View clinical trials related to Pancreatic Neoplasms.
Filter by:This phase I trial studies a new imaging technique called FAPi PET/CT to determine where and to which degree the FAPI tracer (68Ga-FAPi-46) accumulate in normal and cancer tissues in patients with non-prostate cancer. The research team also want to know whether what they see on PET/CT images represents the tumor tissue being excised from the patient's body. The research team is also interested to investigate another new imaging technique called PSMA PET/CT. Participants will be invited to undergo another PET/CT scan, with the PSMA tracer (68Ga-PSMA-11). This is not required but just an option for volunteer patients. Patients who have not received an 18F-FDG PET/CT within one month of enrollment will also undergo an FDG PET/CT scan. The PET/CT scanner combines the PET and the CT scanners into a single device. This device combines the anatomic (body structure) information provided by the CT scan with the metabolic information obtained from the PET scan. PET is an established imaging technique that utilizes small amounts of radioactivity attached to very minimal amounts of, in the case of this research, 68Ga-PSMA-11 and 68Ga-FAPi, and 18F-FDG (if applicable). Because some cancers take up 68Ga-PSMA-11 and/or 68Ga-FAPi 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 where it occurs in patient's body. FAP stands for Fibroblast Activation Protein. FAP is produced by cells that surround tumors. The function of FAP is not well understood but imaging studies have shown that FAP can be detected with FAPI PET/CT. Imaging FAP with FAPI PET/CT may in the future provide additional information about various cancers. PSMA stands for Prostate Specific Membrane Antigen. This name is incorrect as PSMA is also found in many other cancers. The function of PSMA is not well understood but imaging studies have shown that PSMA can be detected with PET in many non-prostate cancers. Imaging FAP with PET/CT may in the future provide additional information about various cancers.
This clinical trial will evaluate the safety and activity of mutant KRAS G12V-specific TCR transduced T cell therapy for advanced pancreatic cancer patients who express the KRAS G12V mutation and HLA-A*11:01 allele. The theoretical basis of this study is that mutant KRAS antigen-specific TCR transduced autologous Tcells will target and kill HLA-matched mutant KRAS cancer cells but not normal cells.
Purpose: To determine the feasibility and safety of combining digoxin as a modulator of the hypoxia pathway in combination with FOLinic acid, 5-Fluorouracil, IRINotecan and OXaliplatin (FOLFIRINOX) in patients with resectable pancreatic cancer.
This is a First-in-Human Phase IA/IB/II open label dose escalation study of intravenous (IV) administration of ONC-392, a humanized anti-CTLA4 IgG1 monoclonal antibody, as single agent and in combination with pembrolizumab in participants with advanced or metastatic solid tumors and non-small cell lung cancers.
An Expanded Access Program for IMM-101 for patients with advanced pancreatic cancer.
The purpose of this study is to find the safest dose and identify any bad side effects of EGFR-BATs (bispecific antibody-armed activated T cells) for people with advanced pancreatic cancer who have already received first-line standard chemotherapy.
Phase Ia - Explore safety and establish the maximum tolerated dose (MTD)/recommended dose levels for phase Ib expansion phase of BI 905711 based on the frequency of patients experiencing dose limiting toxicities (DLTs) during the MTD evaluation period. The MTD evaluation period is defined as the first two treatment cycles (from first dose administration until the day preceding the third dose administration or end of REP in case of discontinuation before start of Cycle 3). Phase Ia - Explore pharmacokinetics/pharmacodynamics, and efficacy to guide the determination of a potentially effective dose range for phase Ib in the absence of MTD. Phase Ib - Evaluate efficacy and safety of BI 905711 at a potentially effective dose range and determine the Recommended Phase 2 Dose (RP2D)
Pancreatic cancer continues to have a poor prognosis. Many patients are diagnosed with advanced disease. In a considerable proportion of these patients, the tumor has contact with or invades into arterial blood vessels supplying the liver or bowel. Moreover, some patients have anatomical variations or Stenosis of these vessels. All such cases require a surgical reconstruction of the blood vessels upon pancreatic cancer resection in order to prevent that the liver or bowel are not sufficiently supplied with blood anymore. Performing such arterial reconstruction in one operation along with tumor resection is associated with a relevant risk of complications or even death. This trial evaluates if the approach of 'visceral debranching', i.e. surgical reconstruction of arterial blood vessels supplying the liver or bowel, prior to chemotherapy and finally tumor resection in patients with locally advanced pancreatic cancer, is feasible.
This study is aimed to evaluate difference of the 2 year recurrence free survival after pancreaticoduodenectomy for pancreatic cancer between artery-first approach and conventional procedure groups.
In this study, clinical data of patients who received 2nd-line Nab-paclitaxel plus Gemcitabine (nab-P+GEM) after progression on 1st-line FOLFIRINOX will be reviewed retrospectively.