A phase II trial of bendamustine in combination with ofatumumab in patients with relapsed or refractory marginal zone B-cell lymphomas
HEMATOLOGICAL ONCOLOGY
Authors: Vannata, Barbara; Vanazzi, Anna; Negri, Mara; Liptrott, Sarah Jayne; Bartosek, Anna Amalia; Miani, Monica; Di Sanzo, Alessandro; Cavalli, Franco; Zucca, Emanuele; Stathis, Anastasios
Abstract
Marginal zone lymphomas (MZLs) are indolent yet incurable lymphomas with frequent relapses following therapy. For patients with relapsed/refractory disease, no standard therapies exist. Here we report results of an exploratory phase II study aimed at assessing the efficacy and safety of the alkylator agent bendamustine in combination with the second-generation anti-CD20 monoclonal antibody, ofatumumab, in patients with relapsed or refractory MZL. Patients with MZL and previously treated with at least one line of systemic therapy were eligible. Treatment consisted in bendamustine (90 mg/m(2) on days 1 and 2) and ofatumumab (1000 mg on day 1) in 28-day cycles for up to six cycles. Sixteen patients were included in the trial. In one patient, the diagnosis was revised after two cycles of treatment and was excluded from the efficacy analysis. Among 15 patients with MZL, 14 were evaluable for response: the overall and complete response rates were 92.9% and 57.1%, respectively. The median duration of response was 30.4 months (95% confidence interval [CI], 15.5 -not estimable) and 2-years progression-free survival 77% (95% CI, 43%-92%). Fifteen patients (94%) experienced grade 3-4 adverse events. Toxicity was mostly hematological. Neutropenia grade >= 3 was recorded in 27% of patients, lymphocytopenia in 93%, and infections and febrile neutropenia each in 13%. One patient discontinued treatment due to myocardial infarction; no treatment-related deaths occurred. The combination of bendamustine with ofatumumab was active with an acceptable toxicity profile in this small phase II trial and can be considered for further investigation in relapsed/refractory MZL patients.
Hypoxia Induces Resistance to EGFR Inhibitors in Lung Cancer Cells via Upregulation of FGFR1 and the MAPK Pathway
CANCER RESEARCH
Authors: Lu, Yuhong; Liu, Yanfeng; Oeck, Sebastian; Zhang, Gary J.; Schramm, Alexander; Glazer, Peter M.
Abstract
Development of resistance remains the key obstacle to the clinical efficacy of EGFR tyrosine kinase inhibitors (TKI). Hypoxia is a key microenvironmental stress in solid tumors associated with acquired resistance to conventional therapy. Consistent with our previous studies, we show here that long-term, moderate hypoxia promotes resistance to the EGFR TKI osimertinib (AZD9291) in the non-small cell lung cancer (NSCLC) cell line H1975, which harbors two EGFR mutations including T790M. Hypoxia-induced resistance was associated with development of epithelial-mesenchymal transition (EMT) coordinated by increased expression of ZEB-1, an EMT activator. Hypoxia induced increased fibroblast growth factor receptor 1 (FGFR1) expression in NSCLC cell lines H1975, HCC827, and YLR086, and knockdown of FGFR1 attenuated hypoxia-induced EGFR TKI resistance in each line. Upregulated expression of FGFR1 by hypoxia was mediated through the MAPK pathway and attenuated induction of the proapoptotic factor BIM. Consistent with this, inhibition of FGFR1 function by the selective small-molecule inhibitor BGJ398 enhanced EGFR TKI sensitivity and promoted upregulation of BIM levels. Furthermore, inhibition of MEK activity by trametinib showed similar effects. In tumor xenografts in mice, treatment with either BGJ398 or trametinib enhanced response to AZD9291 and improved survival. These results suggest that hypoxia is a driving force for acquired resistance to EGFR TKIs through increased expression of FGFR1. The combination of EGFR TKI and FGFR1 or MEK inhibitors may offer an attractive therapeutic strategy for NSCLC. Significance: Hypoxia-induced resistance to EGFR TKI is driven by overexpression of FGFR1 to sustain ERK signaling, where a subsequent combination of EGFR TKI with FGFR1 inhibitors or MEK inhibitors reverses this resistance.