View clinical trials related to Neoplasms.
Filter by:The experimental [18F]FLT-PET/CT will be completed before initiation of chemotherapy at either diagnosis or initiation of salvage chemotherapy at relapse and prior to the third cycle (or month) of chemotherapy. Laboratory analysis and correlative radiology, as directed per clinical care based on the primary diagnosis, are required within 30 days of the baseline [18F]FLT PET/CT. Follow-up will comprise 24 months of standard practice treatment and follow up.
This phase II trial studies how well brigatinib works in treating patients with ALK and ROS1 gene alterations and solid cancers that have spread to nearby tissue and lymph nodes or other places in the body. Brigatinib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.
This trial studies how well Uber health intervention works in eliminating transportation barriers for disadvantaged patients with cancer that has spread to nearby tissue, lymph nodes, or other places in the body, undergoing ambulatory palliative radiotherapy. Uber health intervention provides free transportation to disadvantaged patients and may reduce the amount of missed radiotherapy appointments, patient anxiety, and the amount of unplanned emergency department visits, as well as improve quality of life.
This phase I trial studies the side effects and best dose of rivogenlecleucel, and how well it works, in treating patients with blood cancer that has come back (recurrent) after stem cell transplant. Donor T-cell therapy (rivogenlecleucel) may help control transplant-related infections after stem cell transplant.
This phase I/II trial studies the side effects and how well copanlisib works when given together with fulvestrant in treating patients with estrogen receptor positive (ER+) and human epidermal growth factor receptor 2 negative (HER2-) breast cancer that has spread to other places in the body (advanced) and progressing after prior treatment. HER2 and ER are two types of proteins called receptors that can affect the growth of breast cancer cells. Additionally, investigators hope to learn from this study if tumor genetic information is important for predicting whether this type of breast cancer will respond to fulvestrant and copanlisib. Copanlisib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Hormone therapy using fulvestrant may fight breast cancer by blocking the use of estrogen by the tumor cells. Giving copanlisib and fulvestrant may work better in treating patients with ER+ and HER2- breast cancer compared to fulvestrant alone.
In this research study, the investigators are looking to see if the circulating tumor DNA (genetic material), also known as ctDNA, in the blood will help them predict whether the participant's cancer will come back.
This phase II trial studies how well flotetuzumab works in treating patients with CD123 positive blood cancer that has come back or does not respond to treatment. Immunotherapy with monoclonal antibodies, such as flotetuzumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread.
The purpose of this study is to ascertain the effect of yoga interventions on radiation-related fatigue, and stress in cancer patients with stage I and II solid tumors.
The purpose of this first-in-human study of CX-188 is to characterize the safety, tolerability, pharmacokinetics (PK), and antitumor activity of CX-188 in adult subjects with metastatic or advanced unresectable solid tumors that progressed on standard therapy: PROCLAIM: PRObody Clinical Assessment in Man CX-188 clinical trial 001
Adoptive T-cell therapy is a therapeutic approach that aims to generate an anti-tumor T-cell immune response by infusing a cancer subjects own T-cells obtained by leukapheresis, engineered and expanded in-vitro to express a tumor specific T-cell receptor. NY-ESO-1 and LAGE-1a antigens are tumor-associated proteins that have been found in several tumor types, including synovial sarcoma. This is an open-label study to evaluate the safety and efficacy of GSK3377794 (genetically engineered NY-ESO-1 Specific [c259] T Cells), in combination with anticancer agents including pembrolizumab in subjects with NY-ESO-1 and/or LAGE-1a positive relapsed and refractory synovial sarcoma. The study will consist of a target expression screening to determine if subjects are human leukocyte antigen (HLA)-A*02:01, HLA-A*02:05 and/or HLA-A*02:06 positive and if their tumors express NY-ESO-1 and/or LAGE-1a, followed by a leukapheresis screening phase of up to 42 days prior to leukapheresis. Eligible subjects will enter a leukapheresis phase followed by lymphodepletion phase with cyclophosphamide and fludarabine. During the treatment phase, subjects will be administered GSK3377794 on Day 1 followed by pembrolizumab infusion once every 3 weeks from Day 22 (or Week 7) for up to 2 years. There will be a long-term follow-up phase from the end of treatment phase and for up to 15 years from the date of GSK3377794 administration.