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Pancreatic Neoplasms clinical trials

View clinical trials related to Pancreatic Neoplasms.

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NCT ID: NCT05759923 Recruiting - Clinical trials for Metastatic Renal Cell Carcinoma

First-in-human Phase I Study to Evaluate Safety, Tolerability and Antineoplastic Activity of OATD-02 in Patients With Selected Advanced and/or Metastatic Solid Tumours

Start date: January 26, 2023
Phase: Phase 1
Study type: Interventional

The goal of this clinical trial is to learn if the OATD-02 administration (orally) in monotherapy is safe and has the pharmacodynamic potential to restore and enhance tumour responses to immunotherapy through increased arginine levels or intrinsic anti-tumour activity in participants with advanced metastatic colorectal cancer, ovarian cancer, renal cancer or pancreatic cancer.

NCT ID: NCT05751850 Recruiting - Clinical trials for First-line Treatment of Advanced Pancreatic Cancer

HR070803 in Combination With Oxaliplatin, 5-FU/LV Versus AG for First-line Treatment of Advanced Pancreatic Cancer

Start date: June 13, 2023
Phase: Phase 3
Study type: Interventional

The purpose of this study is to look at the efficacy and safety of HR070803 in combination with 5 fluorouracil/leucovorin (5FU/LV) plus oxaliplatin compared to nab-paclitaxel + gemcitabine treatment in improving the overall survival of patients not previously treated for metastatic pancreatic cancer.

NCT ID: NCT05745415 Completed - Pancreatic Neoplasm Clinical Trials

Cancer Stem Cell Specific Aptamer's Ability to Detect Blood Circulating Cancer Stem Cells and Its Role as a Predictor of Prognosis in Pancreatic Cancer

Start date: March 29, 2018
Phase:
Study type: Observational

The treatment performance of pancreatic cancer has not changed significantly over the past 20 years and is still less than 10%. In addition, 80-90% of pancreatic cancer patients are found to be already advanced at the time of diagnosis, and it is the best malignant tumor in the human body with a 5-year survival rate of less than 10% and a median survival period of less than 1 year. However, early diagnosis of pancreatic cancer is still difficult, and there is no effective treatment other than surgery, so the increase in long-term survival rate over the past 20 years has been insignificant or stagnant. The response rate to anticancer drug treatment after surgery or anticancer drug when surgery is not possible is only around 20%, so it is very urgent to discover new biomarkers in predicting drug resistance and recurrence after surgery and predicting prognosis in advance. Minimally non-invasive diagnostic techniques are very important to detect and track cancer progression in the clinic. In particular, histological diagnosis and analysis have limitations in carcinomas, such as pancreatic cancer, which are small and distant, making it difficult to obtain tissue samples. CA 19-9, a prognostic marker for existing pancreatic cancer, 1) has low specificity for early diagnosis of pancreas, 2) is not detected in lewis A, B antibody-negative patients, and 3) shows false positive in cases with cholangitis at the same time. Because it has many disadvantages, the development of prognostic biomarkers in blood is urgently needed. Recently, a study has been reported that the presence or absence of detection of circulating tumor cells is directly related to the prognosis of pancreatic cancer patients, and can be used for monitoring the patient's treatment response and for recurrence after surgery. In particular, the process of cancer metastasis consists of epithelial-to-mesenchymal transition and migration of cancer cells into the blood, and the existence of cancer stem cells is very important for metastasis and drug treatment resistance. Eventually, it is known to cause pancreatic cancer metastasis and recurrence. Cancer stem cells have the ability to self-renew, the capability of developing, multiple cell lineages, and the potential of extensive proliferation, and the ability to detect cancer stem cells in the blood is important in pancreatic cancer patients who are at high risk of metastasis and recurrence. It is a non-invasive screening tool. Comparatively evaluate the treatment response and prognosis of pancreatic cancer patients according to the characteristics and subtypes of circulating cancer cells.

NCT ID: NCT05744219 Not yet recruiting - Surgery Clinical Trials

Improved Recovery by Iron Following Surgery With Blood Loss, the IRIS-trial

IRIS
Start date: August 1, 2023
Phase: Phase 3
Study type: Interventional

The aim of the study is to investigate if iv iron formulation improve recovery after surgery with blood loss. Post-operative anaemia is a common debilitating condition after major surgery due to a combination of preoperative iron deficiency anaemia (IDA) and per-operative blood loss. Median blood loss following hepatopancreatobiliary (HPB) and complex aortic surgery typically range between 500-1000 ml. Bioavailability of iron may be a rate limiting factor in erythropoiesis in anaemia secondary to blood loss. For the IRIS trial, it is hypothesized that intravenously (iv) administered Ferric Carboxymaltose after a per-operative blood loss of 400-4000 ml, improves post-operative recovery and reduces the RBC transfusion. Patients scheduled for elective HPB surgery or complex aortic surgery will be screened for eligibility and recruited into the study. By the end of the surgical procedure, if blood loss is estimated to 400-4000 ml, the patient is randomized 1:1 to iv 1000 mg Ferric Carboxymaltose or placebo. The primary endpoint is a composite of death, number of RBC transfusions, post-operative severe anemia (Hb <80 g/L) and FACT-An Quality of life (QoL) five weeks after surgery, assessed by win ratio. The trial will also examine effects on; a) levels of Hb; b) markers of erythropoiesis and iron bioavailability; c) post-operative complications; d) post-operative recovery; e) performance status; f) subgroups based on type of surgery and degree of anemia and iron deficiency; g) re-admissions; h) long term outcome based on patient medical records and i) how post-operative recovery differs between those with low (<400 ml), high (400-4000 ml) and very high (>4000 ml) per-operative blood loss. Recruitment will continue until 338 patients are randomized or 304 have completed the five week follow up The coordinating center of the trial is the Department of Surgery at Uppsala University Hospital. Participating sites are also Linköping University Hospital and Lund University Hospital, all in Sweden. Other sites may be added.

NCT ID: NCT05743049 Recruiting - Pancreas Cancer Clinical Trials

Collection of Circulating Biomarkers in Pancreatic Cancer

Start date: February 27, 2023
Phase:
Study type: Observational

This protocol will involve collection of blood samples from patients with a diagnosis of pancreatic adenocarcinoma for evaluation of circulating biomarkers.

NCT ID: NCT05740111 Enrolling by invitation - Clinical trials for Hereditary Pancreatic Cancer

The PREPAIRD Study: Personalized Surveillance for Early Detection of Pancreatic Cancer in High Risk Individuals

PREPAIRD
Start date: September 1, 2022
Phase: N/A
Study type: Interventional

The objective of this national and multidisciplinary project is to establish and evaluate a personalized surveillance program (SP) for early diagnosis of pancreatic cancer (PC) and its precursors in individuals with a hereditary predisposition to the disease (High RIsk Individuals (HRI)). Patients who either carry a germline mutation in a PC susceptibility gene (CDKN2A, STK11, TP53, PRSS1), or have a strong family history of PC, will be enrolled through their genetics clinic at the university hospitals in Oslo, Bergen, Trondheim and Tromsø. Surveillance consists of annual MRI, assessment of blood glucose and lipid levels, new onset diabetes (NOD) and unintentional weight loss. Blood samples will be drawn for ctDNA-analysis (circulating tumor DNA) and the IMMrayTM PanCan-d test (a novel microarray-based diagnostic test for PC) at baseline and in those who develop lesions. The psychological burden and cost-benefit of the SP will be analyzed. The study addresses an unmet need for the care of HRI in Norway, and is expected to improve PC prognosis. It will be the first to provide evidence on the combined value of a panel of blood-borne biomarkers in surveillance, and provide morphological and molecular data on PC and (non)-neoplastic pancreatic changes in HRI.

NCT ID: NCT05737953 Recruiting - Clinical trials for Pancreatic Neoplasms

Construction of Molecular Diagnostic Marker Model for Pancreatic Cystic Tumors Based on Pancreatic Cystic Fluid Samples

Start date: July 13, 2022
Phase:
Study type: Observational

The goal of this observational study is to test in patients with cystic tumor of pancreas. The main questions it aims to answer are: Screening of molecular diagnostic markers for pancreatic cystic tumors by cfDNA methylation sequencing of pancreatic cystic fluid and proteomic assays to distinguish benign from malignant and mucinous/non-mucinous, correlate with pathological features, and find molecular features associated with the degree of malignancy. Participants will Provide post-operative cyst fluid specimens.

NCT ID: NCT05737615 Recruiting - Pancreatic Cancer Clinical Trials

PET Imaging Using 64Cu-Tz-SarAr and hu5B1-TCO in People With Pancreatic, Colorectal, Bladder Cancer or Cancers With Elevated CA19.9

Start date: February 10, 2023
Phase: Phase 1
Study type: Interventional

The purpose of this study is to find the highest safe dose of hu5B1-TCO and the best dosing schedule of hu5B1-TCO and 64Cu-Tz-SarAr for finding cancer cells that are CA19-9 positive. This study will also help to find out how much radiation the body is exposed to when 64Cu-Tz-SarAr is used, and provide information on the way the body absorbs, distributes, and gets rid of 64Cu-Tz-SarAr.

NCT ID: NCT05736731 Recruiting - Cancer Clinical Trials

A Study to Evaluate the Safety and Efficacy of A2B530, a Logic-gated CAR T, in Subjects With Solid Tumors That Express CEA and Have Lost HLA-A*02 Expression

EVEREST-1
Start date: April 28, 2023
Phase: Phase 1/Phase 2
Study type: Interventional

The goal of this study is to test A2B530,an autologous logic-gated Tmod™ CAR T-cell product in subjects with solid tumors including colorectal cancer (CRC), pancreatic cancer (PANC), non-small cell lung cancer (NSCLC), and other solid tumors that express CEA and have lost HLA-A*02 expression. The main questions this study aims to answer are: - Phase 1: What is the maximum or recommended dose of A2B530 that is safe for patients - Phase 2: Does the recommended dose of A2B530 kill the solid tumor cells and protect the patient's healthy cells Participants will be required to perform study procedures and assessments, and will also receive the following study treatments: - Enrollment and Apheresis in BASECAMP-1 (NCT04981119) - Preconditioning Lymphodepletion (PCLD) Regimen - A2B530 Tmod CAR T cells at the assigned dose

NCT ID: NCT05733000 Recruiting - Clinical trials for Advanced Malignant Solid Neoplasm

CPI-613 (Devimistat) in Combination With Hydroxychloroquine and 5-fluorouracil or Gemcitabine in Treating Patients With Advanced Chemorefractory Solid Tumors

Start date: March 8, 2023
Phase: Phase 2
Study type: Interventional

This phase II trial tests how well CPI-613 (devimistat) in combination with hydroxychloroquine (HCQ) and 5-fluorouracil (5-FU) or gemcitabine works in patients with solid tumors that may have spread from where they first started to nearby tissue, lymph nodes, or distant parts of the body (advanced) or that have not responded to chemotherapy medications (chemorefractory). Metabolism is how the cells in the body use molecules (carbohydrates, fats, and proteins) from food to get the energy they need to grow, reproduce and stay healthy. Tumor cells, however, do this process differently as they use more molecules (glucose, a type of carbohydrate) to make the energy they need to grow and spread. CPI-613 works by blocking the creation of the energy that tumor cells need to survive, grow in the body and make more tumor cells. When the energy production they need is blocked, the tumor cells can no longer survive. Hydroxychloroquine is a drug used to treat malaria and rheumatoid arthritis and may also improve the immune system in a way that tumors may be better controlled. Fluorouracil is in a class of medications called antimetabolites. It works by killing fast-growing abnormal cells. Gemcitabine is a chemotherapy drug that blocks the cells from making DNA and may kill tumor cells. CPI-613 (devimistat) in combination with hydroxychloroquine and 5-fluorouracil or gemcitabine may work to better treat advanced solid tumors.