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Pancreatic Neoplasms clinical trials

View clinical trials related to Pancreatic Neoplasms.

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NCT ID: NCT03685370 Recruiting - Pancreatic Cancer Clinical Trials

PERiX: Comparison of Efficacy Between Placement of Epidural Catheters X-ray Guided and LOS Technique

PERiX
Start date: March 1, 2017
Phase: N/A
Study type: Interventional

The use of epidural catheters for postoperative analgesia in pancreatic surgery is recommended by the guidelines of the ERAS society. Some studies claim it may expose to hemodynamic alterations that may compromise outcome and increase postoperative complications, attributable to a malfunction of the catheter itself, often linked to a bad positioning, since this is usually positioned with LOS technique. Our hypothesis is that a positioning made using the radiographic guide the day before the intervention can significantly reduce the number of catheter's dysfunctions.

NCT ID: NCT03682744 Withdrawn - Breast Cancer Clinical Trials

CAR-T Intraperitoneal Infusions for CEA-Expressing Adenocarcinoma Peritoneal Metastases or Malignant Ascites (IPC)

Start date: September 13, 2018
Phase: Phase 1
Study type: Interventional

This is an open-label, dose-escalation, phase I trial of the safety and efficacy of anti-CEA intraperitoneal CAR-T infusions for treatment in patients with CEA-expressing adenocarcinoma peritoneal metastases or malignant ascites.

NCT ID: NCT03682289 Recruiting - Endometrial Cancer Clinical Trials

Ceralasertib (AZD6738) Alone and in Combination With Olaparib or Durvalumab in Patients With Solid Tumors

Start date: January 17, 2019
Phase: Phase 2
Study type: Interventional

This phase II trial studies how well Ataxia telangiectasia and Rad3-related (ATR) kinase inhibitor AZD6738 works alone or in combination with olaparib or durvalumab in treating participants with renal cell carcinoma (RCC), urothelial carcinoma, all pancreatic cancers, endometrial cancer, and other solid tumors excluding clear cell ovarian cancer that have spread to nearby tissue or lymph nodes or other parts of the body. ATR kinase inhibitor AZD6738 and olaparib or durvalumab may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. It is not known if giving ATR kinase inhibitor AZD6738 with or without olaparib or durvalumab may work better in treating participants with solid tumors.

NCT ID: NCT03681951 Terminated - Clinical trials for Neoplasms, Pancreatic

First-time-in-human (FTIH) Study of GSK3145095 Alone and in Combination With Other Anticancer Agents in Adults With Advanced Solid Tumors

Start date: November 16, 2018
Phase: Phase 2
Study type: Interventional

In an unbiased CRISPR screen, RIPK1 was identified as a top gene contributing to immunotherapy resistance. In addition, RIPK1 has been reported to drive pancreatic oncogenesis. In murine models, inhibition of RIPK1 kinase activity in the pancreatic tumor microenvironment leads to the replacement of tumor-permissive myeloid infiltrates with innate cells that promote an effective antitumor response by adaptive cells. The investigators hypothesize that inhibition of RIPK1 in human pancreatic cancer subjects will modulate the immune infiltrate to sensitize tumors to checkpoint blockade.

NCT ID: NCT03679910 Recruiting - Pancreas Cancer Clinical Trials

Evaluation of CEMIP in Pancreatic Cancer

Start date: January 1, 2019
Phase:
Study type: Observational

Pancreatic cancer (PC) is one of the most lethal diseases among all cancer types. The diagnosis of PC is usually based on radiology or invasive endoscopic techniques. Various types of tumor markers are used for diagnosing PC. The tumor markers carbohydrate antigen19-9 (CA 19-9) and carcinoembryonic antigen (CEA) are the ones most closely tied to PC. These tests are more often used in people already diagnosed with pancreatic cancer to help tell if treatment is working or if the cancer is progressing . Cell migration inducing protein (CEMIP) has been reported to be associated with early detection, cancer cell migration, invasion, and poor prognosis. Aim of the work: - To Estimate the level of CEMIP, CA19-9 and CEA in pancreatic cancer patients. - To evaluate the clinical utility of serum CEMIP, CA19-9 and CEA in pancreatic cancer patients in comparison with healthy controls and their relation to cancer staging and histopathological types. - To detect the correlation between CEMIP, CA-19-9 and CEA.

NCT ID: NCT03678883 Active, not recruiting - Cancer Clinical Trials

9-ING-41 in Patients With Advanced Cancers

Start date: January 4, 2019
Phase: Phase 2
Study type: Interventional

GSK-3β is a potentially important therapeutic target in human malignancies. The Actuate 1801 Phase 1/2 study is designed to evaluate the safety and efficacy of 9-ING-41, a potent GSK-3β inhibitor, as a single agent and in combination with cytotoxic agents, in patients with refractory cancers.

NCT ID: NCT03673423 Recruiting - Clinical trials for Pancreatic Adenocarcinoma

Evaluation of the Interobserver Agreement on the Resectability Status of Patients With a Pancreatic Cancer

OBTCPAN
Start date: September 5, 2018
Phase:
Study type: Observational

Assess the degree of vascular involvement is crucial in the diagnostic and therapeutic work-up of pancreatic cancer. NCCN resectability classification is used to stratify patients (in resectable, borderline resectable and non resectable) and is based on contrast-enhanced CT scan images. Unfortunately evaluation of imaging tests may rely on some degree of subjective interpretation by observers implying a fundamental variation in patient's treatments and an irreproducibility of different center study results. This is a multicenter diagnostic study on interobserver agreement on the resectability of pancreatic cancer based upon NCCN criteria. The primary aim of the study will be the assessment of interobserver variability to define vascular invasion and resectability status on CT scans (according to the last version of the NCCN Classification). One hundred and thirty eight consecutive patients, able to produce an informed consent, from 18 years of age, with a non-metastatic pancreatic adenocarcinoma assessed by a contrast-enhanced high-quality CT scan will be enrolled. 69 CT scan studies provided by the centers involved (High volume for pancreatic surgery) will be randomly selected from a pool of 138 of the patients that meet the inclusion criteria. Each study will be independently reviewed by a senior radiologist and a senior surgeon of each center, blinded to patient's clinical history and CT scan report, using NCCN definition of respectability status. A CFR will be filled during the review and send to the study coordinator. The data will be than centrally analyzed to asses interobserver agreement The enrolment phase will last 6 months and the whole study will last 8 months.

NCT ID: NCT03668418 Recruiting - Pancreatic Cancer Clinical Trials

Xenotransplantation of Primary Cancer Samples in Zebrafish Embryos

xenoZ
Start date: June 1, 2018
Phase:
Study type: Observational

The study consists in a co-clinical trial by using zebrafish embryos. Specifically, an observational prospective clinical trial on patients operated of epato-biliar-pancreatic cancers and gastro-intestinal cancers undergoing a chemotherapy treatment will be run concurrently to an animal trial on zebrafish embryos xenotransplanted with patient cancer cells in order to demonstrate that zebrafish model is able to predict the therapeutic regimen with the best efficacy for each patient.

NCT ID: NCT03665571 Recruiting - Clinical trials for Pancreatic Neoplasms

Evaluation of Killing Activity of Expanded Natural Killer Cells From Blood in Patients With Pancreatic Cancer

Start date: July 2016
Phase:
Study type: Observational [Patient Registry]

Pancreatic cancer, one of the deadliest epithelial malignancies, has a 5-year survival rate of only about 8%. The mortality rate has decreased slightly, but the incidence rate has been steadily increasing, and it is predicted to be the second leading cause of cancer mortality in 2030. Early diagnosis of pancreatic cancer and the development of innovative therapies are needed, and various basic and clinical studies based on pancreatic cancer biology are underway. Recently, studies on the effect of natural killer (NK) cells on cancer progression and the development of therapeutic agents using them have been actively conducted. NK cells are a component of innate lymphoid cells, accounting for approximately 5-15% of total peripheral blood mononuclear cells (PBMC).

NCT ID: NCT03662412 Recruiting - Pancreatic Cancer Clinical Trials

Study of Sirolimus in Patients With Advanced Pancreatic Cancer

Start date: June 1, 2018
Phase: Phase 1/Phase 2
Study type: Interventional

Pancreatic cancer is a highly malignant tumor of the digestive system.In China, the annual mortality/morbidity of pancreatic cancer is as high as 0.88:1, and the morbidity and mortality are still on the rise. The 5-year survival rate of pancreatic cancer patients in the United States is only 8%, among which more than 50% of patients have distant metastasis at the time of diagnosis, and the 5-year survival rate of advanced patients with distant metastasis is as low as 3%, with extremely poor prognosis. Currently there is no standard treatment for the first - and second-line treatment resistant and postoperative recurrent patients to further prolong their survival. mammilian target of rapamycin (mTOR) is a very important serine/threonine protein kinase involved in the regulation of energy metabolism, cell growth, angiogenesis and other cellular biological processes.Rapamycin (sirolimus) is a selective inhibitor of mTOR kinase, which can inhibit the activation and proliferation of T lymphocytes to inhibit the immune response.Currently, mTOR inhibitors are also widely used in tumor treatment. Several studies have been performed to evaluate the efficacy of sirolimus in some solid tumors, and encouraging results are obtained. However, the existing studies on mTOR inhibitors and pancreatic cancer treatment are mostly phase I trials, with little evaluation of the efficacy. Therefore, the phase II clinical trial of rapamycin in the treatment of pancreatic cancer is very necessary. In preclinical studies, investigators found that rapamycin can effectively inhibit the angiogenesis of liver Cancer led by tumor-associated macrophages (TAM), thereby inhibiting the progression of liver Cancer.In vitro experiments on pancreatic cancer showed that rapamycin can directly inhibit the proliferation of pancreatic cancer cells.After the treatment with rapamycin in the homologous xenograft tumor model of mice, it was found that the tumor growth of mice was significantly inhibited. Further analysis suggested that rapamycin not only directly inhibits tumor proliferation, but also reverses the immune suppressive microenvironment of pancreatic cancer and promotes the T-cell-mediated anti-tumor immune response.Preclinical findings suggest that rapamycin may benefit survival in pancreatic cancer patients, which makes us very interested in the efficacy of rapamycin in patients with advanced pancreatic cancer.Therefore, investigators designed this trial to evaluate the clinical efficacy of rapamycin in patients with second-line resistance and recurrence who lacked a standard treatment regimen.