View clinical trials related to Lung Neoplasms.
Filter by:This is a global, multicenter, 2-part, open-label phase 1b and single-arm phase 2 study designed to evaluate the safety and efficacy of AMG 479 in combination with paclitaxel and carboplatin for the first-line treatment of advanced squamous non-small cell lung carcinoma.
A clinical study to investigate the maximum tolerated dose of Vandetanib and concurrent WBRT in patients with NSCLC and brain metastases. All patients will receive WBRT, 10 fractions of 3 Gy. Patients will start 7 days prior to start of radiation treatment with Vandetanib. Total treatment time with Vandetanib is 3 weeks (21 days). Patients will have the opportunity to continue Vandetanib until progression at a dose of 300 mg. This multi-centre study will be conducted in a minimum of 9 patients and a maximum of 18 patients at 3 sites.
The purpose of this study is to assess the 2-month progression-free survival in patients with advanced or metastatic, non-squamous cell lung cancer treated with weekly low dose docetaxel in combination with a biologic dose of sorafenib.
Lung cancer is the leading cause of cancer death in the UK, leading to 34 000 deaths each year (22% of cancer deaths). Non-small cell lung cancer (NSCLC) is the most common histology, accounting for approximately 80% of cases and most present with advanced, stage IIIb or IV disease. The recommended treatment for advanced disease is a doublet platinum-based chemotherapy, although the survival benefits are modest. Even among those fit enough for chemotherapy, the response rate is only 20-40%, and median survival averages 9-10 months with the newer platinum-containing chemotherapy regimen (Schiller et al, 2002; Rudd et al, 2005; Lee et al, 2007). Only 11% of patients went on to survive 2 years when treated with the newer gemcitabine/carboplatin regimen established by the London Lung Cancer Group (Rudd et al, 2005; Lee et al, 2007). New strategies are needed to further improve the prognosis of this disease.
According to the Cancer Atlas, lung cancer remains the major cancer among the 10.9 million new cases of cancer diagnosed annually worldwide. The mortality from lung cancer is greater than the combined mortality for breast, colon and prostate cancer combined. Most patients with metastatic non-small-cell lung cancer (NSCLC) are treated with platinum-based chemotherapy regimens. The drug combination of cisplatin and docetaxel is one of the commonly used regimens in metastatic NSCLC. Although both drugs are powerful disruptors of cell growth, positive therapeutic response rates to this therapy remain low for NSCLC patients, from 25% to 30%. While adding new biologics such as bevacizumab to the current treatment standard can improve treatment response, median survival for advanced NSCLC patients receiving this type of treatment remains low at under 12 months. Research studies have demonstrated that Vitamin D, and it's signaling pathways are important biological targets in cancer therapeutics. In vitro and in vivo calcitriol (1, 25 dihydroxycholecalciferol) is antiproliferative and potentiates the antitumor effects of cytotoxic agents (e.g. taxanes, platinum analogues). We have shown that administration of high doses of calcitriol and cisplatin is feasible and associated with complete tumor regressions in dogs with spontaneous cancers. Calcitriol has also shown to be synergistic with docetaxel both in preclinical as well as in a recent phase II clinical trial in prostate cancer. Based on these results and other supporting data from studies indicating that calcitriol functions as a potent and well tolerated anti-tumor agent when used in combination with drugs likes cisplatin and docetaxel, we hypothesize that introducing calcitriol into treatment regimes for NSCLC patients has the potential to demonstrably improve treatment response for these patients. The overall goals for conducting this phase I/II clinical study will be (1) to determine the maximum tolerated dose (MTD) and dose limiting toxicities (DLT) of calcitriol in combination with cisplatin/docetaxel in patients with advanced NSCLC, (2) to assess the response rates of patients with advanced NSCLC to the combination of calcitriol with cisplatin/docetaxel, (3) to evaluate the pharmacokinetics (PK) of administering calcitriol intravenously at the MTD, and (4) to evaluate correlations between calcitriol PK and changes on specific coding regions of the gene associated with calcitriol breakdown.
The purpose of the study was to determine whether the combination of aflibercept, pemetrexed and cisplatin is safe and effective in treating non-small cell lung cancer (NSCLC).
The study of the vaccine will proceed in two stages after the method of Simon (102). In the first stage, 15 patients will be accrued and treated. If two or fewer objective immunologic responses occur, the study will be terminated. If 3 or more responses are observed, the study will proceed to the second stage, accruing an additional 22 patients. If the second stage is complete and a total of 9 or more immunologic responses are observed among the 37 patients treated, the treatment response rate for the vaccine will be considered high enough to warrant further study. Conversely, if the evaluation of the vaccine concludes at the first stage, or if 8 or fewer total immunologic responses occur after completing the second stage, the vaccine will not be considered for further study.
On this study patients will receive dasatinib, a targeted therapy, for advanced NSCLC that has progressed after previous therapy. Safety and response to dasatinib will be assessed. Fresh frozen tumor tissue must be available for genomics analysis prior to initiating dasatinib therapy. A biopsy must be obtained after any prior chemotherapy. If fresh frozen tumor tissue is not available, a biopsy will be required to participate in this trial.
To determine the more effective dosing sequence of intermittent erlotinib and docetaxel for treating patients with the diagnosis of advanced Non-Small-Lung-Cancer
The purpose of this study is to determine whether p53 vaccination followed by high dose chemotherapy and autologous HCT and T cell therapy significantly induces immune responses resulting in 1-year survival greater that the current 70%.