Treatment Trials

46 Clinical Trials for Various Conditions

Focus your search

ACTIVE_NOT_RECRUITING
Bevacizumab and Temsirolimus Alone or in Combination with Valproic Acid or Cetuximab in Treating Patients with Advanced or Metastatic Malignancy or Other Benign Disease
Description

This phase I trial studies the side effects and best dose of bevacizumab and temsirolimus alone or in combination with valproic acid or cetuximab in treating patients with a malignancy that has spread to other places in the body or other disease that is not cancerous. Immunotherapy with bevacizumab and cetuximab, may induce changes in body's immune system and may interfere with the ability of tumor cells to grow and spread. Temsirolimus may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Drugs used in chemotherapy, such as valproic acid, 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. It is not yet known whether bevacizumab and temsirolimus work better when given alone or with valproic acid or cetuximab in treating patients with a malignancy or other disease that is not cancerous.

COMPLETED
Cixutumumab, Everolimus, and Octreotide Acetate in Treating Patients With Advanced Low to Intermediate Grade Neuroendocrine Carcinoma
Description

This phase I trial studies the side effects and best dose of cixutumumab when given together with everolimus and octreotide acetate in treating patients with advanced low- or intermediate-grade neuroendocrine cancer. Monoclonal antibodies, such as cixutumumab, may find tumor cells and help carry tumor-killing substances to them. Everolimus may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Octreotide acetate may interfere with the growth of tumor cells and slow the growth of neuroendocrine cancer. Giving cixutumumab together with everolimus and octreotide acetate may be a better treatment for neuroendocrine cancer.

COMPLETED
Temsirolimus and Bevacizumab in Treating Patients With Advanced Endometrial, Ovarian, Liver, Carcinoid, or Islet Cell Cancer
Description

This phase II trial studies how well temsirolimus and bevacizumab work in treating patients with advanced endometrial, ovarian, liver, carcinoid, or islet cell cancer. Temsirolimus may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Monoclonal antibodies, such as bevacizumab, can block tumor growth in different ways. Some block the ability of tumor cells to grow and spread. Others find tumor cells and help kill them or carry tumor-killing substances to them. Bevacizumab may also stop the growth of cancer by blocking blood flow to the tumor. Giving temsirolimus together with bevacizumab may kill more tumor cells.

COMPLETED
Seneca Valley Virus-001 and Cyclophosphamide in Treating Young Patients With Relapsed or Refractory Neuroblastoma, Rhabdomyosarcoma, or Rare Tumors With Neuroendocrine Features
Description

RATIONALE: Seneca Valley virus-001 may be able to kill certain kinds of tumor cells without damaging normal cells. Adding low dose cyclophosphamide (in part B of study) may help to kill even more tumor cells. PURPOSE: This phase I trial is studying the side effects and best dose of Seneca Valley virus-001 in treating young patients with relapsed or refractory neuroblastoma, rhabdomyosarcoma, or rare tumors with neuroendocrine features.

COMPLETED
Pazopanib Hydrochloride in Treating Patients With Advanced Neuroendocrine Cancer
Description

This phase II trial studies how well pazopanib hydrochloride works in treating patients with advanced neuroendocrine cancer. Pazopanib hydrochloride may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth and by blocking blood flow to the tumor.

TERMINATED
Indium In 111 Pentetreotide in Treating Patients With Refractory Cancer
Description

RATIONALE: Radiation therapy uses high-energy x-rays and other sources to damage tumor cells. Giving radiation therapy in different ways may kill more tumor cells. PURPOSE: Phase I trial to study the effectiveness of indium In 111 pentetreotide in treating patients who have refractory cancer.

COMPLETED
Regorafenib in Treating Patients With Advanced or Metastatic Neuroendocrine Tumors
Description

This phase II trial studies regorafenib in treating patients with neuroendocrine tumors that have spread from the primary site (place where it started) to other places in the body. Regorafenib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.

COMPLETED
Temsirolimus and Vinorelbine Ditartrate in Treating Patients With Unresectable or Metastatic Solid Tumors
Description

RATIONALE: Temsirolimus may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Drugs used in chemotherapy, such as vinorelbine ditartrate, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Giving temsirolimus together with vinorelbine ditartrate may kill more tumor cells. PURPOSE: This phase I trial is studying the side effects and best dose of giving temsirolimus and vinorelbine ditartrate together in treating patients with unresectable or metastatic solid tumors.

COMPLETED
Everolimus and Vatalanib in Treating Patients With Advanced Solid Tumors
Description

RATIONALE: Everolimus and vatalanib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth and by blocking blood flow to the tumor. Giving everolimus together with vatalanib may kill more tumor cells. PURPOSE: This phase I trial is studying the side effects and best dose of everolimus and vatalanib in treating patients with advanced solid tumors.

COMPLETED
Irinotecan, Fluorouracil, and Leucovorin in Treating Patients With Advanced Gastrointestinal Cancer
Description

RATIONALE: Drugs used in chemotherapy, such as irinotecan, fluorouracil, and leucovorin, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Giving more than one drug (combination chemotherapy) may kill more tumor cells. PURPOSE: This phase I trial is studying the side effects and best dose of irinotecan when given together with fluorouracil and leucovorin in treating patients with advanced gastrointestinal cancer.

COMPLETED
Erlotinib Hydrochloride and Cetuximab in Treating Patients With Advanced Gastrointestinal Cancer, Head and Neck Cancer, Non-Small Cell Lung Cancer, or Colorectal Cancer
Description

This phase I trial is studying the side effects and best dose of erlotinib hydrochloride when given together with cetuximab and to see how well they work in treating patients with advanced gastrointestinal cancer, head and neck cancer, non-small cell lung cancer, or colorectal cancer. Erlotinib hydrochloride may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Monoclonal antibodies, such as cetuximab, can block tumor growth in different ways. Some block the ability of tumor cells to grow and spread. Others find tumor cells and help kill them or carry tumor-killing substances to them. Erlotinib hydrochloride and cetuximab may also stop the growth of tumor cells by blocking blood flow to the tumor. Giving erlotinib hydrochloride together with cetuximab may kill more tumor cells.

Conditions
Adenocarcinoma of the ColonAdenocarcinoma of the RectumAdvanced Adult Primary Liver CancerCarcinoma of the AppendixGastrointestinal Stromal TumorMetastatic Gastrointestinal Carcinoid TumorMetastatic Squamous Neck Cancer With Occult PrimaryRecurrent Adenoid Cystic Carcinoma of the Oral CavityRecurrent Adult Primary Liver CancerRecurrent Anal CancerRecurrent Basal Cell Carcinoma of the LipRecurrent Colon CancerRecurrent Esophageal CancerRecurrent Esthesioneuroblastoma of the Paranasal Sinus and Nasal CavityRecurrent Extrahepatic Bile Duct CancerRecurrent Gallbladder CancerRecurrent Gastric CancerRecurrent Gastrointestinal Carcinoid TumorRecurrent Inverted Papilloma of the Paranasal Sinus and Nasal CavityRecurrent Lymphoepithelioma of the NasopharynxRecurrent Lymphoepithelioma of the OropharynxRecurrent Metastatic Squamous Neck Cancer With Occult PrimaryRecurrent Midline Lethal Granuloma of the Paranasal Sinus and Nasal CavityRecurrent Mucoepidermoid Carcinoma of the Oral CavityRecurrent Non-small Cell Lung CancerRecurrent Pancreatic CancerRecurrent Rectal CancerRecurrent Salivary Gland CancerRecurrent Small Intestine CancerRecurrent Squamous Cell Carcinoma of the HypopharynxRecurrent Squamous Cell Carcinoma of the LarynxRecurrent Squamous Cell Carcinoma of the Lip and Oral CavityRecurrent Squamous Cell Carcinoma of the NasopharynxRecurrent Squamous Cell Carcinoma of the OropharynxRecurrent Squamous Cell Carcinoma of the Paranasal Sinus and Nasal CavityRecurrent Verrucous Carcinoma of the LarynxRecurrent Verrucous Carcinoma of the Oral CavitySmall Intestine AdenocarcinomaSmall Intestine LeiomyosarcomaSmall Intestine LymphomaStage IV Adenoid Cystic Carcinoma of the Oral CavityStage IV Anal CancerStage IV Basal Cell Carcinoma of the LipStage IV Colon CancerStage IV Esophageal CancerStage IV Esthesioneuroblastoma of the Paranasal Sinus and Nasal CavityStage IV Gastric CancerStage IV Inverted Papilloma of the Paranasal Sinus and Nasal CavityStage IV Lymphoepithelioma of the NasopharynxStage IV Lymphoepithelioma of the OropharynxStage IV Midline Lethal Granuloma of the Paranasal Sinus and Nasal CavityStage IV Mucoepidermoid Carcinoma of the Oral CavityStage IV Non-small Cell Lung CancerStage IV Pancreatic CancerStage IV Rectal CancerStage IV Salivary Gland CancerStage IV Squamous Cell Carcinoma of the HypopharynxStage IV Squamous Cell Carcinoma of the LarynxStage IV Squamous Cell Carcinoma of the Lip and Oral CavityStage IV Squamous Cell Carcinoma of the NasopharynxStage IV Squamous Cell Carcinoma of the OropharynxStage IV Squamous Cell Carcinoma of the Paranasal Sinus and Nasal CavityStage IV Verrucous Carcinoma of the LarynxStage IV Verrucous Carcinoma of the Oral CavityTongue CancerUnresectable Extrahepatic Bile Duct CancerUnresectable Gallbladder Cancer
COMPLETED
Sorafenib Tosylate in Treating Patients With Progressive Metastatic Neuroendocrine Tumors
Description

This phase II trial is studying how well sorafenib tosylate works in treating patients with progressive metastatic neuroendocrine tumors. Sorafenib tosylate may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth and by blocking blood flow to the tumor.

TERMINATED
EF5 and Motexafin Lutetium in Detecting Tumor Cells in Patients With Abdominal or Non-Small Cell Lung Cancer
Description

This clinical trial is studying the amount of EF5 and motexafin lutetium present in tumor cells and/or normal tissues of patients with abdominal (such as ovarian, colon, or stomach cancer) or non-small cell lung cancer. EF5 may be effective in measuring oxygen in tumor tissue. Photosensitizing drugs such as motexafin lutetium are absorbed by tumor cells and, when exposed to light, become active and kill the tumor cells. Knowing the level of oxygen in tumor tissue and the level of motexafin lutetium absorbed by tumors and normal tissue may help predict the effectiveness of anticancer therapy

Conditions
Advanced Adult Primary Liver CancerCarcinoma of the AppendixFallopian Tube CancerGastrointestinal Stromal TumorLocalized Extrahepatic Bile Duct CancerLocalized Gallbladder CancerLocalized Gastrointestinal Carcinoid TumorLocalized Resectable Adult Primary Liver CancerLocalized Unresectable Adult Primary Liver CancerMetastatic Gastrointestinal Carcinoid TumorOvarian SarcomaOvarian Stromal CancerPrimary Peritoneal Cavity CancerRecurrent Adult Primary Liver CancerRecurrent Adult Soft Tissue SarcomaRecurrent Colon CancerRecurrent Extrahepatic Bile Duct CancerRecurrent Gallbladder CancerRecurrent Gastric CancerRecurrent Gastrointestinal Carcinoid TumorRecurrent Non-small Cell Lung CancerRecurrent Ovarian Epithelial CancerRecurrent Ovarian Germ Cell TumorRecurrent Pancreatic CancerRecurrent Rectal CancerRecurrent Small Intestine CancerRecurrent Uterine SarcomaRegional Gastrointestinal Carcinoid TumorSmall Intestine AdenocarcinomaSmall Intestine LeiomyosarcomaSmall Intestine LymphomaStage 0 Non-small Cell Lung CancerStage I Adult Soft Tissue SarcomaStage I Colon CancerStage I Gastric CancerStage I Non-small Cell Lung CancerStage I Ovarian Epithelial CancerStage I Ovarian Germ Cell TumorStage I Pancreatic CancerStage I Rectal CancerStage I Uterine SarcomaStage II Adult Soft Tissue SarcomaStage II Colon CancerStage II Gastric CancerStage II Non-small Cell Lung CancerStage II Ovarian Epithelial CancerStage II Ovarian Germ Cell TumorStage II Pancreatic CancerStage II Rectal CancerStage II Uterine SarcomaStage III Adult Soft Tissue SarcomaStage III Colon CancerStage III Gastric CancerStage III Ovarian Epithelial CancerStage III Ovarian Germ Cell TumorStage III Pancreatic CancerStage III Rectal CancerStage III Uterine SarcomaStage IIIA Non-small Cell Lung CancerStage IIIB Non-small Cell Lung CancerStage IV Adult Soft Tissue SarcomaStage IV Colon CancerStage IV Gastric CancerStage IV Non-small Cell Lung CancerStage IV Ovarian Epithelial CancerStage IV Ovarian Germ Cell TumorStage IV Pancreatic CancerStage IV Rectal CancerStage IV Uterine SarcomaUnresectable Extrahepatic Bile Duct CancerUnresectable Gallbladder Cancer
TERMINATED
Romidepsin in Treating Patients With Locally Advanced or Metastatic Neuroendocrine Tumors
Description

Phase II trial to study the effectiveness of romidepsin in treating patients who have locally advanced or metastatic neuroendocrine tumors. Drugs used in chemotherapy, such as romidepsin, work in different ways to stop tumor cells from dividing so they stop growing or die.

COMPLETED
Gefitinib in Treating Patients With Progressive Metastatic Neuroendocrine Tumors
Description

This phase II trial is studying how well gefitinib works in treating patients with progressive metastatic neuroendocrine tumors. Gefitinib may stop the growth of tumor cells by blocking the enzymes necessary for their growth.

COMPLETED
7-Hydroxystaurosporine and Irinotecan Hydrochloride in Treating Patients With Metastatic or Unresectable Solid Tumors or Triple Negative Breast Cancer (Currently Accruing Only Triple-negative Breast Cancer Patients Since 6/8/2007)
Description

This phase I trial is studying the side effects and best dose of giving 7-hydroxystaurosporine together with irinotecan hydrochloride in treating patients with metastatic or unresectable solid tumors, including triple-negative breast cancer (currently enrolling only patients with triple-negative breast cancer since 6/8/2007). Drugs used in chemotherapy use different ways to stop tumor cells from dividing so they stop growing or die. Giving 7-hydroxystaurosporine together with irinotecan hydrochloride may help kill more cancer cells by making tumor cells more sensitive to the drug.

Conditions
Advanced Adult Primary Liver CancerCarcinoma of the AppendixEstrogen Receptor-negative Breast CancerExtensive Stage Small Cell Lung CancerGastrointestinal Stromal TumorHER2-negative Breast CancerMetastatic Gastrointestinal Carcinoid TumorOvarian SarcomaOvarian Stromal CancerProgesterone Receptor-negative Breast CancerRecurrent Adenoid Cystic Carcinoma of the Oral CavityRecurrent Adult Primary Liver CancerRecurrent Anal CancerRecurrent Basal Cell Carcinoma of the LipRecurrent Borderline Ovarian Surface Epithelial-stromal TumorRecurrent Breast CancerRecurrent Cervical CancerRecurrent Colon CancerRecurrent Endometrial CarcinomaRecurrent Esophageal CancerRecurrent Esthesioneuroblastoma of the Paranasal Sinus and Nasal CavityRecurrent Extrahepatic Bile Duct CancerRecurrent Gallbladder CancerRecurrent Gastric CancerRecurrent Gastrointestinal Carcinoid TumorRecurrent Inverted Papilloma of the Paranasal Sinus and Nasal CavityRecurrent Lymphoepithelioma of the NasopharynxRecurrent Lymphoepithelioma of the OropharynxRecurrent Metastatic Squamous Neck Cancer With Occult PrimaryRecurrent Midline Lethal Granuloma of the Paranasal Sinus and Nasal CavityRecurrent Mucoepidermoid Carcinoma of the Oral CavityRecurrent Non-small Cell Lung CancerRecurrent Ovarian Epithelial CancerRecurrent Ovarian Germ Cell TumorRecurrent Pancreatic CancerRecurrent Prostate CancerRecurrent Rectal CancerRecurrent Salivary Gland CancerRecurrent Small Cell Lung CancerRecurrent Small Intestine CancerRecurrent Squamous Cell Carcinoma of the HypopharynxRecurrent Squamous Cell Carcinoma of the LarynxRecurrent Squamous Cell Carcinoma of the Lip and Oral CavityRecurrent Squamous Cell Carcinoma of the NasopharynxRecurrent Squamous Cell Carcinoma of the OropharynxRecurrent Squamous Cell Carcinoma of the Paranasal Sinus and Nasal CavityRecurrent Verrucous Carcinoma of the LarynxRecurrent Verrucous Carcinoma of the Oral CavitySmall Intestine AdenocarcinomaSmall Intestine LeiomyosarcomaSmall Intestine LymphomaStage IV Adenoid Cystic Carcinoma of the Oral CavityStage IV Anal CancerStage IV Basal Cell Carcinoma of the LipStage IV Borderline Ovarian Surface Epithelial-stromal TumorStage IV Breast CancerStage IV Colon CancerStage IV Endometrial CarcinomaStage IV Esophageal CancerStage IV Esthesioneuroblastoma of the Paranasal Sinus and Nasal CavityStage IV Gastric CancerStage IV Inverted Papilloma of the Paranasal Sinus and Nasal CavityStage IV Lymphoepithelioma of the NasopharynxStage IV Lymphoepithelioma of the OropharynxStage IV Midline Lethal Granuloma of the Paranasal Sinus and Nasal CavityStage IV Mucoepidermoid Carcinoma of the Oral CavityStage IV Non-small Cell Lung CancerStage IV Ovarian Epithelial CancerStage IV Ovarian Germ Cell TumorStage IV Pancreatic CancerStage IV Prostate CancerStage IV Rectal CancerStage IV Salivary Gland CancerStage IV Squamous Cell Carcinoma of the HypopharynxStage IV Squamous Cell Carcinoma of the LarynxStage IV Squamous Cell Carcinoma of the Lip and Oral CavityStage IV Squamous Cell Carcinoma of the NasopharynxStage IV Squamous Cell Carcinoma of the OropharynxStage IV Squamous Cell Carcinoma of the Paranasal Sinus and Nasal CavityStage IV Verrucous Carcinoma of the LarynxStage IV Verrucous Carcinoma of the Oral CavityStage IVA Cervical CancerStage IVB Cervical CancerTriple-negative Breast CancerUnresectable Extrahepatic Bile Duct CancerUnresectable Gallbladder CancerUnspecified Adult Solid Tumor, Protocol SpecificUntreated Metastatic Squamous Neck Cancer With Occult Primary
COMPLETED
Interleukin-12 and Trastuzumab in Treating Patients With Cancer That Has High Levels of HER2/Neu
Description

Interleukin-12 may kill tumor cells by stopping blood flow to the tumor and by stimulating a person's white blood cells to kill cancer cells. Monoclonal antibodies such as trastuzumab can locate tumor cells and either kill them or deliver tumor-killing substances to them without harming normal cells. Phase I trial to study the effectiveness of interleukin-12 and trastuzumab in treating patients who have cancer that has high levels of HER2/neu and has not responded to previous therapy

Conditions
Advanced Adult Primary Liver CancerAnaplastic Thyroid CancerBone MetastasesCarcinoma of the AppendixDistal Urethral CancerFallopian Tube CancerGastrinomaGlucagonomaInflammatory Breast CancerInsulinomaLiver MetastasesLocalized Unresectable Adult Primary Liver CancerLung MetastasesMale Breast CancerMalignant Pericardial EffusionMalignant Pleural EffusionMetastatic Gastrointestinal Carcinoid TumorMetastatic Parathyroid CancerMetastatic Transitional Cell Cancer of the Renal Pelvis and UreterNewly Diagnosed Carcinoma of Unknown PrimaryOccult Non-small Cell Lung CancerPancreatic Polypeptide TumorPrimary Peritoneal Cavity CancerProximal Urethral CancerPulmonary Carcinoid TumorRecurrent Adenoid Cystic Carcinoma of the Oral CavityRecurrent Adrenocortical CarcinomaRecurrent Adult Primary Liver CancerRecurrent Anal CancerRecurrent Bladder CancerRecurrent Breast CancerRecurrent Carcinoma of Unknown PrimaryRecurrent Cervical CancerRecurrent Colon CancerRecurrent Endometrial CarcinomaRecurrent Esophageal CancerRecurrent Extrahepatic Bile Duct CancerRecurrent Gallbladder CancerRecurrent Gastric CancerRecurrent Gastrointestinal Carcinoid TumorRecurrent Islet Cell CarcinomaRecurrent Malignant Testicular Germ Cell TumorRecurrent Mucoepidermoid Carcinoma of the Oral CavityRecurrent Non-small Cell Lung CancerRecurrent Ovarian Epithelial CancerRecurrent Pancreatic CancerRecurrent Parathyroid CancerRecurrent Prostate CancerRecurrent Rectal CancerRecurrent Renal Cell CancerRecurrent Salivary Gland CancerRecurrent Small Intestine CancerRecurrent Squamous Cell Carcinoma of the LarynxRecurrent Squamous Cell Carcinoma of the Lip and Oral CavityRecurrent Squamous Cell Carcinoma of the NasopharynxRecurrent Squamous Cell Carcinoma of the OropharynxRecurrent Thyroid CancerRecurrent Transitional Cell Cancer of the Renal Pelvis and UreterRecurrent Urethral CancerRecurrent Vaginal CancerRecurrent Vulvar CancerSkin MetastasesSmall Intestine AdenocarcinomaSomatostatinomaStage III Adenoid Cystic Carcinoma of the Oral CavityStage III Adrenocortical CarcinomaStage III Bladder CancerStage III Cervical CancerStage III Colon CancerStage III Endometrial CarcinomaStage III Esophageal CancerStage III Follicular Thyroid CancerStage III Gastric CancerStage III Malignant Testicular Germ Cell TumorStage III Mucoepidermoid Carcinoma of the Oral CavityStage III Ovarian Epithelial CancerStage III Pancreatic CancerStage III Papillary Thyroid CancerStage III Prostate CancerStage III Rectal CancerStage III Renal Cell CancerStage III Salivary Gland CancerStage III Squamous Cell Carcinoma of the LarynxStage III Squamous Cell Carcinoma of the Lip and Oral CavityStage III Squamous Cell Carcinoma of the NasopharynxStage III Squamous Cell Carcinoma of the OropharynxStage III Vaginal CancerStage III Vulvar CancerStage IIIA Anal CancerStage IIIA Breast CancerStage IIIA Non-small Cell Lung CancerStage IIIB Anal CancerStage IIIB Breast CancerStage IIIB Non-small Cell Lung CancerStage IV Adenoid Cystic Carcinoma of the Oral CavityStage IV Adrenocortical CarcinomaStage IV Anal CancerStage IV Bladder CancerStage IV Breast CancerStage IV Colon CancerStage IV Endometrial CarcinomaStage IV Esophageal CancerStage IV Follicular Thyroid CancerStage IV Gastric CancerStage IV Mucoepidermoid Carcinoma of the Oral CavityStage IV Non-small Cell Lung CancerStage IV Ovarian Epithelial CancerStage IV Pancreatic CancerStage IV Papillary Thyroid CancerStage IV Prostate CancerStage IV Rectal CancerStage IV Renal Cell CancerStage IV Salivary Gland CancerStage IV Squamous Cell Carcinoma of the LarynxStage IV Squamous Cell Carcinoma of the Lip and Oral CavityStage IV Squamous Cell Carcinoma of the NasopharynxStage IV Squamous Cell Carcinoma of the OropharynxStage IVA Cervical CancerStage IVA Vaginal CancerStage IVB Cervical CancerStage IVB Vaginal CancerStage IVB Vulvar CancerThyroid Gland Medullary CarcinomaUnresectable Extrahepatic Bile Duct CancerUnresectable Gallbladder CancerUrethral Cancer Associated With Invasive Bladder CancerWDHA Syndrome
COMPLETED
Thalidomide and Docetaxel in Treating Patients With Advanced Cancer
Description

RATIONALE: Thalidomide may stop the growth of cancer by stopping blood flow to the tumor. Drugs used in chemotherapy use different ways to stop cancer cells from dividing so they stop growing or die. Combining thalidomide with docetaxel may kill more tumor cells. PURPOSE: Phase I trial to study the effectiveness of combining thalidomide with docetaxel in treating patients who have advanced cancer.

Conditions
COMPLETED
Radiolabeled Octreotide in Treating Children With Advanced or Refractory Solid Tumors
Description

RATIONALE: Radiolabeled octreotide can locate tumor cells and deliver radioactive tumor-killing substances to them without harming normal cells. PURPOSE: This phase I trial is to study the safety and effectiveness of radiolabeled octreotide in treating children who have advanced or refractory solid tumors.

COMPLETED
Yttrium Y 90 SMT 487 in Treating Patients With Refractory or Recurrent Cancer
Description

RATIONALE: Radiolabeled drugs such as yttrium Y 90 SMT 487 can locate tumor cells and deliver tumor-killing substances to them without harming normal cells. PURPOSE: Phase I trial to study the effectiveness of yttrium Y 90 SMT 487 in treating patients who have refractory or recurrent cancer.

TERMINATED
Internal Radiation Therapy in Treating Patients With Liver Metastases From Neuroendocrine Tumors
Description

RATIONALE: Specialized radiation therapy that delivers a high dose of radiation directly to the tumor may kill more tumor cells and cause less damage to normal tissue. PURPOSE: This phase II trial is studying how well internal radiation therapy works in treating patients with liver metastases from neuroendocrine tumors.

COMPLETED
AMG 706 and Octreotide in Treating Patients With Low-Grade Neuroendocrine Tumors
Description

RATIONALE: AMG 706 and octreotide may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth and by blocking blood flow to the tumor. PURPOSE: This phase II trial is studying how well AMG 706 and octreotide work in treating patients with low-grade neuroendocrine tumors.

TERMINATED
Combination Chemotherapy and Bevacizumab in Treating Patients With Advanced Neuroendocrine Tumors
Description

RATIONALE: Drugs used in chemotherapy, such as fluorouracil, leucovorin, and oxaliplatin, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Monoclonal antibodies, such as bevacizumab, can block tumor growth in different ways. Some block the ability of tumor cells to grow and spread. Others find tumor cells and help kill them or carry tumor-killing substances to them. Bevacizumab may also stop the growth of neuroendocrine tumors by blocking blood flow to the tumor. Giving combination chemotherapy together with bevacizumab may kill more tumor cells. PURPOSE: This phase I/II trial is studying the side effects of giving combination chemotherapy together with bevacizumab and to see how well it works in treating patients with advanced neuroendocrine tumors.

COMPLETED
Hepatic Arterial Infusion of Melphalan With Hepatic Perfusion in Treating Patients With Unresectable Liver Cancer
Description

RATIONALE: Hepatic arterial infusion uses a catheter to deliver anticancer substances directly into the liver. Drugs used in chemotherapy, such as melphalan, work in different ways to stop tumor cells from dividing so they stop growing or die. Giving drugs in different ways may kill more tumor cells. PURPOSE: This phase II trial is studying how well giving an hepatic arterial infusion of melphalan together with hepatic perfusion works in treating patients with unresectable liver cancer.

Conditions
COMPLETED
Intrapleural BG00001 in Treating Patients With Malignant Pleural Mesothelioma or Malignant Pleural Effusions
Description

RATIONALE: Using BG00001 to insert the gene for interferon-beta into a person's pleural cavity may improve the body's ability to fight cancer. PURPOSE: Phase I trial to study the effectiveness of intrapleural BG00001 in treating patients who have malignant pleural mesothelioma or malignant pleural effusions.

Conditions
COMPLETED
PV701 in Treating Patients With Advanced or Recurrent Peritoneal Cancer
Description

RATIONALE: PV701 may be able to kill tumor cells while leaving normal cells undamaged. PURPOSE: Phase I trial to study the effectiveness of PV701 in treating patients who have advanced or recurrent ovarian epithelial, fallopian tube, primary peritoneal, colorectal, or other cancer found primarily within the peritoneal cavity.

Conditions
COMPLETED
Thalidomide in Treating Patients With Metastatic Neuroendocrine Tumors
Description

RATIONALE: Thalidomide may stop the growth of neuroendocrine tumors by stopping blood flow to the tumor. PURPOSE: Phase II trial to study the effectiveness of thalidomide in treating patients who have metastatic neuroendocrine tumors.

COMPLETED
Combination Chemotherapy Plus Interferon Alfa Followed by Filgrastim in Treating Patients With Gastrointestinal Tract Cancer
Description

RATIONALE: Drugs used in chemotherapy use different ways to stop tumor cells from dividing so they stop growing or die. Interferon alfa may interfere with the growth of cancer cells. Colony-stimulating factors such as filgrastim may increase the number of immune cells found in bone marrow or peripheral blood and may help a person recover from the side effects of chemotherapy. Combining chemotherapy with interferon alfa may kill more tumor cells. PURPOSE: Phase II trial to study the effectiveness of combining chemotherapy and interferon alfa followed by filgrastim in treating patients who have gastrointestinal tract cancer.

COMPLETED
Capecitabine Combined With Cisplatin in Treating Patients With Locally Advanced or Metastatic Solid Tumors
Description

RATIONALE: Drugs used in chemotherapy use different ways to stop tumor cells from dividing so they stop growing or die. Combining more than one chemotherapy drug may kill more tumor cells. PURPOSE: Phase I trial to study the effectiveness of capecitabine combined with cisplatin in treating patients who have locally advanced or metastatic solid tumors .

Conditions
COMPLETED
Oxaliplatin With Or Without Floxuridine and Leucovorin in Treating Patients With Metastatic Cancer of the Peritoneum
Description

RATIONALE: Drugs used in chemotherapy use different ways to stop tumor cells from dividing so they stop growing or die. Combining more than one drug may kill more tumor cells. PURPOSE: Phase I trial to study the effectiveness of oxaliplatin with or without floxuridine and leucovorin in treating patients who have metastatic cancer of the peritoneum.

Conditions