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NCT04739800
This phase II trial studies the possible benefits of treatment with different combinations of the drugs durvalumab, olaparib and cediranib vs. the usual treatment in patients with ovarian, primary peritoneal, or fallopian tube cancer that has come back after a period of improvement with platinum therapy (recurrent platinum resistant). Usual treatment is the type of treatment most patients with this condition receive if they are not part of a clinical study. Combination therapies studied in this trial include MEDI4736 (durvalumab) plus olaparib and cediranib, durvalumab and cediranib, or olaparib and cediranib. Monoclonal antibodies, such as durvalumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumors cells to grow and spread. Olaparib is an inhibitor of PARP, an enzyme that helps repair deoxyribonucleic acid (DNA) when it becomes damaged. Blocking PARP may help keep cancer cells from repairing their damaged DNA, causing them to die. PARP inhibitors are a type of targeted therapy. Cediranib may stop the growth of tumor cells by blocking VEGF (an enzyme). needed for cell growth. Giving different combinations of durvalumab, olaparib and cediranib may work better in increasing the duration of time that the cancer does not progress compared to the usual treatment.
NCT02523014
This phase II trial studies how well vismodegib, focal adhesion kinase (FAK) inhibitor GSK2256098, and capivasertib work in treating patients with meningioma that is growing, spreading, or getting worse (progressive). Vismodegib, FAK inhibitor GSK2256098, capivasertib, and abemaciclib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.
NCT00026312
This partially randomized phase III trial studies isotretinoin with dinutuximab, aldesleukin, and sargramostim to see how well it works compared to isotretinoin alone following stem cell transplant in treating patients with neuroblastoma. Drugs used in chemotherapy, such as isotretinoin, 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. Monoclonal antibodies, such as dinutuximab, may block tumor growth in different ways by targeting certain cells. Aldesleukin and sargramostim may stimulate a person's white blood cells to kill cancer cells. It is not yet known if chemotherapy is more effective with or without dinutuximab, aldesleukin, and sargramostim following stem cell transplant in treating neuroblastoma.
NCT06826196
The goal of this first-in-human clinical trial is to learn if ALD-102 Solution is safe and well tolerated following injections in the scalp in subjects with alopecia areata. The study will also learn about the effect of ALD-102 on hair regrowth in treatment areas. The researchers will compare the effects of ALD-102 Solution (drug) to placebo (saline solution that contains no drug) or an untreated area. Study participants will have treatment areas selected on the scalp to receive ALD-102 Solution (drug), placebo (saline solution) or to remain untreated. Injections will occur once every 4 weeks for a treatment period of 8 weeks.
NCT04192591
To compile real-world outcomes of the Superion™ IDS in routine clinical practice.
NCT06109779
A global study to assess the efficacy and tolerability of rilvegostomig compared to placebo in combination with investigator's choice of chemotherapy in participants with BTC after surgical resection with curative intent.
NCT06745076
This phase II trial tests how well personalized reduction of chemotherapy (nivolumab, doxorubicin, vinblastine and dacarbazine) based on circulating tumor deoxyribonucleic acid (ctDNA) evaluation works for treating patients with Hodgkin lymphoma that may have spread from where it first started to nearby tissue, lymph nodes, or distant parts of the body (advanced). Chemotherapy drugs, such as nivolumab, doxorubicin, vinblastine and dacarbazine, 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. Many types of tumors tend to lose cells or release different types of cellular products including their DNA, which is referred to as ctDNA, into the bloodstream before changes can be seen on scans. Health care providers can measure the level of ctDNA in blood or other bodily fluids and, based on the result, assign patients to a reduced number of chemotherapy treatments or the standard number of chemotherapy treatments. Using ctDNA to assign a personalized reduction of chemotherapy may be effective in treating patients with advanced Hodgkin lymphoma.
NCT05837663
Demonstrate the relationship between dd-cfDNA levels and HLA antibodies in blood transplant recipient and Demonstrate the Molecular Microscope® (MMDx) Diagnostic System results in indication and protocol biopsies from lung transplants.
NCT05987449
WP44714 is a Phase I/II, open-label, non-randomized, global, multicenter trial consisting of two parts: * Part 1 is a multiple-ascending dose (MAD) study in adult and adolescent male participants with severe or moderate hemophilia A with or without factor VIII (FVIII) inhibitors. * Part 2 is a multiple-dose study in pediatric male participants with severe or moderate hemophilia A with or without FVIII inhibitors. The overall aim of the study is to investigate the safety, tolerability, pharmacokinetics, pharmacodynamics, immunogenicity, and efficacy of NXT007.
NCT06819007
This clinical trial is designed to evaluate the efficacy and safety of T-DXd in combination with bevacizumab versus bevacizumab monotherapy as first-line maintenance therapy, in participants with human epidermal growth factor 2 (HER2)-expressing (immunohistochemistry \[IHC\] 3+/2+/1+) advanced high-grade epithelial ovarian cancer.
NCT04900818
This is an open label, multi-center, multiple dose Phase 1 study to evaluate the safety, tolerability, MTD PK, and PD of TJ033721 (givastomig) in subjects with advanced or metastatic solid tumors.
NCT04127006
The overall goal of this project funded by the Foundation Fighting Blindness is to characterize the natural history of disease progression in patients with EYS mutations in order to accelerate the development of outcome measures for clinical trials.
NCT03541889
The purpose of this study is to find new tests that could help determine if the newly infused bone marrow cells are growing well after bone marrow transplantation or if new bone marrow cells are needed. The Investigator will use FLT imaging, an investigational imaging test, and collect blood samples to investigate whether the cells are growing well.
NCT03506373
This phase II trial studies the side effects of ibrutinib citrate when given with ixazomib, and determines how well they work in treating patients with Waldenstrom macroglobulinemia that is newly diagnosed, has come back (recurrent) or does not respond to treatment (refractory). Enzyme inhibitors, such as ibrutinib and ixazomib citrate, may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth.
NCT04411823
Researchers are trying to identify predictors for gastroesophageal reflux disease after sleeve gastrectomy.
NCT06287463
This is a multicenter clinical trial to evaluate DCC-3084 alone or in combination with other cancer therapies in participants with advanced cancers. Module A will enroll participants with advanced/metastatic solid tumors. Additional modules exploring other cancers may be added to the master protocol at a later date. Each module will be conducted in 2 parts: Part 1 (Dose Escalation) and Part 2 (Dose Expansion).
NCT06543381
This phase I trial tests the safety, side effects, and effectiveness of olutasidenib in preventing the return of disease (relapse) in patients who have undergone donor (allogeneic) hematopoietic cell transplant for acute myeloid leukemia (AML), myelodysplastic syndrome (MDS), or chronic myelomonocytic leukemia (CMML) carrying an IDH1 mutation. Olutasidenib is in a class of medications called IDH1 inhibitors. It works by slowing or stopping the growth of cancer cells. Giving olutasidenib may be safe, tolerable and/or effective in preventing relapse in patients with IDH1 mutated AML, MDS or CMML after an allogeneic hematopoietic cell transplant.
NCT06067828
This study will investigate the effect of Budesonide, Glycopyrronium, and Formoterol Fumarate (BGF) metered dose inhaler (MDI) compared with Placebo MDI, and Budesonide and Formoterol Fumarate (BFF) MDI on isotime inspiratory capacity (IC) and exercise endurance time.
NCT05672108
This phase II trial evaluates how well transarterial chemoembolization (TACE) works for treating patients with non-small cell lung cancer or lung metastases. TACE is a minimally invasive procedure that involves injecting chemotherapy directly into an artery that supplies blood to tumors, and then blocking off the blood supply to the tumors. Mitomycin (chemotherapy), Lipiodol (drug carrier), and Embospheres (small plastic beads that block off the artery) are injected into the tumor-feeding artery. This traps the chemotherapy inside the tumor and also cuts off the tumor\'s blood supply. As a result, the tumor is exposed to a high dose of chemotherapy, and is also deprived of nutrients and oxygen. TACE can be effective at controlling or stopping the growth of lung tumors.
NCT04222972
This is an international, randomized, open-label, Phase 3 study designed to evaluate whether the potent and selective RET inhibitor, pralsetinib, improves outcomes when compared to a platinum chemotherapy-based regimen chosen by the Investigator from a list of standard of care treatments, as measured primarily by progression free survival (PFS), for participants with RET fusion-positive metastatic NSCLC who have not previously received systemic anticancer therapy for metastatic disease.