Clinical trials Below are current clinical trials.507 studies in Oncology (Medical) (open studies only). Filter this list of studies by location, status and more. Study of Pembrolizumab (MK-3475) vs Standard Therapy in Participants With Microsatellite Instability-High (MSI-H) or Mismatch Repair Deficient (dMMR) Stage IV Colorectal Carcinoma (MK-3475-177/KEYNOTE-177) Rochester, Minn., Scottsdale/Phoenix, Ariz. In this study, participants with MSI-H or dMMR advanced colorectal carcinoma will be randomly assigned to receive either pembrolizumab or the Investigator's choice of 1 of 6 standard of care (SOC) chemotherapy regimens for the treatment of advanced colorectal carcinoma. The primary study hypothesis is that pembrolizumab will prolong progression-free survival (PFS) or overall survival (OS) compared to current SOC chemotherapy. PRGN-3006 Adoptive Cellular Therapy for CD33-Positive Relapsed or Refractory AML, MRD Positive AML or Higher Risk MDS Rochester, Minn. The purpose of this study is to determine the safety and best dose of PRGN-3006 T Cells to treat relapsed/refractory Acute Myeloid Leukemia and High Risk Myelodysplastic Syndrome. A Study to Evaluate APG2575 Combined with Novel Therapeutic Regimens To Treat Subjects with Relapsed or Refractory Multiple Myeloma and Immunoglobulin Light Chain Amyloidosis Jacksonville, Fla. The purpose of this study is to evaluate the safety and tolerability, identify dose-limiting toxicities (DLT) and the maximum tolerated dose (MTD and recommended phase II dose (RP2D of APG2575 in combination with Pomalidomide/dexamethasone (Pd) in patients with relapsed/refractory (R/R) multiple myeloma (MM), or immunoglobulin light chain (AL) amyloidosis, and to evaluate the safety and tolerability, identify dose-limiting toxicities (DLT) and the maximum tolerated dose (MTD and recommended phase II dose (RP2D of APG2575 in combination with Daratumumab/Lenalidomide/dexamethasone (DRd) in patients with relapsed/refractory (R/R) multiple myeloma (MM). Testing the Use of Steroids and Tyrosine Kinase Inhibitors With Blinatumomab or Chemotherapy for Newly Diagnosed BCR-ABL-Positive Acute Lymphoblastic Leukemia in Adults Rochester, Minn. This phase III trial compares the effect of usual treatment of chemotherapy and steroids and a tyrosine kinase inhibitor (TKI) to the same treatment plus blinatumomab. Blinatumomab is a Bi-specific T-Cell Engager ('BiTE') that may interfere with the ability of cancer cells to grow and spread. The information gained from this study may help researchers determine if combination therapy with steroids, TKIs, and blinatumomab work better than the standard of care. ALEX Study: A Randomized, Phase III Study Comparing Alectinib with Crizotinib in Treatment-Naive Anaplastic Lymphoma Kinase (ALK)-Positive Advanced Non-Small Cell Lung Cancer (NSCLC) Patients Scottsdale/Phoenix, Ariz. This randomized, active controlled, multicenter Phase III open-label study is designed to evaluate the efficacy and safety of alectinib compared with critozinib treatment in patients with treatment-naive ALK-positive advanced NSCLC. Patients will be randomized in a 1:1 ratio to receive either alectinib, 600 mg orally twice daily (BID), or critozinib, 250 mg orally BID. Patients will receive treatment until disease progression, unacceptable toxicity, consent withdrawal or death occurs. The study is expected to last approximately 42 months. A Study of GDC-0199 (ABT-199) Plus MabThera/Rituxan (Rituximab) Compared with Bendamustine Plus MabThera/Rituxan (Rituximab) in Patients with Relapsed or Refractory Chronic Lymphocytic Leukemia Jacksonville, Fla. This open-label, randomized study will compare the efficacy of GDC-0199 plus rituximab (GDC-0199+R) with bendamustine plus MabThera/Rituxan (Rituximab) (B+R) in patients with relapsed or resistant chronic lymphocytic leukemia. Patients will be randomized 1:1 into the two arms. Patients randomized to GDC-0199+R will be given GDC-0199 daily (oral, target dose 400 mg) and will receive 6 cycles of rituximab infused intravenously (IV) on Day 1 of each 28-day cycle (Cycle 1: 375 mg/m2; Cycles 2-6: 500 mg/m2). Patients randomized to B+R will receive 6 cycles of treatment consisting of a rituximab infusion (Cycle 1: 375 mg/m2; Cycles 2-6: 500 mg/m2) on Day 1 and bendamustine infusions (70 mg/m2) on Days 1 and 2 of each 28-day cycle. Patients in the GDC-0199+R arm will continue GDC-0199 treatment until disease progression or 2 years since treatment start, whichever comes first. Anticipated time on study is up to 5 years. A Study to Collect Clinical Data, Blood Samples, and Tissue Specimens from Patients with Metastatic Breast Cancer Rochester, Minn. The purposes of this study are (i) to obtain and study biospecimens from patients with breast cancer that has either spread out of the breast or recurred after initial treatment(s), such as surgery, chemotherapy, and/or radiation, and (ii) to collect information about patients, treatments, and the behavior of the underlying cancer. Research involving biospecimens that are linked to related medical information is one way to learn more about diseases. In this case, we seek to understand the mechanism of tumor spread and determine why people respond differently to specific cancer treatments. In general terms, scientists will study the cells, DNA, RNA, and proteins found in the tumor tissue and/or the blood to understand more about cancer and the body’s response to cancer and related treatments. Olaparib, Cediranib Maleate, and Standard Chemotherapy in Treating Patients With Small Cell Lung Cancer Jacksonville, Fla. This randomized phase II trial studies how well olaparib, cediranib maleate, and standard chemotherapy work in treating patients with small cell lung cancer. Drugs used in chemotherapy, such as carboplatin, cisplatin, and etoposide, 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. Olaparib and cediranib maleate may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Olaparib, cediranib maleate, and standard chemotherapy may work better in treating patients with small cell lung cancer. A Study to Assess a New Personalized Tool for Colorectal Cancer Peritoneal Disease Treatment Rochester, Minn. The objectives of this study are to genomically characterize patient-derived organoids (PDOs) and primary tissues from colorectal peritoneal cancer (CRC) disease, to evaluate the use of PDOs as a new personalized therapy selection tool for intraperitoneal therapy in CRC peritoneal disease, and to evaluate the use of PDOs as a new personalized therapy selection tool for systemic therapy in CRC peritoneal disease. Dynamics of Clinical Trial Discussions in Oncology to Identify Patient Barriers and Help Develop a Patient-centered Intervention to Increase Participation in Clinical Trials Rochester, Minn. The purposes of this study are to richly describe the content and dynamics of clinical trial discussions in oncology and compare the knowledge, beliefs, and attitudes of oncology patients, caregivers, and clinicians related to clinical trials, and to develop a multifaceted, patient-centered intervention for increasing patient understanding of and participation in clinical trials in oncology. Pagination Clinical studies PrevPrevious Page Go to page 4242 Go to page 4343 Go to page 4444 Go to page 4545 Go to page 4646 NextNext Page Request an appointment Expertise & rankingsResearch May 09, 2023 Share on: FacebookTwitter Mayo Clinic in Rochester, Minnesota, Mayo Clinic in Jacksonville, Florida, and Mayo Clinic in Phoenix/Scottsdale, Arizona, have been recognized among the top Cancer hospitals in the nation for 2024-2025 by U.S. News & World Report. Learn more about this top honor Oncology (Medical)DepartmenthomeSectionsOverviewConditions treatedDoctorsSpecialty groupsExpertise & rankingsClinical trialsResearchPatient storiesCosts & insuranceNews from Mayo ClinicReferrals Research: It's all about patients Show transcript for video Research: It's all about patients [MUSIC PLAYING] Joseph Sirven, M.D., Professor of Neurology, Mayo Clinic: Mayo's mission is about the patient. The patient comes first. So the mission and research here is to advance how we can best help the patient, how to make sure the patient comes first in care. So in many ways, it's a cycle. It can start with as simple as an idea worked on in a laboratory, brought to the patient bedside, and if everything goes right — and let's say it's helpful or beneficial — then brought on as a standard approach. And I think that is one of the unique characteristics of Mayo's approach to research — that patient-centeredness — that really helps to put it in its own spotlight. 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