Treatment Trials

8 Clinical Trials for Various Conditions

Focus your search

COMPLETED
Pembrolizumab, Capecitabine, and Bevacizumab in Treating Patients With Microsatellite Stable Colorectal Cancer That Is Locally Advanced, Metastatic, or Cannot Be Removed by Surgery
Description

This phase II trial studies the side effects and best dose of capecitabine when given together with pembrolizumab and bevacizumab, and investigates how well they work in treating patients with microsatellite stable colorectal cancer that has spread to nearby tissues or lymph nodes, has spread to other places in the body, or that cannot be removed by surgery. Monoclonal antibodies, such as pembrolizumab and bevacizumab, may interfere with the ability of tumor cells to grow and spread. Drugs used in chemotherapy, such as capecitabine, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Giving capecitabine together with pembrolizumab and bevacizumab may work better in treating patients with colorectal cancer.

COMPLETED
Trametinib and Trifluridine and Tipiracil Hydrochloride in Treating Patients With Colon or Rectal Cancer That is Advanced, Metastatic, or Cannot Be Removed by Surgery
Description

This phase I trial studies the side effects and best dose of trametinib and trifluridine and tipiracil hydrochloride in treating patients with colon or rectal cancer that has spread to other places in the body (advanced/metastatic) or cannot be removed by surgery. Trametinib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Drugs used in chemotherapy, such as trifluridine and tipiracil hydrochloride, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Giving trametinib and trifluridine and tipiracil hydrochloride may prevent cancer cells from dividing and work better in treating patients with colon and rectal cancer.

TERMINATED
5-FU Based Maintenance Therapy in RAS Wild Type Metastatic Colorectal Cancer After Induction With FOLFOX Plus Panitumumab
Description

This randomized trial studies how well panitumumab, leucovorin calcium, and fluorouracil after combination chemotherapy and panitumumab induction work in treating patients with RAS wild type colorectal cancer that has spread from where it started to nearby tissue or lymph nodes or other places in the body or cannot be removed by surgery. Monoclonal antibodies, such as panitumumab, may interfere with the ability of tumor cells to grow and spread. Drugs used in chemotherapy, such as leucovorin calcium, fluorouracil, and oxaliplatin, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Giving panitumumab, leucovorin calcium, and fluorouracil after combination chemotherapy and panitumumab induction may work better in treating patients with colorectal cancer.

COMPLETED
Extended Cancer Education for Longer-Term Survivors in Primary Care for Patients With Stage I-II Breast or Prostate Cancer or Stage I-III Colorectal Cancer
Description

This study tests four different methods of educating patients about follow-up care (NCI facing forward, brochure, EXCELS website alone, EXCELS health coaching alone and EXCELS website \& health coaching combination) after cancer treatment ends. While it is known that patients need information to guide follow-up it remains unknown how to best provide this in primary care.

COMPLETED
Lower or Standard Dose Regorafenib in Treating Patients With Refractory Metastatic Colorectal Cancer
Description

This randomized phase II trial studies how well lower-dose compared to standard dose regorafenib works in treating patients with colorectal cancer that has spread from the primary site (place where it started) to other places in the body and does not respond to treatment. Regorafenib may stop the growth of colorectal cancer by blocking the growth of new blood vessels necessary for tumor growth and by blocking some of the enzymes needed for cell growth. It is not yet known whether lower-dose or standard dose regorafenib is more effective in treating patients with colorectal cancer. Clobetasol propionate is a steroid cream that is commonly used to treat a variety of skin conditions and may help prevent hand-foot skin reactions in patients receiving regorafenib.

COMPLETED
Selumetinib and Cyclosporine in Treating Patients With Advanced Solid Tumors or Advanced or Metastatic Colorectal Cancer
Description

This phase I/Ib trial studies the side effects and best dose of selumetinib when given together with cyclosporine in treating patients with solid tumors or colorectal cancer that have spread to other places in the body and cannot be cured or controlled with treatment. Selumetinib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Biological therapies, such as cyclosporine, use substances made from living organisms that may stimulate or suppress the immune system in different ways and stop tumor cells from growing. Giving selumetinib and cyclosporine may be a better treatment for solid tumors or colorectal cancer.

COMPLETED
Romidepsin in Treating Patients With Lymphoma, Chronic Lymphocytic Leukemia, or Solid Tumors With Liver Dysfunction
Description

This phase I trial studies the side effects and best dose of romidepsin in treating patients with lymphoma, chronic lymphocytic leukemia, or solid tumors with liver dysfunction. Romidepsin may stop the growth of cancer cells by entering the cancer cells and by blocking the activity of proteins that are important for the cancer's growth and survival.

Conditions
GliomaHematopoietic and Lymphoid Cell NeoplasmLymphomaMetastatic Malignant Solid NeoplasmNeuroendocrine NeoplasmRecurrent Adult Soft Tissue SarcomaRecurrent Bladder CarcinomaRecurrent Breast CarcinomaRecurrent Chronic Lymphocytic LeukemiaRecurrent Colorectal CarcinomaRecurrent Head and Neck CarcinomaRecurrent Lung CarcinomaRecurrent Malignant Solid NeoplasmRecurrent MelanomaRecurrent Pancreatic CarcinomaRecurrent Primary Cutaneous T-Cell Non-Hodgkin LymphomaRecurrent Prostate CarcinomaRecurrent Renal Cell CarcinomaRecurrent Thyroid Gland CarcinomaRefractory Chronic Lymphocytic LeukemiaRefractory Mature T-Cell and NK-Cell Non-Hodgkin LymphomaRefractory Primary Cutaneous T-Cell Non-Hodgkin LymphomaStage III Breast Cancer AJCC v7Stage III Colorectal Cancer AJCC v7Stage III Cutaneous Melanoma AJCC v7Stage III Lung Cancer AJCC v7Stage III Pancreatic Cancer AJCC v6 and v7Stage III Prostate Cancer AJCC v7Stage III Renal Cell Cancer AJCC v7Stage III Soft Tissue Sarcoma AJCC v7Stage IIIA Breast Cancer AJCC v7Stage IIIA Colorectal Cancer AJCC v7Stage IIIA Cutaneous Melanoma AJCC v7Stage IIIB Breast Cancer AJCC v7Stage IIIB Colorectal Cancer AJCC v7Stage IIIB Cutaneous Melanoma AJCC v7Stage IIIC Breast Cancer AJCC v7Stage IIIC Colorectal Cancer AJCC v7Stage IIIC Cutaneous Melanoma AJCC v7Stage IV Breast Cancer AJCC v6 and v7Stage IV Colorectal Cancer AJCC v7Stage IV Cutaneous Melanoma AJCC v6 and v7Stage IV Lung Cancer AJCC v7Stage IV Pancreatic Cancer AJCC v6 and v7Stage IV Prostate Cancer AJCC v7Stage IV Renal Cell Cancer AJCC v7Stage IV Soft Tissue Sarcoma AJCC v7Stage IVA Colorectal Cancer AJCC v7Stage IVB Colorectal Cancer AJCC v7Unresectable Solid Neoplasm
RECRUITING
Association Between Health Care Provider (HCP)-Assessed ECOG Performance Status (PS) and Overall Survival, and Objectively Measure of Physical Activity (PA) Levels in Advance-cancer Patients"
Description

The main goal of this phase of the study is to determine if objectively assessed Physical Activity (PA) levels in advanced-cancer patients are associated with health care provider (HCP)-assessed ECOG performance status and overall survival. The purpose is to advance the evidence-base for incorporating objective assessment of Physical Activity (PA) in the context of performance status assessment in advanced cancer patients.

Conditions
Malignant Head and Neck NeoplasmMalignant NeoplasmMetastatic Malignant Neoplasm in the NeckMetastatic Malignant Neoplasm in the Uterine CervixPancreatic AdenocarcinomaPancreatic Neuroendocrine CarcinomaRecurrent Colorectal CarcinomaStage I Colorectal Cancer AJCC v6 and v7Stage I Hypopharyngeal Carcinoma AJCC v7Stage I Major Salivary Gland Cancer AJCC v7Stage I Nasopharyngeal Carcinoma AJCC v7Stage I Oral Cavity Cancer AJCC v6 and v7Stage I Oropharyngeal Carcinoma AJCC v6 and v7Stage II Colorectal Cancer AJCC v7Stage II Hypopharyngeal Carcinoma AJCC v6 and v7Stage II Major Salivary Gland Cancer AJCC v7Stage II Nasopharyngeal Carcinoma AJCC v7Stage II Oral Cavity Cancer AJCC v6 and v7Stage II Oropharyngeal Carcinoma AJCC v6 and v7Stage IIA Colorectal Cancer AJCC v7Stage IIB Colorectal Cancer AJCC v7Stage IIC Colorectal Cancer AJCC v7Stage III Colorectal Cancer AJCC v7Stage III Hypopharyngeal Carcinoma AJCC v7Stage III Laryngeal Cancer AJCC v6 and v7Stage III Major Salivary Gland Cancer AJCC v7Stage III Nasopharyngeal Carcinoma AJCC v7Stage III Oral Cavity Cancer AJCC v6 and v7Stage III Oropharyngeal Carcinoma AJCC v7Stage IIIA Colorectal Cancer AJCC v7Stage IIIB Colorectal Cancer AJCC v7Stage IIIC Colorectal Cancer AJCC v7Stage IV Colorectal Cancer AJCC v7Stage IVA Colorectal Cancer AJCC v7Stage IVA Hypopharyngeal Carcinoma AJCC v7Stage IVA Laryngeal Cancer AJCC v7Stage IVA Major Salivary Gland Cancer AJCC v7Stage IVA Nasopharyngeal Carcinoma AJCC v7Stage IVA Oral Cavity Cancer AJCC v6 and v7Stage IVA Oropharyngeal Carcinoma AJCC v7Stage IVB Colorectal Cancer AJCC v7Stage IVB Hypopharyngeal Carcinoma AJCC v7Stage IVB Laryngeal Cancer AJCC v7Stage IVB Major Salivary Gland Cancer AJCC v7Stage IVB Nasopharyngeal Carcinoma AJCC v7Stage IVB Oral Cavity Cancer AJCC v6 and v7Stage IVB Oropharyngeal Carcinoma AJCC v7Metastatic or Locally Unresectable Solid Tumor