View clinical trials related to Carcinoma, Non-Small-Cell Lung.
Filter by:A Phase 3, Open-Label, Multi-Center, Randomized Study to Investigate the Efficacy and Safety of Tislelizumab (BGB-A317) (Anti-PD1 Antibody) Combined With Platinum-Pemetrexed Versus Platinum-Pemetrexed Alone as First-line Treatment for Participants With Stage IIIB or IV Non-Squamous Non-Small Cell Lung Cancer. 45 sites will be involved in China, 320 subjects will be enrolled.
This Phase II study is to determine the efficacy of Thymosin α1 on the frequency of acute pneumonia in non-small cell lung cancer with bulky tumor.
Lung cancer patients have a poor prognosis and only around 20 % is alive after 5 years. However, for advanced non-small cell lung cancer immunotherapy has become a cornerstone of treatment. Two immunotherapeutic drugs for lung cancer have been approved in the last two years. Immunotherapy blocks the capability of cancer cells to inactivate the patient´s immune system, thus re-enabling eradication of cancer cells. In clinical trials, immunotherapy has shown superior survival and less toxicity compared to standard chemotherapy. Whether the patients are candidates for immunotherapy or not is currently based on an unprecise biomarker that poorly predicts the patients who may benefit from immunotherapy. Immunotherapy can cause severe adverse effects and is expensive. Consequently, novel biomarkers are urgently needed from a patient perspective as well as a socioeconomic perspective. The objective of the project is to investigate changes in genes and other signals in tissue and blood samples from immunotherapy treated lung cancer patients. The investigators expect to identify new biomarkers that can predict with high precision, which patients may benefit from immunotherapy. On-treatment, the investigators also aim to identify biomarkers that predict the treatment response and reveal the underlying mechanisms when cancer cells become resistant to the treatment.
The purpose of this clinical investigation is to evaluate the safety and effects of CCCR-modified NK92(CCCR-NK92)infusions in previously treated advanced non-small cell lung carcinoma(NSCLC).
Rationale: Pemetrexed is a multi-targeted folate antagonist, which is primarily indicated for the treatment of advanced non-small cell lung cancer (NSCLC) and mesothelioma. Dosing of cytotoxic agents like pemetrexed requires balancing the dual risk of sub-therapy and toxicity. Administration of pemetrexed to patients with a creatinine clearance <45 ml/min is currently not advised. Pemetrexed is dosed based on body surface area (BSA), while renal function and dose are the sole determinants for systemic exposure. This causes 3 major issues: 1. In patients with renal dysfunction, BSA-based dosing may lead to haematological toxicity 2. Patients have to discontinue treatment due to declining renal function, and are withheld effective treatment 3. Even in patients with adequate renal function (GFR >45 ml/min) treatment may be improved by individualized dosing based on renal function, resulting in less toxicity. Also, BSA-based dosing may lead to ineffective therapy in patients with above average renal function. The investigators aim to address these problems. Objective: The overall main objective is to develop a safe and effective individualized dosing regimen for pemetrexed. Study design:IMPROVE-I is a single arm phase II pharmacokinetic safety study using a Simon two stage design to assess the feasibility of renal function-based dosing of pemetrexed in renal impaired patients. Study population: IMPROVE-I includes 23 patients with NSCLC or mesothelioma with an estimated creatinine clearance <45ml/min that meet all other requirements for pemetrexed treatment. Intervention:Patients will be treated with pemetrexed, with dosing based on renal function. As a safety measure, the first dose will be calculated to 50% exposure. After administration, safety and pharmacokinetics are assessed. If tolerated well, dose escalation to reach 100% exposure is performed, including assessment of safety and pharmacokinetics. Main study endpoints: The fraction (percentage) of patients with attainment of therapeutic exposure. Nature and extent of the burden and risks associated with participation, benefit and group relatedness: The investigators consider the extra burden from participating in the planned studies limited. The extra interventions compared to routine care, consist of sampling extra blood. The pharmacokinetic assessments require placement of one additional intravenous catheter. To ensure minimal impact of study participation on daily life, a limited sampling strategy will be used. Patients may benefit from participating in IMPROVE I and -II, as they will be treated with a potentially safe and effective drug that is dosed individually, which prevents toxic exposure
Rationale: Pemetrexed is a multi-targeted folate antagonist, which is primarily indicated for the treatment of advanced non-small cell lung cancer (NSCLC) and mesothelioma. Dosing of cytotoxic agents like pemetrexed requires balancing the dual risk of sub-therapy and toxicity. Administration of pemetrexed to patients with a creatinine clearance <45 ml/min is currently not advised. Pemetrexed is dosed based on body surface area (BSA), while renal function and dose are the sole determinants for systemic exposure. This causes 3 major issues: 1. In patients with renal dysfunction, BSA-based dosing may lead to haematological toxicity 2. Patients have to discontinue treatment due to declining renal function, and are withheld effective treatment 3. Even in patients with adequate renal function (GFR >45 ml/min) treatment may be improved by individualized dosing based on renal function, resulting in less toxicity. Also, BSA-based dosing may lead to ineffective therapy in patients with above average renal function. The investigators aim to address these problems. Objective: The overall main objective is to develop a safe and effective individualized dosing regimen for pemetrexed. Study design: IMPROVE-III is an explorative microdosing study to assess the extrapolability of microdose-pharmacokinetics to the pharmacokinetics of a therapeutic dose. Study population: IMPROVE-III includes 10 patients of IMPROVE-I and/or IMPROVE-II. Intervention: patients will be administered a microdose with subsequent pharmacokinetic assessment. Main study endpoints: The predictive performance of microdosing to predict full dose pharmacokinetics
The purpose of this study is to assess the safety and effectiveness of Apatinib Combined With Vinorelbine Used for Driver Gene Mutation Negative Third-line and Third-line Posterior Advanced Non-small Cell Lung Cancer
The purpose of this trial was to evaluate the safety and efficacy of capmatinib in combination with spartalizumab in adult participants with epidermal growth factor receptor (EGFR) wild type (for exon 19 deletions and exon 21 L858R substitution mutations), anaplastic lymphoma kinase (ALK) rearrangement negative in locally advanced (stage IIIB, not eligible for definitive chemo-radiation) or metastatic (stage IV) Non-small cell lung cancer (NSCLC) after failure of platinum doublet and checkpoint inhibitor treatment.
This prospective, observational study is to assess the long-term effectiveness and safety of Atezolizumab in patients with advanced non-small cell lung cancer in clinical practice.
To investigate the impact of presence/absence or grade of radiation pneumonitis before starting IMFINZI, on the onset of interstitial lung disease (including radiation pneumonitis) after starting IMFINZI, in the real world in patients with locally advanced unresectable non-small cell lung cancer who are treated with the product as maintenance therapy after definitive chemoradiation therapy.