ObjectiveTo assess the feasibility and preliminary efficacy of adding cetuximab to standard chemoradiotherapy for muscle‐invasive bladder cancer.Patients and MethodsTUXEDO was a prospective, single‐arm, open‐label, phase I/II trial conducted in six UK hospitals. Cetuximab was administered with an initial loading dose of 400 mg/m2 on Day 1 of Week −1, and then seven weekly doses of 250 mg/m2. The radiotherapy schedule was 64 Gy/32F with Day 1 mitomycin C (12 g/m2) and 5‐fluorouracil (500 mg/m2/day) over Days 1–5 and Days 22–26. Patients with T2‐4aN0M0 urothelial cancer and a performance status of 0–1 were eligible. Prior neoadjuvant therapy was permitted. The Phase I primary outcome was impact on radiotherapy treatment completion and toxicity experienced during treatment. The Phase II primary outcome was local control at 3 months post treatment.ResultsBetween September 2012 and October 2016, 33 patients were recruited; seven in Phase I, 26 in Phase II. Three patients in Phase II were subsequently deemed ineligible and received no trial therapy. Eight patients discontinued cetuximab due to adverse effects. The patients’ median (range) age was 70.1 (60.6–75.1) years, 20 had a performance status of 0, 27 were male and 26 had already received neoadjuvant chemotherapy. In Phase I, all patients completed planned radiotherapy, with no delays or dose reductions. Of the 30 evaluable patients in Phase II, 25 had confirmed local control 3 months after treatment (77%, 95% confidence interval 58–90). During the trial there were 18 serious adverse events. The study was halted due to slow accrual.ConclusionPhase I data demonstrate it is feasible and safe to add cetuximab to chemoradiotherapy. Exploratory analysis of Phase II data provides evidence to consider further clinical evaluation of cetuximab in this setting.
Background: BC2001, the largest randomised trial of bladder-sparing treatment for muscle-invasive bladder cancer, demonstrated improvement of local control and bladder cancer-specific survival from the addition of concomitant 5-fluorouracil and mitomycin C to radiotherapy. Objective: To determine the impact of treatment on the health-related quality of life (HRQoL) of BC2001 participants. Design, setting, and participants: 458 UK patients with T2-T4a N0 M0 transitional cell carcinoma of the bladder. Intervention: Patients were randomised to the chemotherapy comparison (radiotherapy, 178, or chemoradiotherapy, 182); and/or to the radiotherapy comparison (standard, 108, or reduced high-dose volume radiotherapy, 111). Outcome measurements and statistical analysis: Patients completed Functional Assessment of Cancer Therapy-Bladder (FACT-BL) questionnaires at baseline, end of treatment (EoT), and 6,12, 24, 36, 48, and 60 months after radiotherapy. The primary endpoint was change from baseline in the bladder cancer subscale (BLCS) at 12 months. Results and limitations: Data were available for 331 (92%) and 204 (93%) participants at baseline and for 192 (54%) and 114 (52%) at 12 months for the chemotherapy and radiotherapy comparisons, respectively. HRQoL declined at EoT (BLCS -5.06 [99% confidence interval: -6.12 to -4.00, p < 0.001]; overall FACT-B TOTAL score -8.22 [-10.76 to -5.68, p < 0.01]), recovering to baseline at 6 months and remaining similar to baseline subsequently. There was no significant difference between randomised groups at any time point. Conclusions: Immediately following (chemo)radiotherapy, a significant proportion of patients report declines in HRQoL, which improve to baseline after 6 months. Two-thirds of patients report stable or improved HRQoL on long-term follow-up. There is no evidence of impairment in HRQoL resulting from the addition of chemotherapy. Patient summary: Quality of life of bladder cancer patients treated with radiotherapy +/- chemotherapy deteriorates during treatment, but improves to at least pretreatment levels within 6 months. Addition of chemotherapy to radiotherapy does not affect patient-reported quality of life. (C) 2019 Published by Elsevier B.V. on behalf of European Association of Urology.
4527 Background: This phase I/II trial assessed the safety, feasibility and efficacy of cetuximab (Cet) in combination with 5-fluorouracil (5FU) and mitomycin C (MMC) with concurrent radiotherapy (RT) for the treatment of muscle invasive bladder cancer (MIBC). BC2001 trial has previously reported significant improvement in locoregional control in patients (pts) with MIBC who were randomised to synchronous chemo-RT compared to RT alone (James, Hussain, Hall et al NEJM 2012). Results for phase I have been reported previously. This abstract reports the combined results of phases I/II. Methods: From September 2012 to October 2016, 33 pts were recruited (7 pts to phase I from 2 UK centres and 26 patients to phase II from 5 UK centres). Pts received loading dose of Cet 400 mg/m2 followed by weekly Cet 250 mg/m2 for 7 weeks, continuous infusion 5FU 500mg/m2/day during fractions 1-5 and 16-20 of RT and MMC 12mg/m2on day 1 in combination with radical RT 64 Gy in 32 fractions. Neoadjuvant chemotherapy was mandatory in phase I but optional in phase II. Primary outcomes in phase I were feasibility and toxicity. Primary outcome in phase II was 3 month pathological complete response (CR) rate, secondary outcomes included toxicity, progression free survival (PFS) and overall survival (OS). Results: Median age of pts was 70 (range 46.9-85.6). Treatment completion rates in phase I were RT 100%, 5FU 100 %, MMC 100%, Cet 96%. Of the 28 analysable pts, phase II primary outcome data was available for 25 pts at the time of analysis with a 3 month pathological CR rate of 88%. 5 local progressions and 4 deaths were reported. 12 pts suffered at least one SAE. Grade 4 toxicities observed were dyspnoea, atrial fibrillation, interstitial pneumonitis, sepsis, thromboembolism, neutropenia and palpitations. The commonest grade 3 toxicities were skin rash, diarrhoea, low platelet count, low white blood cell count, fever and haematuria. The most common grade 1 and 2 toxicities were diarrhoea and skin rash. Data on PFS and OS will be presented. Conclusions: It was feasible and safe to add cetuximab to full dose chemo-RT with 5FU/MMC. The CR rate is encouraging and further randomised studies with this combination are warranted. Clinical trial information: ISRCTN80733590.
292 Background: BC2001 showed that adding 5FU+MMC CT (cRT) to RT significantly improved locoregional disease free survival [James 2012] & using reduced high dose volume RT (RHDVRT) rather than standard RT (stRT) did not reduce late side effects [Huddart 2013]. Here we report the impact of treatment on QL at the individual level. Methods: 458 (pts) were randomised to RT (178) vs. cRT (182) (CT comparison) &/or to stRT (108) vs. RHDVRT (111) (RT comparison). Pts completed Functional Assessment of Cancer Therapy-Bladder (FACT-BL) questionnaires at baseline (bl), end of treatment (EoT), 6, 12, 24, 36, 48 & 60 months (m). Mean changes from bl were compared between randomised groups. A minimal clinically relevant change from bl score was defined as 3 points in bladder cancer subscale (BLCS) & 7 points in total FACT-BL (TOTAL). The proportion of pts with an improvement, no difference & worsening at 12m were compared by Chi squared/Fishers exact test (1% significance). Results: Data were available for 331 (92%) & 204 (93%) pts at bl & 181 (50%) & 107 (49%) at 12m for the CT & RT comparison respectively. QL scores were significantly reduced at EoT but recovered to bl levels by 12m with no significant difference in TOTAL or BLCS mean change scores between randomised groups. By EoT ~60% pts reported worsening of QL. At 12m & beyond, whilst mean change scores were not different to bl, ~30-40% reported worsening of QL (-) with a similar proportion reporting an improvement (+) (Table 1). No statistically significant differences were found between randomised groups. Conclusions: Following (c)RT a significant proportion of pts have a decline in QL at EoT but after 12m overall QL is, on average, similar to bl. At an individual level approximately equal proportions of pts report an improvement in QL as report a worsening. There is no evidence of additional impairment in QL by the addition of CT to RT. Clinical trial information: ISRCTN6832433. [Table: see text]
Background: Severe chronic hypoxia is associated with tumour necrosis. In patients with muscle invasive bladder cancer (MIBC), necrosis is prognostic for survival following surgery or radiotherapy and predicts benefit from hypoxia modification of radiotherapy. Adding mitomycin C (MMC) and 5-fluorouracil (5-FU) chemotherapy to radiotherapy improved locoregional control (LRC) compared to radiotherapy alone in the BC2001 trial. We hypothesised that tumour necrosis would not predict benefit for the addition of MMC and 5-FU to radiotherapy, but would be prognostic.Methods: Diagnostic tumour samples were available from 230 BC2001 patients. Tumour necrosis was scored on whole-tissue sections as absent or present, and its predictive and prognostic significance explored using Cox proportional hazards models. Survival estimates were obtained by Kaplan-Meier methods.Results: Tumour necrosis was present in 88/230(38%) samples. Two-year LRC estimates were 71% (95% CI 61-79%) for the MMC/ 5-FU chemoradiotherapy group and 49% (95% CI 38-59%) for the radiotherapy alone group. When analysed by tumour necrosis status, the adjusted hazard ratios (HR) for MMC/ 5-FU vs. no chemotherapy were 0.46 (95% CI: 0.12-0.99; P=0.05, necrosis present) and 0.55 (95% CI: 0.31-0.98; P=0.04, necrosis absent). Multivariable analysis of prognosis for LRC by the presence vs. absence of necrosis yielded a HR=0.89 (95% CI 0.55-1.44, P=0.65). There was no significant association for necrosis as a predictive or prognostic factor with respect to overall survival.Conclusions: Tumour necrosis was neither predictive nor prognostic, and therefore MMC/5-FU is an appropriate radiotherapy-sensitising treatment in MIBC independent of necrosis status.
368 Background: Synchronous chemo-radiotherapy is an alternative to cystectomy in patients with muscle invasive bladder cancer (MIBC). BC2001 trial reported improved local control in patients randomised to synchronous chemo-radiotherapy compared to radiotherapy alone (James, Hussain, Hall et al NEJM 2012). TUXEDO trial reports phase I trial results with additional weekly cetuximab (Cet) in combination with Mitomycin c (MMC), 5-Fluouracil (5-FU) and concurrent radiotherapy (RT). Methods: This two centre phase I trial recruited 7 patients with MIBC in Queen Elizabeth Hospital Birmingham and Clatterbridge Cancer Centre Liverpool to synchronous chemotherapy using Loading dose of Cet 400 mg/m2 followed by weekly Cet 250 mg/m2, continuous infusion 5-FU 500mg/m2/day during fractions 1-5 and 16-20 of RT and MMC12mg/m2on day 1 in combination with radical RT treatment 64 Gys in 32 fractions. The primary endpoint was to assess toxicity. Secondary end- points included 3 months pathological complete response, loco-regional disease-free survival and overall survival. Results: Median age of patients was 70 (range: 60-75) years, all were male, 6 had received prior neoadjuvant chemotherapy. Two patients had T2B, 3 T3A and 2 T3B disease, all had G3, TCC disease, 6 patients had neo-adjuvant chemotherapy. All 7 patients completed RT as planned except for 1 who withdrew from trial after 5 weeks of protocol treatment due to relocation. Median dose intensity for Cet and MMC was 97.6% and for 5-FU was 99.4%. Grade 3 toxicity to report was maculopapular rash in 3 patients. Grade 2 toxicities include UTI/ frequency/ nocturia / fatigue /constipation / hypokalemia/epistaxis/palmar-plantar reported in 3/1/1/1/1/1/1/2 cases respectively. Grade 2 maculo-papular rash was reported in 3 cases. All seven patients have achieved complete responses at 3 months cystoscopic assessment. Patients continue on surveillance as per TUXEDO trial protocol. Conclusions: Synchronous chemotherapy with Cet and 5FU/MMC concurrent with radical RT is safe to deliver. Complete response rates are encouraging and a phase II trial with added centres within UK is being launched. Clinical trial information: NOT KNOWN.
BC2001 is the largest muscle invasive bladder cancer (MIBC) radiotherapy trial undertaken to date and showed that addition of chemotherapy to radiotherapy achieves local control of invasive disease in over 80% of patients. Secondary time to event outcomes included non-invasive loco-regional recurrence, metastasis free survival or overall survival: all modelled separately. However, patients can experience more than one event of interest; and events are likely to be related. We want to understand how the occurrence of loco-regional recurrence and cystectomy following invasive recurrence may alter the risk of metastasis or bladder cancer death. Two approaches will be explored: 1) a multistate model for the observed evolution of patients during trial follow-up. Following randomisation (initial state), the event of interest is metastasis or death due to bladder cancer (final state). Intermediate states of non-invasive or invasive loco-regional recurrence and cystectomy, are considered. Competing non disease-related events such as non-BC deaths or second primary tumours, are included as final states. By modelling all transitions between states, the cumulative incidence of metastasis or death due to bladder cancer, given the previous event history of a patient can be derived. 2) landmark analysis of metastasis free survival. Given a fixed landmark timepoint, the status of the intermediate events by that time is assessed, and introduced as baseline covariates in the model.. Patients who have had a metastasis or died before this landmark timepoint are excluded from the analysis. Dynamic prediction can be achieved by performing landmark analysis for different landmark fixed timepoints.
Purpose: To test whether reducing radiation dose to uninvolved bladder while maintaining dose to the tumor would reduce side effects without impairing local control in the treatment of muscle-invasive bladder cancer.Methods and Materials: In this phase III multicenter trial, 219 patients were randomized to standard whole-bladder radiation therapy (sRT) or reduced high-dose volume radiation therapy (RHDVRT) that aimed to deliver full radiation dose to the tumor and 80% of maximum dose to the uninvolved bladder. Participants were also randomly assigned to receive radiation therapy alone or radiation therapy plus chemotherapy in a partial 2 x 2 factorial design. The primary endpoints for the radiation therapy volume comparison were late toxicity and time to locoregional recurrence (with a noninferiority margin of 10% at 2 years).Results: Overall incidence of late toxicity was less than predicted, with a cumulative 2-year Radiation Therapy Oncology Group grade 3/4 toxicity rate of 13% (95% confidence interval 8%, 20%) and no statistically significant differences between groups. The difference in 2-year locoregional recurrence free rate (RHDVRT sRT) was 6.4% (95% confidence interval -7.3%, 16.8%) under an intention to treat analysis and 2.6% (-12.8%, 14.6%) in the "per-protocol" population.Conclusions: In this study RHDVRT did not result in a statistically significant reduction in late side effects compared with sRT, and noninferiority of locoregional control could not be concluded formally. However, overall low rates of clinically significant toxicity combined with low rates of invasive bladder cancer relapse confirm that (chemo) radiation therapy is a valid option for the treatment of muscle-invasive bladder cancer. (C) 2013 Elsevier Inc.
BackgroundRadiotherapy is an alternative to cystectomy in patients with muscle-invasive bladder cancer. In other disease sites, synchronous chemoradiotherapy has been associated with increased local control and improved survival, as compared with radiotherapy alone.MethodsIn this multicenter, phase 3 trial, we randomly assigned 360 patients with muscle-invasive bladder cancer to undergo radiotherapy with or without synchronous chemotherapy. The regimen consisted of fluorouracil (500 mg per square meter of body-surface area per day) during fractions 1 to 5 and 16 to 20 of radiotherapy and mitomycin C (12 mg per square meter) on day 1. Patients were also randomly assigned to undergo either whole-bladder radiotherapy or modified-volume radiotherapy (in which the volume of bladder receiving full-dose radiotherapy was reduced) in a partial 2-by-2 factorial design (results not reported here). The primary end point was survival free of locoregional disease. Secondary end points included overall survival and toxic effects.ResultsAt 2 years, rates of locoregional disease-free survival were 67% (95% confidence interval [CI], 59 to 74) in the chemoradiotherapy group and 54% (95% CI, 46 to 62) in the radiotherapy group. With a median follow-up of 69.9 months, the hazard ratio in the chemoradiotherapy group was 0.68 (95% CI, 0.48 to 0.96; P = 0.03). Five-year rates of overall survival were 48% (95% CI, 40 to 55) in the chemoradiotherapy group and 35% (95% CI, 28 to 43) in the radiotherapy group (hazard ratio, 0.82; 95% CI, 0.63 to 1.09; P = 0.16). Grade 3 or 4 adverse events were slightly more common in the chemoradiotherapy group than in the radiotherapy group during treatment (36.0% vs. 27.5%, P = 0.07) but not during follow-up (8.3% vs. 15.7%, P = 0.07).ConclusionsSynchronous chemotherapy with fluorouracil and mitomycin C combined with radiotherapy significantly improved locoregional control of bladder cancer, as compared with radiotherapy alone, with no significant increase in adverse events. (Funded by Cancer Research U.K.; BC2001 Current Controlled Trials number, ISRCTN68324339.)
4517 Background: RT is an alternative to cystectomy in patients (pts) with MIBC. Synchronous CRT improves disease control (versus RT alone) in anal and cervix cancers and in one small trial with cisplatin in MIBC. BC2001 assessed efficacy and toxicity of CRT using 5-fluorouracil (5-FU) and mitomycin C (MMC) for pts with MIBC. Methods: Pts with MIBC (pT2-T4a N0 M0) were randomized in a 2x2 factorial design (1:1 allocation ratio stratified by centre and use of neoadjuvant chemotherapy (neoCT)) to CRT vs. RT alone and/or to standard RT vs. reduced high-dose volume RT to tumor. This is the first report of efficacy results of the CRT randomization. The primary endpoint was loco-regional disease-free survival (LRDFS) with pts censored at second primary, metastasis and death. Secondary endpoints included toxicity, quality of life and overall survival (OS). RT was 64Gy / 32 fractions (f) in 6.5 weeks (wks) or 55 Gy / 20f in 4 wks (as per centre policy). CRT was MMC (12mg/m2 i.v. bolus) day 1 of RT and 5-FU contin...
5022 Background: Radiotherapy (RT) is an alternative to radical cystectomy in the management of muscle invasive bladder cancer. Limitations are probability of attaining and maintaining local tumour control and risk of late bladder toxicity. BC2001 tests whether concomitant chemotherapy (CT) improves loco-regional control and whether RT volume modification reduces late toxicity without detriment to tumour control. Methods: Pts were randomized in a 2x2 factorial design to (i) RT vs RT + concomitant CT (5FU 500mg/m2 d1–5 wks 1 & 4 + mitomycin C 12mg/m2 d1) and/or (ii) standard RT to tumour and whole bladder with 1.5cm margin (sRT) vs reduced volume RT (rvRT) where tumour + 1.5cm margin was treated to 100(±5)% target dose and remaining bladder received 80% target dose. RT dose was 55Gy/20F or 64Gy/32F according to local practice. RT volume comparison results (primary endpoint RTOG toxicity at 1 yr) are reported. Target sample size was 480 pts but the RT randomisation closed early due to slow recruitment. Estimated power is 73% (two-sided α = 0.05) to detect a 20% difference in G3/4 toxicity. Results: 219 pts were recruited (108 sRT; 111 rvRT); 49 received neoadjuvant CT; 31 sRT and 33 rvRT were randomised to concomitant CT. Median age was 74 yrs. Median follow up is 36 mths. There was no difference in loco-regional disease-free survival (LRDFS: HR = 1.06, 95% CI: 0.62–1.84) nor overall survival (HR = 0.99, (0.61 - 1.35)) between randomised RT groups. 2yr LRDFS is 71% in both RT groups. 27 (16) sRT vs 32 (15) rvRT pts have had local (invasive) recurrences (p = 0.09); 32 pts have undergone salvage cystectomy. No difference was seen in CTC G3/4 acute toxicity (26% sRT vs 21% rvRT, p = 0.35), RTOG G3/4 toxicity at 12 mths (8% sRT vs 4% rvRT, p = 0.27) nor Lent Som G3/4 toxicity at 12 mths (45% sRT vs 34% rvRT, p = 0.21). Bladder capacity fell significantly in sRT group (mean reduction at 12 mths: 59mls, 95%CI: 47–118mls, p = 0.02) but not in rvRT group. Conclusions: RT in the modern era can attain local control in most patients with T2-T3 bladder cancer. Acute and late toxicity was less than anticipated in both treatment groups. Modifying standard RT volumes had minimal effect on local control and toxicity in this trial. 2 yr toxicity and quality of life data will be presented. No significant financial relationships to disclose.