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Showing 1-10 of 28 trials for Pancreatic-carcinoma
Recruiting

Identify microRNAs in Cachexia in Pancreatic Carcinoma

Oklahoma · Oklahoma City, OK

The purpose of this study is to determine the proportion of pancreatic patients who experience weight loss and cachexia, and to identify any differences in the genes between patient groups.

Recruiting

A Phase II Nationwide, Telemedicine Study of Pemigatinib in Adult Patients With Advanced or Metastatic Pancreas Cancer With FGFR Genetic Alterations

Ohio · Columbus, OH

This phase II study evaluates how well pemigatinib works for the treatment of adult patients with pancreatic cancer that has spread from where it first started to nearby tissue, lymph nodes, or distant parts of the body (advanced) or has spread from where it first started to other places in the body (metastatic) and that have abnormal changes (alterations) in the fibroblast growth factor receptor (FGFR) gene. FGFR genes are genes that, when altered, can lead to and promote the growth of cancer in patients. Researchers want to test if using pemigatinib can block the function of these abnormal FGFR genes and prevent the tumor from growing and whether treatment can help improve overall quality of life.

Recruiting

Lanreotide Versus Placebo Before Surgery to Prevent a Surgical Complication Called a Pancreatic Fistula

California · Delaware

This phase III trial compares the effect of using lanreotide before surgery to surgery alone in preventing pancreatic fistulas in patients with pancreatic cancer or a pancreatic lesion that could become cancerous. Lanreotide, a type of somatostatin analog similar to somatostatin (a hormone made by the body), and is used to treat certain types of gastroenteropancreatic neuroendocrine tumors, and carcinoid syndrome. It may help stop the body from making extra amounts of certain hormones, including growth hormone, insulin, glucagon, and hormones that affect digestion. It may also help keep certain types of tumor cells from growing. Patients with pancreatic cancer or pancreatic lesions may undergo surgery to remove parts of the pancreas, also called a distal pancreatectomy. Patients may experience complications after surgery, including pancreatic fistulas. A pancreatic fistula occurs when there is a small leak from the pancreas, causing fluids to collect. This can often lead to infection and other problems. Giving lanreotide before undergoing distal pancreatectomy may be more effective than surgery alone in preventing the development of a pancreatic fistula in patients with pancreatic cancer or a pancreatic lesion that could become cancerous.

Recruiting

Pancreatic Cancer Detection Consortium (PCDC) Prospective Cohorts

Minnesota · Rochester, MN

This study evaluates individuals without pancreatic cancer, but who have been determined to be at higher-than-average lifetime risk of developing pancreatic cancer to help detect pancreatic cancer or other cancers at an earlier time when they might be more easily treated and cured.

Recruiting

Use Of Indocyanine Green In Pancreas Surgery

Oregon · Portland, OR

This study evaluates the use of indocyanine green to predict postoperative pancreatic leaks in patients undergoing transection of the pancreas.

Recruiting

Testing the Safety of the Anti-Cancer Drugs Durvalumab and Olaparib During Radiation Therapy for Locally Advanced Unresectable Pancreatic Cancer

California · Irvine, CA

This phase I trial tests the safety and tolerability of olaparib in combination with durvalumab and radiation therapy in patients with pancreatic cancer that has spread to nearby tissue or lymph nodes (locally advanced) and cannot be removed by surgery (unresectable). 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. Immunotherapy with monoclonal antibodies, such as durvalumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Radiation therapy uses high energy x-rays, particles, or radioactive seeds to kill cancer cells and shrink tumors. The combination of targeted therapy with olaparib, immunotherapy with durvalumab and radiation therapy may stimulate an anti-tumor immune response and promote tumor control in locally advanced unresectable pancreatic cancer.

Recruiting

Pilot Study of Pancreatic Cancer Screening

California · San Francisco, CA

This study investigates how often abnormal findings from routine magnetic resonance imaging occur in people with genetic mutations in BReast CAncer gene. (BRCA), ataxia telangiectasia mutated gene (ATM), or PALB2 screened for pancreatic cancer. This study may lead to a greater understanding of cancer and potentially, improvements in cancer screening and treatment.

Recruiting

Hyperthermic Intraperitoneal Chemotherapy for the Treatment of Pancreatic Cancer and Peritoneal Metastasis

Minnesota · Rochester, MN

This phase II trial studies the effects of hyperthermic intraperitoneal chemotherapy (HIPEC) in treating patients with pancreatic cancer that has spread to the internal abdominal area (peritoneal metastasis). Chemotherapy drugs, such as nab-paclitaxel and cisplatin, 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. HIPEC involves "heated" chemotherapy that is placed directly in the abdomen through laparoscopic instruments, instead of through an intravenous injection. This study may help doctors determine how safe and effective HIPEC work in treating patient with pancreatic cancer.

Recruiting

Determining the Biodistribution of an Imaging Tracer (68Ga-FAPi-46) in Patients With Solid Tumors or Hematologic Cancers

California · Los Angeles, CA

This phase I trial is evaluating a new imaging tracer (68Ga-FAPi-46) with positron emission tomography (PET)/computed tomography (CT) to determine where and to which degree the tracer (68Ga-FAPi-46) accumulates in normal and cancer tissues (the biodistribution) in patients with solid tumors or hematologic (blood) cancers. PET is an established imaging technique that utilizes small amounts of radioactivity attached to very minimal amounts of tracer, in the case of this research, 68Ga-FAPi-46. Because some cancers take up 68Ga-FAPi-46, it can be seen with PET. CT utilizes x-rays that traverse the body from the outside. CT images provide an exact outline of organs and potential inflammatory tissue where it occurs in a patient's body. Combining a PET scan with a CT scan can help make the image easier to interpret. PET/CT scans are hybrid scanners that combine both modalities into a single scan during the same examination.

Recruiting

The Vanguard Study: Testing a New Way to Screen for Cancer

North Carolina · Chapel Hill, NC

The Vanguard Study is a feasibility study to explore several aspects of evaluating multi-cancer detection (MCD) tests in a future definitive randomized controlled trial. An MCD test measures markers in the blood in order to screen for multiple cancers simultaneously. There is a need to understand how MCDs may work as cancer screening tools. The goal of cancer screening is to reduce the burden of cancer by identifying cancers before they show symptoms or signs, when treatment is likely to be most effective. In this study, adults aged 45-75 without cancer will be randomly assigned to one of 3 groups: 2 separate MCD test groups or a control group. These two MCD tests will not be compared to each other but will be compared to cancers detected in the control group. This study will provide early information on how well MCD tests perform as cancer screening tools. It will also help researchers understand how patients and their doctors make decisions about their care when the MCD test result comes back as normal (negative) or abnormal (positive).