View clinical trials related to Carcinoma, Non-Small-Cell Lung.
Filter by:This was a Phase II, open-label, prospective, multicenter study designed to evaluate the efficacy and safety of single-agent atezolizumab as a first-line therapy in participants with locally advanced or metastatic non-small cell lung cancer (NSCLC). In addition, the primary biomarker objective was to measure blood tumor mutational burden (bTMB) and evaluate whether it can predict for improved clinical outcome with atezolizumab.
The development of biomarkers will lead the dynamic of personalized medicine and fill the unsatisfied needs in oncology for prediction of therapeutic response. Molecular imaging enables non invasive quantification of biomarkers. The development of molecular imaging biomarkers is closely related to the development of therapeutic molecules. Among the potential targets, kinases offer a lot of advantages: (i) they play a central role in cellular regulation, (ii) numerous kinase-specific small molecule libraries exist in biotech and pharma industry, (iii) several kinase-targeted therapies are used in clinic (imatinib, sorafenib, sunitinib…) with application across a variety of therapeutic indications. Among the imaging technologies, the Positron Emission Tomography (PET) is the most sensitive and dedicated to evaluate small molecules. However few radiotracers are available and their specificity limits their clinical use. The IMAkinib® approach is an innovative method proposed to develop new PET radiotracers adapted to current medical and economical challenges. The epidermal growth factor receptor (EGFR) is an established target for the treatment of advanced non-small cell lung cancer (NSCLC). The EGFR tyrosine kinase inhibitors (TKIs) Gefitinib (Iressa®), erlotinib (Tarceva®) and afatinib (Giotrif®) have already been approved for treatment of NSCLC harboring EGFR activating mutations (L858R or del exon 19). Unfortunately the majority of patients will develop a resistance to the TKI in the long term (6-12 months). If the mechanism of resistance is not yet fully characterized, most patients (50%) will acquire an additional T790M mutation of EGFR. TKI PET-imaging can provide a tool to determine and predict responsiveness to EGFR TKI in vivo. That is why, the investigators have selected and radiolabeled (18-Fluor) a compound targeting specifically EGFR mutated ([18F]-ODS2004436) which was further evaluated in a preclinical imaging study to determine the feasibility of TKI-PET. The investigators proved in vivo that [18F]-ODS2004436 a compound is a good candidate to evaluate the EGFR activity in human lung tumours using PET imaging.
The aim of this study is the safety and efficacy of Cetuximab plus natural killer(NK) immunotherapy to recurrent non-small cell lung cancer with EGFR mutation.
A retrospective observational longitudinal medical chart review study of randomly sampled patients diagnosed with advanced/metastatic NSCLC. The minimum observational period for each patient will be 12 months.
The aim of this study is the safety and efficacy of cryosurgery plus NK immunotherapy to advanced NSCLC.
The primary goal is to evaluate the efficacy of osimertinib (AZD9291), in terms of the objective response rate in patients with advanced non-squamous NSCLC with EGFR mutations and the EGFR T790M mutation at diagnosis as defined by RECIST 1.1 criteria. Safety and efficacy will also be measured.
The objective of the proposed clinical trial is to investigate the safety and tolerability of CV301 in combination with Anti-PD1-Therapy in subjects with non-small cell lung cancer (NSCLC). The clinical trial is designed to evaluate the possible enhanced antitumor activity of CV301 with Anti-PD1-Therapy. The rationale for combining CV301 with Anti-PD1-Therapy is based on the hypothesis that CV301 can induce specific immune response in the tumor, and that in combination, Anti-PD1-Therapy may augment the T cell-mediated immune response generated by CV301 by blocking the inhibitory signal of the PD-1. The trial will include a Phase 1 portion and a Phase 1b portion with 2 cohorts. The Phase 1 portion is a dose escalation part to assess the safety and tolerability of CV301 alone, prior to moving into the combination with Anti-PD1-Therapy (the Phase 1b component). The following Phase 1b portion of the trial aims to test the safety and tolerability of the combination treatment using a two cohort approach with cohort 1 receiving CV301 plus Nivolumab and cohort 2 receiving CV301 plus Pembrolizumab.
A study to describe and evaluate patient characteristics and clinical outcomes in Subjects with diagnosed Non Small Lung Cell Cancer in Sweden, Norway and Denmark.
Angiogenesis, the development of new blood vessels, plays an important role in the disease development and tumor growth in many solid organ malignancies. Bevacizumab was the first anti-angiogenic drug to be approved in solid tumors and has shown advantageous activity with multiple tumor types. However, the responses from Bevacizumab are often transient due to the tumor's manipulative abilities to circumvent the usual pathways to find salvage pathways instead. Nintedanib has demonstrated anti-tumor activity in non-squamous non-small cell lung cancer, colorectal cancer, ovarian cancer, and renal cell cancer. The combination of Bevacizumab and Nintedanib are being proposed to target the tumor's manipulation processes to generate alternate pathways for angiogenesis thus creating a potential benefit to delay tumor growth.
The purpose of this study is to assess the safety, tolerability, pharmacokinetics (PK) and efficacy of three doses of pembrolizumab (MK-3475) in adult Chinese participants with locally advanced or metastatic non-small-cell lung cancer (NSCLC). Cycle 1 is 28 days long; subsequent cycles are 21 days long.