Background: Anti-angiogenic agents, such as nintedanib and ramucirumab, when combined with docetaxel, are subsequent treatment options in patients with non-small cell lung cancer (NSCLC) who have failed on first-line chemotherapy or immunochemotherapy. However, to date, there are no validated predictive biomarkers for efficacy of anti-angiogenic therapies in this setting. The aim of this study was to explore whether genetic or genomic markers, alone or combined with clinical covariates, could be used to predict overall survival (OS) in patients with NSCLC who are eligible for treatment with nintedanib plus docetaxel. Methods: LUME-BioNIS (NCT02671422) was a prospective, non-interventional study that assessed the efficacy and safety of nintedanib plus docetaxel in patients with relapsed/refractory NSCLC. The primary outcome was OS in relation to exploratory molecular biomarkers, alone or in combination with clinical covariates. Exploratory multivariate and univariate analyses were undertaken on putative biomarkers including clinical variables, somatic mutations, gene expression, immunological, and proliferation markers. Sub-analyses in patients with prior immunotherapy were performed. Results: Of 260 enrolled patients, most patients received nintedanib plus docetaxel in the second-line (68.8%) or third-line (25.8%). After a median follow-up of 19.7 months, median OS was 8.1 months (95% confidence interval: 7.1-9.5). Univariate subgroup analysis indicated that the presence of liver/adrenal metastases, Eastern Cooperative Oncology Group performance status (ECOG PS) >= 1, time since start of first-line therapy (<9 months), and response to first-line therapy had potential prognostic significance for OS. In multivariate analysis, the presence of brain/liver metastases and the presence of >2 metastatic sites at baseline were associated with OS. In univariate analyses in patients with prior immunotherapy, RNA expression levels of genes involved in cell proliferation, DNA damage repair, interferon signaling, and abundance of neutrophils had potential prognostic significance for OS. Conclusions: Nintedanib plus docetaxel had promising activity and manageable safety in a real-world clinical setting. No new predictive biomarkers were identified to help select patients who may particularly benefit from anti-angiogenic therapy.
TPS3651 Background: Activating mutations of KRAS drive many types of cancer. Activation of KRAS relies on guanine nucleotide exchange factors, such as SOS1, to mediate exchange of GDP for GTP. BI 1701963 is a small-molecule protein–protein interaction inhibitor that prevents the interaction between KRAS and SOS. Binding of BI 1701963 to the catalytic site of SOS1 inhibits binding of SOS1 to RAS–GDP, thereby hindering the exchange from RAS–GDP (inactive form) to RAS–GTP (active form). In preclinical studies this has been shown to lead to cytostasis in cancer cells addicted to KRAS signaling. Methods: NCT04111458 is a first-in-human trial of BI 1701963 in patients aged ≥18 years with tumors harboring KRAS mutations. Primary objectives are to determine the maximum tolerated dose (MTD) and recommended Phase II dose of BI 1701963 as monotherapy and in combination with trametinib, based on dose-limiting toxicities (DLTs). Secondary objectives are to evaluate safety, tolerability, pharmacokinetics/-dynamics and preliminary efficacy. The study will have two arms (mono- and combination therapy), and be divided into dose escalation (Part A), confirmation (Part B) and expansion (Part C, combination only) phases. Inclusion criteria include activating KRAS mutation, ≥1 evaluable lesion (RECIST 1.1), ECOG PS ≤1 and adequate organ function. Exclusion criteria include history of: RAS, MAPK or SOS1 targeting therapies; retinal vein occlusion; retinal pigment epithelial detachment; and decreased cardiac function. Parts B and C will be conducted in patients with advanced NSCLC. Treatment will continue until confirmed clinical benefit, defined toxicities, or withdrawal of consent. The primary endpoints are: Part A, the MTD, and the number of patients with DLTs during Cycle 1; Part B (monotherapy), the number of patients with DLTs; Part C, objective response (OR, RECIST 1.1). Starting doses of BI 1701963 in Part A will be 50 mg once daily (QD) orally (monotherapy) and 100 mg QD (combination, once proved safe as monotherapy) and will be escalated until the MTD is reached. The starting dose of trametinib will be 1 mg QD, escalated to the MTD or a max. of 2 mg QD. Dose cohorts will include ≥3 patients, with two therapeutic relevant doses (TRDs) established in each arm. In Part B, patients will be randomized to groups receiving one of the TRDs. If an OR is observed at a TRD in the combination arm, additional patients will be recruited into expansion cohorts receiving the relevant dose. As of Feb 11, 2020 three patients have been treated. Clinical trial information: NCT04111458 .
OBJECTIVES:To evaluate the effectiveness and safety of nintedanib plus docetaxel in patients with advanced adenocarcinoma non-small cell lung cancer (NSCLC) previously treated with both chemo- and immunotherapy.MATERIALS AND METHODS:LUME-BioNIS is a European, prospective, multicenter, non-interventional study of patients with advanced adenocarcinoma NSCLC, who initiated nintedanib plus docetaxel after first-line chemotherapy in routine practice according to the approved nintedanib EU label. The primary objective is to explore whether molecular biomarkers can predict overall survival (OS). Information on clinical or radiologic progression and death, and adverse drug reactions (ADRs)/fatal adverse events (AEs) was collected during follow-up. Here, we report a subgroup analysis evaluating outcomes in immunotherapy-pretreated patients.RESULTS:Of 260 enrolled patients, 67 (25.8%) had prior immunotherapy and were included in this subgroup analysis. Prior immunotherapy was administered in first-line in 20 patients (29.9%; combined with chemotherapy in 4 patients [6.0%]) and later-lines in 47 patients (70.1%), and most commonly comprised nivolumab (39 patients; 58.2%), atezolizumab (14 patients; 20.9%) and pembrolizumab (11 patients; 16.4%). Nintedanib plus docetaxel was given in second-line in 10 patients (14.9%) and in later-lines in 57 patients (85.1%). Median OS was 8.8 months (95% confidence interval [CI]: 7.0-11.5) and median progression-free survival (PFS) was 4.6 months (95% CI: 3.5-5.7). Among 55 patients with available data, rates of objective response and disease control were 18.2% and 78.2%, respectively. In 65 patients evaluable for safety, the most common on-treatment ADRs/AEs were malignant neoplasm progression (19 patients; 29.2%), diarrhea (21 patients; 32.3%) and nausea (10 patients; 15.4%).CONCLUSIONS:Used according to the approved nintedanib label in routine practice, nintedanib plus docetaxel demonstrated clinical effectiveness, with no unexpected safety findings, in patients with prior chemotherapy and first- or later-line immunotherapy. These data add to the real-world evidence that can inform clinical decisions in the changing therapeutic landscape.
INTRODUCTION:LUME-Colon 1 (NCT02149108) was a global, placebo-controlled phase III study of nintedanib in advanced colorectal cancer (CRC). Pre-specified biomarker analyses investigated the association of CRC consensus molecular subtypes (CMS) and tumor genomic and circulating biomarkers with clinical outcomes. MATERIALS AND METHODS:Archival tumor tissue, cell-free DNA (cfDNA), and plasma samples were collected for genomic, transcriptomic, and proteomic analyses to investigate potential associations between CRC CMS and other biomarkers with nintedanib response and clinical outcomes. RESULTS:Of the 765 treated patients, 735, 245, and 192 patient samples were analyzed in the circulating protein, tumor tissue, and cfDNA datasets, respectively. Patients were classified as CMS1 (1.7%), CMS2 (27.7%), CMS3 (0.9%), CMS4 (51.5%), or unclassified (18.2%). Unclassified/mixed CMS was associated with longer overall survival (OS) with nintedanib vs. CMS2 or CMS4 (interaction P-value = .0086); no association was observed for CMS4. Gene expression-based pathway analysis revealed an association between vascular endothelial growth factor-related signaling and OS for nintedanib (P = .0498). The most frequently detected somatic mutations were APC (72.0% [tumor tissue] vs. 56.8% [cfDNA]), TP53 (47.1% vs. 34.9%), KRAS (40.8% vs. 28.6%), and PIK3CA (16.6% vs. 11.5%); concordance rates were > 80%. Median OS differences were observed for APC and TP53 mutations vs. wild-type in cfDNA, indicating a potential prognostic value. Circulating ANG-2, CA-9, CEACAM1, collagen-IV, IGFBP-1, ICAM-1, IL-8, and uPAR were potentially prognostic for both OS and progression-free survival. CONCLUSION:We demonstrated the feasibility of large-scale biomarker analyses and CMS classification within a global clinical trial, and identified signals suggesting a potential for greater nintedanib treatment response in the unclassified/mixed CMS subgroup, despite these tumors showing heterogeneous patterns of CMS mixtures. Our results revealed a high degree of concordance in somatic mutations between tumor tissue and cfDNA. Associations with prognosis for cfDNA somatic mutations, as well as several protein-based biomarkers, may warrant further investigation in future trials.