Carboplatin

111 clinical trials involving this therapy/drug

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Descriptions are automatically translated with AI assistance. Always verify details in the original on ClinicalTrials.gov and consult your treating physician.

The purpose of this platform study is to evaluate the safety, tolerability, pharmacokinetics (PK), and preliminary antitumor activity of novel RAS(ON) inhibitors as a monotherapy or combined with Standard(s) of Care (SOC) or with each other. The first four subprotocols include the following: Subprotocol A: RMC-6291 +/- RMC-6236 + SOC Subprotocol B: RMC-6236 + SOC Subprotocol C: RMC-9805 +/- RMC-6236 + SOC Subprotocol D: RMC-9805

RecruitingPhase IIILung cancer

This phase III trial compares standard therapy given after surgery (adjuvant) to standard therapy given before and after surgery (perioperative) in treating patients with stage II-IIIB non-small cell lung cancer (NSCLC) that can be removed by surgery (resectable). The usual approach for patients with resectable NSCLC is chemotherapy and/or immunotherapy before surgery, after surgery, or both before and after surgery. This study is being done to find out which approach is better at treating patients with lung cancer. Treatment will be administered according to the current standard of care at the time of enrollment. Chemotherapy options may include cisplatin, carboplatin, pemetrexed, gemcitabine, docetaxel, and vinorelbine at standard doses according to the treating physician. Cisplatin is in a class of medications known as platinum-containing compounds. It works by killing, stopping or slowing the growth of tumor cells. Carboplatin is in a class of medications known as platinum-containing compounds. It works in a way similar to the anticancer drug cisplatin, but may be better tolerated than cisplatin. Carboplatin works by killing, stopping or slowing the growth of tumor cells. Pemetrexed is in a class of medications called antifolate antineoplastic agents. It works by stopping cells from using folic acid to make deoxyribonucleic acid (DNA) and may kill tumor cells. Gemcitabine is a chemotherapy drug that blocks the cells from making DNA and may kill tumor cells. Docetaxel is in a class of medications called taxanes. It stops tumor cells from growing and dividing and may kill them. Other chemotherapy drugs, such as vinorelbine, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading . Immunotherapy with monoclonal antibodies, such as nivolumab, pembrolizumab, and atezolizumab, may help the body's immune system attack the tumor, and may interfere with the ability of tumor cells to grow and spread. Starting treatment with chemotherapy and immunotherapy prior to surgery and continuing treatment after surgery may be a more effective treatment option than adjuvant therapy alone in patients with stage II-IIIB resectable NSCLC.

RecruitingPhase ILung cancer

This phase I trial finds out the best dose, possible benefits and/or side effects of papaverine when given together with chemoradiation intreating patients with stage II-III non-small cell lung cancer. Papaverine targets mitochondrial metabolism to decrease the cancer growth process. Giving papaverine with chemoradiation may work best to treat patients with non-small cell lung cancer.

This is an open-label phase 2 study to evaluate the pCR rate in patients diagnosed with HER2 positive breast cancer treated on an adaptive clinical trial design. Tumors will undergo testing using a novel molecular phosphoprotein-based biomarker assay, HER2 Activation Response Predictive Signature (HARPS) to identify HARPS-positive breast cancers. To assess 3-year invasive disease-free survival (iDFS) in patients with HARPS-positive and HARPS-negative HER2-positive breast cancer. To correlate changes in ctDNA with treatment outcomes in patients with HARPS-positive and HARPS-negative HER2-positive breast cancer. To understand the changes in quality of life (QOL) measure in patients with HARPS-positive HER2-positive breast cancer treated using an adaptive neoadjuvant trial design.

Active, not recruitingPhase IIIBreast cancerHER2 positiveEarly / localized

This randomized, controlled, open-label, multicenter study will evaluate the safety and efficacy of KN026 in combination with HB1801 ± Carboplatin as neoadjuvant therapy in patients with early or locally advanced HER2-positive breast cancer.

This is a randomized, controlled, open-label, multicenter, Phase Ⅲ clinical study designed to compare the efficacy and safety of KN026 combined with HB1801 and chemotherapy versus trastuzumab combined with pertuzumab and chemotherapy as adjuvant therapy in participants with HER2-positive breast cancer.

RecruitingPhase IIIFemale onlyBreast cancerHormone receptor positive (HR+)

This study will evaluate the efficacy and safety of docetaxel plus carboplatin (TCb) regimen compared with conventional chemotherapy regimen (epirubicin plus cyclophosphamide followed by docetaxel, EC-T) regimen as adjuvant chemotherapy in patients with early-stage high-risk estrogen receptor (ER) positive and human epidermal growth factor receptor 2 (HER2) negative (ER+/HER2-) breast cancer.

RecruitingNot applicableFemale onlyBreast cancerHER2 positiveEarly / localized

This study is a prospective, open, multi-center, single arm trial. The treatment group will receive six cycles of docetaxel, carboplatin combined with Inetetamab and Pyrotinib before surgery. By focusing on tpCR (ypT0/is, ypN0) evaluated by pathology, the efficacy of docetaxel, carboplatin combined with Inetetamab and Pyrotinib in the preoperative treatment of locally advanced HER2-positive breast cancer will be evaluated. During long-term follow-up, event-free survival (EFS), disease-free survival (DFS), distant metastasis-free survival (DDFS), overall survival (OS), central nervous system disease-free survival (CNSDFS) under this treatment regimen will be evaluated, and the efficacy-related biomarkers will be explored. The cardiotoxicity of Inetetamab and Pyrotinib in the treatment of breast cancer is also be evaluated.

The purpose of this study is to learn whether clinical response (the amount a tumor shrinks based on imaging or tumor measurements obtained by physical exam) predicts pathologic response (the amount of tumor remaining when surgery is performed) in participants with breast cancer who are receiving chemotherapy prior to surgery.

The goal of this clinical trial is to evaluate the efficacy and safety of SHR-A1811 plus pertuzumab in combination with or without albumin-paclitaxel neoadjuvant therapy for early or locally advanced HER2-positive breast cancer. The main questions it aims to answer are: * Does the pCR of SHR-A1811 plus pertuzumab with or without albumin-paclitaxel improve compared to the current standard of treatment? * Is the safety of SHR-A1811 plus pertuzumab with or without albumin-paclitaxel better compared to the current standard of treatment? Researchers will compare SHR-A1811+pertuzumab or SHR-A1811+pertuzumab+albumin-paclitaxel to TCbHP to see if SHR-A1811 plus pertuzumab with or without albumin-paclitaxel works to treat early or locally advanced HER2-positive breast cancer. Subjects will be randomly assigned 1:1:1 to: * cohort 1:SHR-A1811 combined with pertuzumab for 6 cycles; * cohort 2:SHR-A1811 combined with pertuzumab and albumin-paclitaxel for 6 cycles; * cohort 3:TCbHP (docetaxel, carboplatin, trastuzumab and pertuzumab) for 6 cycles. There may be higher treatment burden for participants in this trial compared to their standard of care. Participants will attend regular visits during the study at a hospital or clinic and may require frequent medical assessments, blood tests, questionnaires, and scans.

RecruitingPhase IIFemale onlyBreast cancerHER2 positiveEarly / localized

This prospective, response-guided phase II study investigates individualized neoadjuvant treatment strategies for patients with human epidermal growth factor receptor 2 (HER2)-positive early breast cancer. After receiving neoadjuvant dual-HER2-targeted therapy with chemotherapy, patients are evaluated for their treatment response. Those achieving an adequate response continue the therapy, whereas patients with a suboptimal response transition to an intensified investigational regimen incorporating novel targeted agents. This adaptive approach aims to optimize pathologic response, minimize unnecessary toxicity, and explore more effective treatment options for individuals with insufficient benefit from conventional neoadjuvant therapy.

The goal of this clinical trial is to compare trastuzumab deruxtecan (T-DXd) to standard preoperative treatment in patients with non-metastatic HER2-positive breast cancer. The main questions it aims to answer are: * is T-DXd more effective than standard preoperative treatment? * are there markers in the tumor or blood of patients with HER2-positive breast cancer that can help us predict response to treatment? Participants will be divided into two groups, where one group will be treated with three courses of T-DXd and the other group will be treated with three courses standard of care treatment. Thereafter, further treatment will be decided by the tumor's molecular subtype.

RecruitingPhase I/IIOther cancers

Specific proteins found in tumors help the tumors spread and grow. People with solid tumors often have a protein called TROP2 in their tumor. ASP2998 is being developed to attach to TROP2 and then attack the tumor cells in people with solid tumors. ASP2998 will either be given by itself, or given together with one or more of standard cancer treatments pembrolizumab, carboplatin, and enfortumab vedotin. This is an early development study to collect information about ASP2998 in people with solid tumors. In this study ASP2998 will be given to humans for the first time. Early development studies are mostly about safety, but also to find the most suitable dose. Other aims are to check if ASP2998 shows signs of reducing tumor growth, to learn how the body processes ASP2998, and to check if there are changes either in the TROP2 protein or in the immune system. The main aim of the study is to check the safety of ASP2998 when given by itself and given with the standard cancer treatments, and how well it is tolerated. People in this study will be adults with locally advanced, unresectable or metastatic solid tumors. Locally advanced means the cancer has spread to nearby tissue. Unresectable means the cancer cannot be removed by surgery. Metastatic means the cancer has spread to other parts of the body. People's cancer came back or became worse after previous treatment or they couldn't receive treatment. Some people who had previously refused treatment may be able to take part. This will depend on which study treatment they receive. People will either have cancer in the bladder lining (urothelial cancer), non-small cell lung cancer (NSCLC), gastric cancer or cancer where the food pipe joins the stomach (gastroesophageal cancer, or GEJ), or certain types of breast cancer. People cannot take part if the cancer cells have spread to the thin tissue covering the brain and spinal cord (leptomeningeal disease), have symptoms of cancer in the brain or nervous system, or need medicines to suppress their immune system. In this study, ASP2998 will be given to humans for the first time. ASP2998 will either be given by itself, or given together with one or more of standard cancer treatments pembrolizumab, carboplatin and enfortumab vedotin. The standard cancer treatment given will depend on which cancer people have. The study will have 2 parts. In Part 1, different small groups of people will receive lower to higher doses of ASP2998 given by itself or together with one or more of the standard cancer treatments. Any medical problems will be recorded for each dose. This is done to find suitable doses of ASP2998 to use in Part 2. In Part 2, other different small groups will receive suitable doses of ASP2998 worked out from Part 1. ASP2998 will either be given by itself or given together with one or more of the standard cancer treatments. This part will also check how each type of cancer responds to ASP2998 when given by itself or together with the standard cancer treatments. In both parts of the study, safety checks will be done at each visit, and the doctors will continue to check for medical problems throughout the study. ASP2998 will be given slowly through a tube into a vein (infusion). People will continue to receive ASP2998 until their cancer gets worse, they can't tolerate ASP2998, they start other cancer treatment, they or the doctor decides the person should stop receiving ASP2998.

This study will test the safety, including side effects, and determine the characteristics of a drug called Rina-S in participants with solid tumors. Participants will have solid tumor cancer that has spread through the body (metastatic) or cannot be removed with surgery (unresectable).

This phase II trial tests how well radiation therapy with pembrolizumab and chemotherapy (paclitaxel or nab-paclitaxel or carboplatin and gemcitabine) works in treating patients with PD-L1 positive triple negative breast cancer that has spread from where it first started (primary site) to other places in the body (metastatic). Radiation therapy uses high energy x-rays, particles, or radioactive seeds to kill tumor cells and shrink tumors. Immunotherapy with monoclonal antibodies, such as pembrolizumab, may help the body's immune system attack the tumor, and may interfere with the ability of tumor cells to grow and spread. Paclitaxel is in a class of medications called antimicrotubule agents. It stops cancer cells from growing and dividing and may kill them. Nab-paclitaxel is an albumin-stabilized nanoparticle formulation of paclitaxel which may have fewer side effects and work better than other forms of paclitaxel. Carboplatin is in a class of medications known as platinum-containing compounds. It works by killing, stopping or slowing the growth of cancer cells. Gemcitabine is a chemotherapy drug that blocks the cells from making DNA and may kill cancer cells. High dose radiation therapy with pembrolizumab and chemotherapy may effective in treating patients with PD-L1 positive metastatic triple negative breast cancer.

The purpose of this study is to measure the safety and efficacy of LY4175408 in participants with selected advanced cancer. In addition, this study will evaluate how much LY4175408 gets into the bloodstream, how it is broken down, and how long it takes the body to get rid of it. Participation could last up to 4 years.

This phase II trial studies how well nab-paclitaxel, durvalumab, and tremelimumab with or without personalized synthetic long peptide vaccine (neoantigen vaccine) works in treating patients with triple negative breast cancer that has spread from where it first started (primary site) to other places in the body (metastatic). Chemotherapy drugs, such as nab-paclitaxel, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Immunotherapy with monoclonal antibodies, such as durvalumab and tremelimumab, may induce changes in body's immune system and may interfere with the ability of tumor cells to grow and spread. Vaccines made from peptides may help the body build an effective immune response to kill tumor cells. It is not yet known whether giving nab-paclitaxel, durvalumab, and tremelimumab with or without neoantigen vaccine will work better in treating patients with triple negative breast cancer.

RecruitingPhase IIFemale onlyBreast cancerTriple negative (TNBC)

Background: Triple-negative breast cancer (TNBC) is an aggressive type of breast cancer with limited treatment options. Research suggests that using High-Intensity Focused Ultrasound (HIFU) to destroy the tumor and/or PD-1 inhibitor drugs to activate the immune system before starting chemotherapy may improve treatment effectiveness. This study aims to investigate this new approach. Objective: To evaluate the effectiveness and safety of using HIFU, with or without a PD-1 inhibitor (Sintilimab), before and during combination chemotherapy in patients with early-stage TNBC. The primary goal is to determine if this strategy can increase the rate of pathological complete response (pCR). Study Design: This is a single-center, Phase II clinical study. Approximately 40 participants with Stage II-III TNBC will be enrolled and assigned to one of two groups (cohorts) without randomization: Cohort A: Receives HIFU treatment. Two weeks later, begins standard chemotherapy (Abraxane and carboplatin) combined with the PD-1 inhibitor Sintilimab for 6 cycles. Cohort B: Receives HIFU treatment combined with a single dose of the PD-1 inhibitor Sintilimab. Two weeks later, begins the same 6 cycles of chemotherapy (Abraxane and carboplatin) combined with Sintilimab. Main Measures: The primary measure is the rate of pathological complete response (pCR), defined as the absence of invasive cancer in the breast and lymph nodes after surgery following the completion of neoadjuvant therapy. Other important measures include: The ability of the treatment to activate the immune system (measured by changes in CD8+ T cells or IFN-γ). The percentage of patients whose tumors shrink significantly (Objective Response Rate). How long patients live without their cancer getting worse (Event-Free Survival). The rate of patients who can undergo breast-conserving surgery. The frequency and severity of side effects.

RecruitingPhase IIFemale onlyBreast cancerTriple negative (TNBC)

Triple-negative breast cancer (TNBC) is as sociated with shorter overall survival than other breast cancer subtypes, despite the use of curative-intent anthracycline- and taxane-based systemic chemotherapy. Neoadjuvant therapy is now also recognized as the standard treatment for patients with high-risk TNBC. The Keynote-522 study demonstrated that the application of pembrolizumab has raised the pathological Complete Response (pCR) rate in TNBC to over 60%, but nearly 40% of patients still do not achieve pCR. How to further improve the pCR rate in TNBC patients has become a hot topic of current research. Posaconazole is an antibiotic used to prevent invasive Aspergillus and Candida infections and to treat oropharyngeal candidiasis. Our preclinical studies have found that posaconazole can inhibit immune cell-mediated steroidogenesis to restrict TNBC tumor progression. The investigators design and begin a a prospective randomized controlled clinical study to explore the effectiveness of posaconazole in the neoadjuvant treatment of TNBC.

The purpose of this study is to establish a prospective, single-center platform research based on clinical subtypes to explore precision neoadjuvant therapy in patients with operable breast cancer who met the indications for neoadjuvant chemotherapy and by the update of basic translational research in the center, especially the refinement of typing, the discovery of new targets and the development of novel targeted drugs, verified the effectiveness of new targeted drugs in neoadjuvant therapy.

This is a Phase II, single-arm, open label study to evaluate Olaparib plus Pembrolizumab following platinum-based chemotherapy plus Pembrolizumab as neoadjuvant therapy for germline BRCA (gBRCA) 1/2 mutated triple negative breast cancer (TNBC). Pembrolizumab in combination with weekly paclitaxel and carboplatin (treatment 1) is followed by Pembrolizumab in combination with Olaparib (treatment 2) in neoadjuvant setting and Pembrolizumab in combination with Olaparib in adjuvant setting will be studied

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