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Pancreatic Neoplasms clinical trials

View clinical trials related to Pancreatic Neoplasms.

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NCT ID: NCT02718859 Completed - Pancreatic Cancer Clinical Trials

Combination of Irreversible Electroporation and NK Immunotherapy for Advanced Pancreatic Cancer

Start date: March 1, 2016
Phase: Phase 1/Phase 2
Study type: Interventional

The purpose of this study is to evaluate the safety and efficacy of the combined therapy using irreversible electroporation(IRE)and nature killer(NK) cells for advanced pancreatic cancer.

NCT ID: NCT02717091 Active, not recruiting - Clinical trials for Borderline Resectable Pancreatic Cancer

Neoadjuvant FOLFIRINOX or Nab-paclitaxel With Gemcitabine for Borderline Resectable Pancreatic Cancer

Start date: July 2015
Phase: Phase 2
Study type: Interventional

The aim of this study is to clarify the efficacy and safety of neoadjuvant FOLFIRINOX and nab-paclitaxel + gemcitabine for borderline resectable pancreatic cancer.

NCT ID: NCT02716207 Completed - Pancreatic Tumor Clinical Trials

Phase ǀ Study on Pancreatic Cancer Treated by CyberKnife

Start date: March 2016
Phase: N/A
Study type: Interventional

The maximum tolerated dose on locally advanced unresectable pancreatic tumor treated with CyberKnife SBRT will be evaluated.

NCT ID: NCT02713529 Completed - Colorectal Cancer Clinical Trials

Safety and Efficacy Study of AMG 820 and Pembrolizumab Combination in Select Advanced Solid Tumor Cancer

Start date: April 14, 2016
Phase: Phase 1/Phase 2
Study type: Interventional

A multi-center Phase 1b/2 study testing the combination of AMG 820 and pembrolizumab in subjects with select advanced solid tumors.

NCT ID: NCT02707328 Terminated - Pancreatic Cancer Clinical Trials

Study To Establish Maximum Tolerated Dose (MTD) of Cyberknife in Patients With Un-Resectable Pancreas Cancer (TL002)

Start date: January 2015
Phase: Phase 1
Study type: Interventional

This study is looking at determining the maximum safe dose of CyberKnife when given with chemotherapy for unresectable adenocarcinoma of the pancreas.

NCT ID: NCT02707315 Recruiting - Pancreatic Cancer Clinical Trials

A Study of Pre-Operative Cyberknife in Patients With Potentially Resectable Pancreas Cancer

Start date: January 2013
Phase: Phase 0
Study type: Interventional

This study is evaluating stereotactic radiosurgery (CyberKnife) plus chemotherapy for the treatment of potentially resectable adenocarcinoma of the pancreas

NCT ID: NCT02707159 Completed - Clinical trials for Metastatic Pancreatic Cancer

Circulating Tumor Cells as Tools for Therapy Response in Nab-paclitaxel Treated Metastatic Pancreatic Cancer Patients

PACT-ACT-v6
Start date: November 2014
Phase: Phase 2
Study type: Interventional

The majority patients diagnosed with pancreatic cancer have metastatic disease at the time of diagnosis. The prognosis is extremely poor with a 5-year survival rate of less than 5%. Treatment with chemotherapy can improve efficacy, but still the median progression-free survival in patients receiving nab-paclitaxel and gemcitabine is only 5,5 months and median overall survival is less than one year. There is a urgent need for tools for predicting the efficacy of the treatment. The current trial aims at investigating the biomarker potential of circulating tumor cells (CTCs) in metastatic pancreatic cancer patients treated by gemcitabine and nab-paclitaxel.

NCT ID: NCT02706782 Recruiting - Pancreatic Cancer Clinical Trials

A Study of Mesothelin Redirected Autologous T Cells for Advanced Pancreatic Carcinoma

meso-CART
Start date: March 2016
Phase: Phase 1
Study type: Interventional

Pancreatic carcinoma typically has a high recurrence rate and very poor prognosis. Surgery is the best choice for the treatment of pancreatic cancer, but for those advanced pancreatic cancer patients,when surgery is not available,chemotherapy combined with radiation therapy or interventional therapy is commonly used in the treatment,but the prolonging survival effect is not obvious. And now, some clinical researchers use CAR-T cells in the treatment of pancreatic carcinoma, according to the existing results, therapeutic effects are not as good as expecting. One of the most likely reasons is that they continued to use the intravenous infusing of CART cells to patients, when the T cells into the blood circulation, will result in decreased tumor activity and more potential adverse effects. We believe that a suitable TAA targeted-CAR-T cells will be an effective way to treat cancer, as long as the pathway of the cell infused to the body can not only improve the drug concentration of the tumor site but reduce the potential off-target side effects. In order to achieve this goal, it is probably the best choice to use vascular intervention to mediate CAR-T cells infusion. Mesothelin is a cell-surface antigen implicated in tumor invasion, which is highly expressed in pancreatic carcinoma but low-level expressed in mesothelia. We design a 2nd CART cells targeted with mesothelin, and use vascular intervention mediated CAR-T infusion to patients. We hope deliver anti-mesothelin CART cells locally can reducing the side effects while enhancing the antitumor affect by more CART cells accumulate in tumor sites while less can reach normal mesothelial tissue.

NCT ID: NCT02705651 Not yet recruiting - Clinical trials for Pancreatic Neuroendocrine Tumors in MEN1

Non-functioning Pancreatic Neuroendocrine Tumors in MEN1: Somatostatin Analogs Versus NO Treatment

SANO
Start date: December 2019
Phase: Phase 3
Study type: Interventional

A.Background More than 90% of patients with multiple endocrine neoplasia type 1 (MEN1) develop multiple pancreatic neuroendocrine tumors (pNETs). These tumors are the most common cause for premature death in MEN1. While functioning pNETs must be treated to reduce or cure hormonal excess, the procedures for non-functioning pNETs are yet under discussion. Treatment ranges from watchful waiting to subtotal and total pancreatectomy. The latter may represent an "overtreatment", resulting in general complications and diabetic metabolic status. The effect of somatostatin analogues (SAs) has shown promising results with regard to progression of non-functioning duodeno-pancreatic NETs. Treatment with SAs is highly safe and effective, resulting in long-time suppression of tumor growth. B. Aim In this study of MEN1 patients with non-functioning pNETs, the benefits of somatostatin analogs" (SAs; group 1) compared to "no treatment" (group 2) will be analyzed with regard to progression (tumor growth; development of new [functioning and non-functioning] neuroendocrine tumors and regional/distant metastasis). C. Implementation Patients will either receive Somatostatin Analogs (SAs) or no treatment. The observation period will be 60 months. The increase of tumor size and development of new tumors or metastasis will be monitored.

NCT ID: NCT02705196 Recruiting - Pancreatic Cancer Clinical Trials

LOAd703 Oncolytic Virus Therapy for Pancreatic Cancer

Start date: November 2016
Phase: Phase 1/Phase 2
Study type: Interventional

The purpose of this study is to see if LOAd703 (an oncolytic adenovirus) can be safely given to patients with pancreatic cancer. The study will also evaluate whether or not intratumoral injection of LOAd703 will support current standard of care treatment to reduce the size of the tumor and improve survival of the patients. Adenoviruses are known as the "common cold" virus and most individuals have had multiple infections during their lifetime. Oncolytic adenoviruses are adenoviruses that are modified so they cannot multiply and spread (known as replicating) properly in normal (e.g. healthy) cells, but instead, they infect and replicate very well in cancer cells. This strong replication leads to the death of the cancer cell. Oncolytic viruses have been evaluated in multiple clinical trials for cancer treatment during the past decade and been proven safe. It is common to have a fever the first day or two after virus injection since the immune system will react to the virus infection. The immune system can also kill cancer cells but to do so it needs to be properly stimulated. Oncolytic viruses alone do not seem to be strong enough to activate clinically relevant anti-cancer responses. However, it is thought that if additional immune system stimulators are added to the oncolytic viruses they may be able to result in clinical relevant antic-cancer responses. LOAd703 is an oncolytic adenovirus that has been modified to include additional immune system stimulators. Specifically, genes that stimulate the immune system have been added to the oncolytic adenovirus. Once the oncolytic adenovirus infects the cancer cells, the genes will be expressed, resulting in activation of the immune response so it can attack and kill cancer cells. In this study, LOAd703 will be given by intratumoral injections. It will be given in addition to standard of care treatment with gemcitabine and nab-paclitaxel +/- the anti-PD-L1 antibody atezolizumab. Because this is an experimental therapy, there will be extra visits for disease monitoring and samples accordingly to the detailed information below. The LOAd703 is an investigational agent not approved by the FDA.