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T. Hida



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    Best of Posters - IASLC Selection - Part 1 (ID 262)

    • Event: WCLC 2013
    • Type: Exhibit Showcase Session
    • Track:
    • Presentations: 1
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      P1.11-032 - Results with dacomitinib (PF-00299804), an irreversible pan-HER tyrosine kinase inhibitor, in a phase II cohort of patients with HER2-mutant or amplified lung cancers (ID 2237)

      09:55 - 10:25  |  Author(s): T. Hida

      • Abstract
      • Slides

      Background
      Dacomitinib is an oral, irreversible small molecule inhibitor of all active members of the HER (human epidermal growth factor receptor) family of tyrosine kinases: EGFR (HER1), HER2 and HER4. Dacomitinib has shown superior activity to the reversible EGFR tyrosine kinase inhibitors (TKIs) erlotinib and gefitinib in preclinical studies of lung cancer cell lines with sensitive and resistant EGFR mutations, and superiority to gefitinib in cell-line models with a HER2 insertion mutation or amplified HER2. As part of dacomitinib’s phase II testing, we studied a cohort of patients with HER2-mutant or -amplified lung cancers.

      Methods
      As a cohort of a larger phase II study, we enrolled patients who had stage IIIB/IV lung cancers and either HER2 mutations or HER2 amplification ([centromere of chromosome 17]; ratio >2), any number of prior systemic chemotherapies, but no prior HER2-targeted treatment. Dacomitinib was administered at 45 mg once daily continuously, or 30 mg if the patient had no prior systemic therapy, with the option to escalate to 45 mg. Patients were evaluated every 28 days. Endpoints included progression-free survival (PFS) rate at 4 months (PFS4m), PFS, objective response rate by RECIST, duration of response, overall survival (OS), and toxicity.

      Results
      30 patients with HER2-mutant (n=26) or HER2-amplified lung cancers (n=4) were enrolled. Characteristics: 15 female; 18 never smokers (60%); 11 (37%) former smokers. 25 received a 45 mg starting dose; 5 patients received 30 mg. 10 patients had received ≥3 prior systemic therapies. 73% of patients had a PFS event. PFS4m overall was 27% (95% CI: 11%–46%; HER2-mutant subgroup: 21% [95% CI: 6%–43%]). Median overall PFS was 3 months (95% CI: 2–4; HER2-mutant subgroup: 3 months [95% CI: 2–4]). Of 25 patients in the HER2-mutant subgroup evaluable for response, 3 (12%; 95% CI: 3%–31%) experienced a partial response, all with 9 base-pair insertions in HER2 exon 20. The partial response durations were 3+, 11, and 11+ months. The preliminary estimate of median OS was 10 months (95% CI: 7–21; HER2-mutant subgroup: 10 months [95% CI: 7–21]). Among the 4 patients with HER2 amplified lung cancers, no partial responses were seen and the PFS ranged from 1–5 months. Of 29 patients evaluable for toxicity, the most common treatment-related adverse events were diarrhea (90%; grade 3/4: 21%/3%), dermatitis (72%; grade 3/4: 3%/0), fatigue (52%; grade 3/4: 3%/0), and dry skin (48%; grade 3/4: 0/0). 10% of patients discontinued treatment due to adverse events.

      Conclusion
      Dacomitinib demonstrated an overall 12% objective response rate in patients with HER2-mutant lung cancers. All 3 responding patients had 9 base-pair HER2 exon 20 insertions. No responses were seen in the 4 patients with HER2-amplified lung cancers. Dacomitinib was well tolerated with manageable toxicities, consistent with the class effects of EGFR TKIs.

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    MO25 - NSCLC - Combined Modality Therapy II (ID 112)

    • Event: WCLC 2013
    • Type: Mini Oral Abstract Session
    • Track: Mesothelioma
    • Presentations: 1
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      MO25.02 - Thoracic Radiotherapy With or Without Concurrent Daily Low-Dose Carboplatin in Elderly Patients With Locally Advanced Non-small Cell Lung Cancer: Updated Results of the JCOG0301 and Pooled Analysis With the JCOG9812 Trial. (ID 734)

      10:30 - 12:00  |  Author(s): T. Hida

      • Abstract
      • Presentation
      • Slides

      Background
      The Japan Clinical Oncology Group (JCOG) undertook 2 randomized phase III trials (JCOG9812 and JCOG0301) to assess whether daily low-dose carboplatin plus radiotherapy could improve survival in elderly patients with stage III non-small cell lung cancer (NSCLC) when compared to radiotherapy alone. Although JCOG9812 was prematurely terminated because of a high incidence of treatment-related deaths (TRDs) and instances of protocol violation, especially with regard to radiotherapy planning, the trial regimen was assumed promising. Therefore, JCOG0301 was conducted for the same subjects using the same protocol regimen with modified inclusion criteria regarding pulmonary function and radiotherapy quality control (RTQC) measures. We then carried out a preplanned pooled analysis of these 2 studies.

      Methods
      The eligibility criteria for both trials were age of ≥71 years and unresectable stage III NSCLC. Patients were randomized to receive radiotherapy alone (60 Gy, RT arm) or chemoradiotherapy (radiotherapy, 60 Gy plus concurrent carboplatin, 30 mg/m[2] per fraction up to the first 20 fractions, CRT arm). The primary endpoint for both studies was overall survival (OS). The pooled analysis included OS, progression-free survival (PFS), response rate, and toxicities.

      Results
      In JCOG9812, 46 patients (RT arm, n=23; CRT arm, n=23) were enrolled from November 1999 to August 2001. In JCOG0301, 200 patients (RT arm, n=100; CRT arm, n=100) were enrolled from September 2003 to May 2010, and in total, 246 patients were included in the pooled analysis. Patient characteristics for the RT (n=123) and CRT (n=123) arms were as follows: median age, 77 years (range, 71–93) and 77 years (range, 71–89); stage IIIA/IIIB, 65/58 patients and 63/60 patients; performance status (PS) 0/1/2, 44/74/5 patients and 50/69/4 patients; men/women, 103/20 patients and 96/27 patients, respectively. The median OS for the RT (n=121) and CRT (n=122) arms were 16.3 months (95% CI, 13.4–18.6) and 20.7 months (95% CI, 16.3–26.9), respectively (HR, 0.672; 95%CI, 0.502–0.898, stratified log-rank test one-sided p=0.0034). The pooled HR for PFS was 0.671 (95%CI, 0.514–0.875, stratified log-rank test one-sided p=0.0015). Response rates for the RT and CRT arms were 46.3% and 53.3%, respectively. The number of patients with grade 3/4 hematological toxicities was higher in the CRT arm than in the RT arm: leucopenia (62.2% vs 1.7%), neutropenia (54.6% vs none), and thrombocytopenia (30.3% vs 3.3%). The incidence of grade 3/4 pneumonitis decreased from 4.4% (JCOG9812; RT, 4.5% and CRT, 4.3%) to 2.1% (JCOG0301; RT, 3.1% and CRT, 1.0%), and that of late lung toxicity, from 14.0% (JCOG9812; RT, 10.0% and CRT, 17.4%) to 5.9% (JCOG0301; RT, 5.3% and CRT, 6.5%). The incidence of TRD also decreased from 8.9% (JCOG9812; RT, 1 patient and CRT, 3 patients) to 3.6% (JCOG0301; RT, 4 patients and CRT, 3 patients). As per subgroup analyses, ≤75 years, stage IIIA, male, PS 0, and smoking history were associated with statistically significant improvement in OS in the CRT arm.

      Conclusion
      This combination chemoradiotherapy for elderly patients with locally advanced NSCLC provides clinically significant benefits and RTQC measures are imperative to improve treatment outcome.

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    P1.10 - Poster Session 1 - Chemotherapy (ID 204)

    • Event: WCLC 2013
    • Type: Poster Session
    • Track: Medical Oncology
    • Presentations: 1
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      P1.10-020 - Dose adjustment of single agent amrubicin in lung cancer patients with impaired hepatic function (ID 1348)

      09:30 - 16:30  |  Author(s): T. Hida

      • Abstract

      Background
      The pharmacokinetics (PK) of amrubicin (AMR) in lung cancer patients with impaired hepatic function have not been reported. The objectives of this study were to evaluate the PK of AMR and its major metabolite, amrubicinol (AMR-OH), in lung cancer patients with or without impaired hepatic function, and to assess the validity of dose adjustment of AMR based on hepatic function.

      Methods
      Eligibility criteria included the presence of histologically or cytologically proven lung cancer, an ECOG PS of 0 to 2, age 20 to 70 years old, and no evidence of hepatitis B virus infection. The dose was adjusted from 25 to 45 mg/m[2]/day (iv, days 1-3, q3w) based on the history of prior treatment and baseline values of total bilirubin (T-bil), AST and ALT (Table 1). Figure 1

      Results
      Five patients with impaired hepatic function (arm I) and 10 patients with normal hepatic function (arm N) were enrolled. Terminal half-life (t~1/2~) and clearance of AMR in plasma, and t~1/2~ of AMR-OH in blood did not differ between the two arms. Area under the curve (AUC~0-24~) of AMR in plasma and AUC~0-120~ of AMR-OH in blood in arm I were similar or lower compared to those in arm N (Table 2). The dose-adjusted AUCs of AMR and AMR-OH did not show a tendency to increase with increases in baseline T-bil, AST and ALT. Two deaths occurred in arm I (one due to disease progression, and the other due to an unspecified reason), but the toxicities in arm I were not severe compared with those in arm N. Figure 1

      Conclusion
      These data show the validity of dose adjustment of AMR in patients with impaired hepatic function.

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    P3.11 - Poster Session 3 - NSCLC Novel Therapies (ID 211)

    • Event: WCLC 2013
    • Type: Poster Session
    • Track: Medical Oncology
    • Presentations: 1
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      P3.11-034 - One-year follow-up of a Phase I/II study of a highly selective ALK inhibitor CH5424802/RO5424802 in ALK-rearranged advanced non-small cell lung cancer (NSCLC) (ID 2591)

      09:30 - 16:30  |  Author(s): T. Hida

      • Abstract

      Background
      CH5424802 is a novel tyrosine-kinase inhibitor that selectively inhibits ALK as well as secondary ALK mutations including L1196M. The preliminary results of the Phase I/II study (Lancet Oncol. 2013; 14: 590–8) showed that CH5424802 was active in the CNS and achieved a 93.5% objective response rate by RECIST in crizotinib-naïve NSCLC patients with a median follow-up of 7.6 months (range, 3.4–11.3). Here we report the 1-year follow-up results after the last patient enrolled in the Phase II analysis.

      Methods
      Patients with ALK-rearranged advanced NSCLC, who progressed after ≥1 prior chemotherapy regimens and who were naïve to any ALK inhibitors, received CH5424802 300 mg orally twice daily in the Phase II portion of the study. ALK fusion gene expression was confirmed by IHC and FISH or by RT-PCR at central laboratories. Tumor assessment was performed every cycle (21 days) until Cycle 4 and every 2 cycles thereafter with RECIST ver. 1.1.

      Results
      As of April 18, 2013, 46 patients had been treated with CH5424802 in the Phase II portion: median age, 48 years (range, 26–75); male/female, 22/24; ECOG PS 0/1, 20/26; never-smoker, 59%; ≥2 prior chemotherapy regimens, 52%. The objective response rate remains the same as previously reported, 93.5% (95% CI: 82.1% to 98.6%). At 1-year follow-up, a total of 7 patients (15%) had achieved a complete response. The median progression-free survival had not been achieved, and the 1-year progression-free rate (PFR) was 83% (95% CI: 68% to 92%). 34/46 patients were still on study treatment, and the median treatment duration had passed 14.8 months. CH5424802 also shows promising efficacy in the CNS: of 14 patients with baseline brain metastasis, 9 remained in the study without CNS or systemic progression for >12 months, with 6 of them exceeding 16 months. The other 5 patients with baseline CNS metastasis had no CNS progression during CH5424802 treatment. One of these patients discontinued the study due to AE, and the remaining 4 patients had systemic progression. The safety profile remains similar to that previously reported, with no patient requiring dose reduction.

      Conclusion
      CH5424802 demonstrated a high 1-year PFR of 83% and promising CNS activity. CH5424802 could be a novel therapeutic option for the treatment of ALK-rearranged NSCLC.

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    P3.20 - Poster Session 3 - Early Detection and Screening (ID 174)

    • Event: WCLC 2013
    • Type: Poster Session
    • Track: Imaging, Staging & Screening
    • Presentations: 1
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      P3.20-004 - Analysis of exhaled breath for screening of lung cancer patients (ID 1752)

      09:30 - 16:30  |  Author(s): T. Hida

      • Abstract

      Background
      Lung cancer is a leading cause of cancer death. The lack of symptoms in this disease and problems associated with screening programs for early detection means that patients present late with advanced disease. Studies using low-dose computed tomography proved to be beneficial, and the efficacy of computed tomography scanning as a screening tool for lung cancer is an important and contested topic. However, it has been reported that the increased incidence of cancer after computed tomography scan exposure was mostly due to irradiation. So, computed tomography scans should be limited to situations where there is a definite clinical indication. The search for non-invasive diagnostic methods of lung cancer has led to new avenues of research, including the exploration of the exhaled breath. Previous studies have shown that lung cancer can, in principle, be detected through exhaled-breath analysis. This study evaluated the potential of exhaled-breath analysis for the detection of lung cancer.

      Methods
      Breath samples were taken from patients with lung cancer and from healthy volunteers. The exhaled breath was collected in 1L Analytic- Barrier[TM] bag (OMI ODOR-AIR SERVICE Co. Ltd.). Profiles of volatile organic compounds were determined by gas chromatography/mass spectrometry (Shimadzu Co. Ltd.).

      Results
      We collected breath samples from 111 patients with lung cancer and 29 healthy volunteers using Analytic-Barrier[TM] bags. The volatile organic compounds were extracted with solid phase micro-extraction and analyzed by gas chromatography/mass spectrometry. The number of volatile organic compounds detected in breath samples was 68. Among the volatile organic compounds 10 compounds were found in only breath of the lung cancer patients. In addition, 11 compounds were found at significantly higher concentrations in breath of the lung cancer patients compared to the controls.

      Conclusion
      Our data suggest that compounds in breath could possibly be taken as useful breath biomarkers for discerning potential lung cancer patients and volatile organic compounds analysis could be used as a complementary test for the diagnosis of lung cancer. The vision of exhaled breath analysis is that of a broad use in clinical routine for personalized screening, diagnosis and treatment monitoring.