View clinical trials related to Solid Tumors.
Filter by:The purpose of this study is to discover genetic changes associated with different cancers. With the information from this study the investigators hope to provide better ways to prevent, detect and treat many cancers. Many diseases can result from changes in a person's genetic material that causes cells to not work properly. Currently, researchers and doctors know some of the genetic changes that can cause disease, but they do not know all of the genetic changes that can cause disease. This project is designed to identify genetic changes that can cause cancer in humans. Specimens will be collected from a scheduled diagnostic or routine (i.e. blood draw for counts) procedure and may include samples from the tissue itself (surgery), bone marrow, blood, saliva, urine, spinal fluid, sputum, joint fluid, seminal fluid, ascites (a fluid that fills up in the abdomen), and/or pleural fluid (fluid in the lung cavity), to either confirm the diagnosis of cancer or to help to decide how best to treat cancer or other illness. Additionally archived tissue may be analyzed. Samples may be stored for future use in later experiments. The Department of Pathology at Rhode Island Hospital will store the samples. Information from the medical record, such as responses to treatments or family history of cancer, will be collected.
Cat's claw (Uncaria tomentosa) is a native amazonic plant that exhibits anti-inflammatory and antitumor properties. Patients and methods: This prospective phase II study will assess the effects of a 100-mg dose of a dry extract of U. tomentosa three times per day on individuals with advanced solid tumors, with no further therapeutic options and with at least 2 months life expectancy. In addition, several biochemical and inflammatory parameters will be analyzed.
The purpose of this study is to determine the maximum tolerated dose (MTD)of paclitaxel liposome injection and to compare the pharmacokinetic characters between paclitaxel liposome injection and paclitaxel injection and to value the effectiveness for cancer treatment.
This study aims to find out whether the effect of docetaxel chemotherapy may be improved by combining it with another anti-cancer drug called sunitinib, which stops blood vessels from growing (anti-angiogenic agent). Sunitinib is an oral anti-angiogenic drug that has been approved for the treatment of kidney cancer, a rare form of soft tissue tumor called gastrointestinal stromal tumor, and a rare form of cancer in the pancreas called pancreatic neuroendocrine tumor. Sunitinib is usually given continuously at a dose of 37.5mg (3 pills) daily either alone or in combination with chemotherapy. However, there are studies which have shown that the continuous administration of sunitinib may reduce chemotherapy effectiveness. On the other hand, a short course of sunitinib before each chemotherapy cycle may sensitize the tumor to chemotherapy. This treatment strategy will be used in patients with different kinds of cancers with a commonly used chemotherapy drug, docetaxel. Ths study aims to evaluate if intermittent administration of low dose sunitinib before docetaxel chemotherapy can improve the treatment response in cancer patients. Study Hypothesis: Low dose, short course sunitinib at 12.5mg daily orally for 1 week prior to chemotherapy can normalize tumor vasculature and enhance delivery of chemotherapy into the tumor, and improve treatment response and progression-free survival.
Determine alone or in combination with chemotherapy or autologous cytokine induced killer cells are effective and safe in the treatment of patients with relapsed and/or refractory solid tumors or B Cell lymphomas.
The purpose of this study is to determine whether certain genes in cancer may be abnormal. When a gene is abnormal this is called a mutation. Most mutations in cancer cells are not inherited (passed down from parents) but happen after birth in the cancer itself. Most cancers have many mutations. Some of these mutations are important for the cancer cells to survive while others are not. The goal of this study is test cancer for certain mutations using leftover tumor tissue from a previous surgery or biopsy. Participants will also be asked to provide a tube of blood cheek (also known as a buccal) swab, or a saliva sample that contains normal genes for comparison. The purpose of Part B of this study is to: Understand how genetic changes in tumor effect the chance of responding to experimental cancer treatment. Understand how the genes in the tumor change overtime in response to targeted cancer treatment.
The purpose of this study is to determine the recommended dose (RD) for further phase II studies, of the Galectin-1 inhibitor OTX008 given subcutaneously in patients with advanced solid tumors
RATIONALE: Conditioning with total body irradiation (TBI) and fludarabine, cyclophosphamide and anti-thymocyte globulin may induce the engraftment cross the immunologic barrier in the setting of HLA-haploidentical allogeneic hematopoietic cell transplantation. In addition, T-cell depletion may contribute to prevent developing severe acute graft versus host disease (GVHD) in haploidentical transplantation. PURPOSE: This phase I/II trial is to evaluate the safety and efficacy of TBI, fludarabine, cyclophosphamide and antithymocyte globulin with T-cell depleted graft from haploidentical donors in treating patients with acute leukemia and myelodysplastic syndrome.
This is a Phase 1/2, open-label, monocentric, dose-escalation study of lenalidomide in combination with cetuximab in subjects with solid tumors. The primary objective is to establish the maximum tolerated dose (MTD) of lenalidomide in combination with cetuximab in patients with solid tumors including colorectal cancer (CRC), squamous cell carcinoma of the head and neck (SCCHN) and non-small cell lung cancer (NSCLC).
The primary purpose of the Research Database is to have a comprehensive source of observational data that can be used to study HSC transplantation and cellular therapies. A secondary purpose of the Research Database is to have a comprehensive source of data to study marrow toxic injuries. Objectives: To learn more about what makes stem cell transplants and cellular therapies work well such as: - Determine how well recipients recover from their transplants or cellular therapy; - Determine how recovery after a transplant or cellular therapy can be improved; - Determine how a donor's or recipient's genetics impact recipient recovery after a transplant or cellular therapy; - Determine how access to transplant or cellular therapy for different groups of patients can be improved; - Determine how well donors recover from the collection procedures.