively). The median time from first targeted treatment to onset of diarrhea during the chemotherapy phase was 7 and 10 days (Ptz/Pla). On average, diarrhea events lasted longer in the Ptz than in the Pla arm (median 8 vs. 6 days). Diarrhea events were more frequent with the administration of docetaxel + carboplatin and targeted agents, irrespective of the severity. Detailed results are reported in Table 1. Conclusions In the curative setting, diarrhea due to Ptz was mild, generally manageable with common antidiarrheals and did not affect patients' ability to receive treatment. The APHINITY findings are consistent with the well-characterized pattern of pertuzumab-related diarrhea across the HER2 BC spectrum. Diarrhea incidence, severity (NCI-CTCAE v4.0), onset and management Ptz, n=2364Pla, n=2405Incidence and severityTotal number of patients with at least one adverse event$1685 (71.3%)1086 (45.2%)Total number of events$34151792NCI CTC AE Grade (highest grade per patient)!n1683 (71.2%)1085 (45.1%)Grade 1829 (35.1%)690 (28.7%)Grade 2622 (26.3%)305 (12.7%)Grade 3229 (9.7%)90 (3.7%)Grade 43 (0.1%)0Onset and duration$Median time (days) from 1st HER2 targeted treatment to onset (min-max)7 (1 – 358)10 (1 - 384)Median Duration (days) of each event (min-max)8 (1 - 811)6 (1 - 1022)ManagementAntidiarrheals$898 (38.0%)386 (16.0%)Dose modification* of any study drug!210 (8.9%)74 (3.1%)Dose modification* of HER2 targeted treatment!69 (2.9%)18 (0.7%)Discontinuation of any study drug!38 (1.6%)7 (0.3%)Discontinuation of HER2 Targeted treatment!20 (0.8%)2 (<0.1%)$ Based on a basket of preferred terms for diarrhea ! Based only on the preferred term diarrhea * Includes dose reductions (chemotherapy only), delays or interruptions during infusion Citation Format: Bines J, de Azambuja E, Zardavas D, Procter M, Restuccia E, Viale G, Suter T, Arahmani A, van Dooren V, Clark E, Eng-Wong J, Gelber R, Piccart M, von Minckwitz G, Baselga J. Incidence and management of diarrhea with adjuvant pertuzumab and trastuzumab in HER2-Positive breast cancer [abstract]. In: Proceedings of the 2017 San Antonio Breast Cancer Symposium; 2017 Dec 5-9; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2018;78(4 Suppl):Abstract nr P1-13-07.
Trastuzumab-associated cardiotoxicity remains an issue for patients with HER2-positive breast cancer. This pooled analysis of 3 adjuvant trials investigated the incidence, timing, impact on treatment completion, and risk factors for trastuzumab-associated cardiotoxicity. This is an individual patient data level pooled analysis of HERA, NSBAP B-31, and NCCTG 9831 (Alliance Trials). Definitions of cardiac events were as per each individual study. A total of 7445 patients enrolled in the 3 trials were included in the analysis, of which 4017 were in the trastuzumab and 3428 in the control (observation) arms, respectively. Median follow-up exceeded 10 years (119.2–137.2 months). Nearly all patients (97.4%) in the trastuzumab arms received anthracycline-based chemotherapy. In total, 452 patients in the trastuzumab arms experienced a cardiac event (11.3%), with most being mildly symptomatic or asymptomatic left ventricular ejection fraction (LVEF) decrease (351 patients, 8.7%). Severe congestive heart failure was more common in the trastuzumab arm (2.3%) than in the control arm (0.8%). Most cardiac events occurred during trastuzumab treatment (78.1%) and cardiac events were the main cause of discontinuation across the sample (10.0%); nevertheless, a large majority of patients completed trastuzumab treatment (76.2%). Baseline risk factors that were significantly associated with the development of cardiac events were baseline LVEF < 60%, hypertension, body mass index > 25, age ≥ 60 and, non-Caucasian ethnicity. One year of trastuzumab increases the risk of cardiac events, though most consist of asymptomatic or mildly symptomatic LVEF drops. Adjuvant trastuzumab should be considered a safe treatment from a cardiac standpoint for most patients. Trastuzumab-associated cardiotoxicity is the main cause of discontinuation and further research is needed to individualize prevention and management.
Imputation methods for missing data on a time-dependent variable within time-dependent Cox models are investigated in a simulation study. Quality of life (QoL) assessments were removed from the complete simulated datasets, which have a positive relationship between QoL and disease-free survival (DFS) and delayed chemotherapy and DFS, by missing at random and missing not at random (MNAR) mechanisms. Standard imputation methods were applied before analysis. Method performance was influenced by missing data mechanism, with one exception for simple imputation. The greatest bias occurred under MNAR and large effect sizes. It is important to carefully investigate the missing data mechanism.