Search Clinical Trials
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ARTFL LEFFTDS Longitudinal Frontotemporal Lobar Degeneration (ALLFTD)
Mayo Clinic
Frontotemporal Lobar Degeneration (FTLD)
Progressive Supranuclear Palsy (PSP)
Corticobasal Degeneration (CBD)
Behavioral Variant Frontotemporal Dementia (bvFTD)
Semantic Variant Primary Progressive Aphasia (svPPA)
ARTFL LEFFTDS Longitudinal Frontotemporal Lobar Degeneration (ALLFTD) represents the
formalized integration of ARTFL (U54 NS092089; funded through 2019) and LEFFTDS (U01
AG045390; funded through 2019) as a single North American research consortium to study
FTLD for 2019 and beyond. expand
ARTFL LEFFTDS Longitudinal Frontotemporal Lobar Degeneration (ALLFTD) represents the formalized integration of ARTFL (U54 NS092089; funded through 2019) and LEFFTDS (U01 AG045390; funded through 2019) as a single North American research consortium to study FTLD for 2019 and beyond. Type: Observational Start Date: Mar 2020 |
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A Study to Compare Standard Chemotherapy to Therapy With CPX-351 and/or Gilteritinib for Patients W1
Children's Oncology Group
Acute Myeloid Leukemia
This phase III trial compares standard chemotherapy to therapy with liposome-encapsulated
daunorubicin-cytarabine (CPX-351) and/or gilteritinib for patients with newly diagnosed
acute myeloid leukemia with or without FLT3 mutations. Drugs used in chemotherapy, such
as daunorubicin, cytarabine, and1 expand
This phase III trial compares standard chemotherapy to therapy with liposome-encapsulated daunorubicin-cytarabine (CPX-351) and/or gilteritinib for patients with newly diagnosed acute myeloid leukemia with or without FLT3 mutations. Drugs used in chemotherapy, such as daunorubicin, cytarabine, and gemtuzumab ozogamicin, work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. CPX-351 is made up of daunorubicin and cytarabine and is made in a way that makes the drugs stay in the bone marrow longer and could be less likely to cause heart problems than traditional anthracycline drugs, a common class of chemotherapy drug. Some acute myeloid leukemia patients have an abnormality in the structure of a gene called FLT3. Genes are pieces of DNA (molecules that carry instructions for development, functioning, growth and reproduction) inside each cell that tell the cell what to do and when to grow and divide. FLT3 plays an important role in the normal making of blood cells. This gene can have permanent changes that cause it to function abnormally by making cancer cells grow. Gilteritinib may block the abnormal function of the FLT3 gene that makes cancer cells grow. The overall goals of this study are, 1) to compare the effects, good and/or bad, of CPX-351 with daunorubicin and cytarabine on people with newly diagnosed AML to find out which is better, 2) to study the effects, good and/or bad, of adding gilteritinib to AML therapy for patients with high amounts of FLT3/ITD or other FLT3 mutations and 3) to study changes in heart function during and after treatment for AML. Giving CPX-351 and/or gilteritinib with standard chemotherapy may work better in treating patients with acute myeloid leukemia compared to standard chemotherapy alone. Type: Interventional Start Date: Jul 2020 |
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Proton or Photon RT for Retroperitoneal Sarcomas
Massachusetts General Hospital
Retroperitoneal Sarcoma
This research study is a Phase I clinical trial. Phase I clinical trials test the safety
of an investigational intervention. Phase I studies also try to define the appropriate
dose of the investigational therapy to use for further studies. "Investigational" means
that the intervention is still bein1 expand
This research study is a Phase I clinical trial. Phase I clinical trials test the safety of an investigational intervention. Phase I studies also try to define the appropriate dose of the investigational therapy to use for further studies. "Investigational" means that the intervention is still being studied and that research doctors are trying to find out more about it. Retroperitoneal sarcomas are soft tissue tumors located at the far back of the abdomen. Typically, patients with retroperitoneal sarcomas either have surgery for the removal of their tumors alone, or have their tumors removed, followed by standard radiation therapy, or have pre-operative radiation followed by surgery. When conventional radiation therapy is delivered after surgery, it can damage normal tissue. In this study, you will undergo proton beam radiation therapy or IMRT before undergoing surgery for the removal of your tumor. Proton radiation and IMRT are FDA approved radiation delivery systems. Protons are tiny particles with positive charge that can be controlled to travel a certain distance and stop inside the body. In theory, this allows better control of where the radiation dose is delivered as compared to photons. Since proton radiation is more targeted, it may help to reduce unwanted side effects from radiation. In this study, a standard dose of radiation will be given to the majority of the tumor, while a simultaneously integrated boost of additional radiation will be given to certain areas of the tumor identified as higher risk. This means that a higher radiation dose will be given to the higher risk areas of the tumor. The purpose of this study is to determine the highest dose of radiation therapy with protons or IMRT that can be delivered safely in patients with retroperitoneal sarcomas and the effectiveness of proton beam radiation therapy as an intervention for patients with retroperitoneal sarcomas. Type: Interventional Start Date: Dec 2012 |
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Clinical and Genetic Evaluation of Individuals With Undiagnosed Disorders Through the Undiagnosed D1
National Human Genome Research Institute (NHGRI)
Genetic Disease
Without an explanation for severe and sometimes life-threatening symptoms, patients and
their families are left in a state of unknown. Many individuals find themselves being
passed from physician to physician, undergoing countless and often repetitive tests in
the hopes of finding answers and insig1 expand
Without an explanation for severe and sometimes life-threatening symptoms, patients and their families are left in a state of unknown. Many individuals find themselves being passed from physician to physician, undergoing countless and often repetitive tests in the hopes of finding answers and insight about what the future may hold. This long and arduous journey to find a diagnosis does not end for many patients- the Office of Rare Diseases Research (ORDR) notes that 6% of individuals seeking their assistance have an undiagnosed disorder. In 2008, the National Institutes of Health (NIH) Undiagnosed Diseases Program (UDP) was established with the goal of providing care and answers for these individuals with mysterious conditions who have long eluded diagnosis. The NIH UDP is a joint venture of the NIH ORDR, the National Human Genome Research Institute Intramural Research Program (NHGRI-IRP), and the NIH Clinical Research Center (CRC) (1-3). The goals of the NIH UDP are to: (1) provide answers for patients with undiagnosed diseases; (2) generate new knowledge about disease mechanisms; (3) assess the application of new approaches to phenotyping and the use of genomic technologies; and (4) identify potential therapeutic targets, if possible. To date, the UDP has evaluated 3300 medical records and admitted 750 individuals with rare and undiagnosed conditions to the NIH Clinical Center. The NIH UDP has identified more than 70 rare disease diagnoses and several new conditions. The success of the NIH UDP prompted the NIH Common Fund to support the establishment of a network of medical research centers, the Undiagnosed Diseases Network (UDN), for fiscal years 2013-2020. The clinical sites will perform extensive phenotyping, genetic analyses, and functional studies of potential disease-causing variants. The testing performed on patients involves medically indicated studies intended to help reach a diagnosis, as well as research investigations that include a skin biopsy, blood draws, and DNA analysis. In addition, the UDN will further the goals of the UDP by permitting the sharing of personally identifiable phenotypic and genotypic information within the network. By sharing participant information and encouraging collaboration, the UDN hopes to improve the understanding of rare conditions and advance the diagnostic process and care for individuals with undiagnosed diseases. Type: Observational Start Date: Sep 2015 |
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Biomarker-based Trial of NPC-1 for Alzheimer's Pathology
Massachusetts General Hospital
Alzheimer Disease
Mild Cognitive Impairment (MCI)
Subjective Cognitive Decline (SCD)
This early phase, open label, single arm clinical trial will determine the
intraindividual safety, tolerability and effects of NPC1 (parthenolide and ipriflavone)
on blood-based biomarkers of Alzheimer's disease (AD) pathology among adults with
subjective cognitive decline, mild cognitive impairmen1 expand
This early phase, open label, single arm clinical trial will determine the intraindividual safety, tolerability and effects of NPC1 (parthenolide and ipriflavone) on blood-based biomarkers of Alzheimer's disease (AD) pathology among adults with subjective cognitive decline, mild cognitive impairment, or Alzheimer's disease and objective indicators of seeding AD pathology Type: Interventional Start Date: Apr 2026 |
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Testing Immunotherapy With or Without Stereotactic Body Radiation Therapy in Patients With Advanced1
NRG Oncology
Advanced Hepatocellular Carcinoma
Stage III Hepatocellular Carcinoma AJCC v8
Stage IV Hepatocellular Carcinoma AJCC v8
This phase III trial compares the effect of immunotherapy (IO) with stereotactic body
radiation therapy (SBRT) to IO alone in treating patients with liver cancer
(hepatocellular cancer) that may have spread from where it first started to nearby
tissue, lymph nodes, or distant parts of the body (adv1 expand
This phase III trial compares the effect of immunotherapy (IO) with stereotactic body radiation therapy (SBRT) to IO alone in treating patients with liver cancer (hepatocellular cancer) that may have spread from where it first started to nearby tissue, lymph nodes, or distant parts of the body (advanced). The usual approach is treatment with IO-based drug combinations, such as atezolizumab and bevacizumab, durvalumab and tremelimumab, or ipilimumab and nivolumab. IO with monoclonal antibodies, such as durvalumab, tremelimumab, atezolizumab, nivolumab and ipilimumab, may help the body's immune system attack the tumor, and may interfere with the ability of tumor cells to grow and spread. Bevacizumab is in a class of medications called antiangiogenic agents. It works by stopping the formation of blood vessels that bring oxygen and nutrients to tumor. This may slow the growth and spread of tumor cells. Radiation therapy uses high energy x-rays, particles, or radioactive seeds to kill cancer cells and shrink tumors. SBRT is a type of external radiation therapy that uses special equipment to position a patient and precisely deliver radiation to tumors in the body (except the brain). The total dose of radiation is divided into smaller doses given over several days. This type of radiation therapy helps spare normal tissue. Giving IO with SBRT may be more effective than IO alone in helping patients with advanced hepatocellular cancer live longer. Type: Interventional Start Date: Feb 2026 |
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A Study to Investigate the Efficacy, Safety, and Pharmacokinetics of Oral Rilzabrutinib Compared Wi1
Sanofi
Autoimmune Haemolytic Anaemia
This is a parallel-group, Phase 3, double-blind, 2-arm study to investigate the efficacy,
safety, PK and PD of oral rilzabrutinib in achieving durable Hb response (DHR) compared
with placebo in approximately 90 male and female participants ≥ 18 years of age with a
confirmed diagnosis of primary wAI1 expand
This is a parallel-group, Phase 3, double-blind, 2-arm study to investigate the efficacy, safety, PK and PD of oral rilzabrutinib in achieving durable Hb response (DHR) compared with placebo in approximately 90 male and female participants ≥ 18 years of age with a confirmed diagnosis of primary wAIHA. Following a 4-week screening period, eligible participants will be randomized in a 2:1 ratio to receive rilzabrutinib or placebo in primary analysis period (PAP) for a duration of up to 24 weeks. All participants who completed PAP will then continue in open-label period (OLP) to receive rilzabrutinib for a duration of 28 weeks. Upon the completion of OLP, only participants who demonstrate Hb increase during the last 8 weeks of OLP per specified criteria in the protocol will be eligible to continue in long-term extension (LTE) of the study. The duration of the LTE period will be from the first-participant-in (FPI)-LTE until the last participant completes 52 weeks in LTE. The safety follow-up period of this study following treatment completion or discontinuation will be 2 weeks. Type: Interventional Start Date: Aug 2025 |
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A Study of LY4175408 in Participants With Advanced Cancer
Eli Lilly and Company
Carcinoma, Non-Small-Cell Lung
Small Cell Lung Carcinoma
Endometrial Neoplasms
Neoplasm Metastasis
Triple Negative Breast Cancer
The purpose of this study is to measure the safety and efficacy of LY4175408 in
participants with selected advanced cancer. In addition, this study will evaluate how
much LY4175408 gets into the bloodstream, how it is broken down, and how long it takes
the body to get rid of it. Participation could1 expand
The purpose of this study is to measure the safety and efficacy of LY4175408 in participants with selected advanced cancer. In addition, this study will evaluate how much LY4175408 gets into the bloodstream, how it is broken down, and how long it takes the body to get rid of it. Participation could last up to 4 years. Type: Interventional Start Date: Jul 2025 |
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Study to Evaluate the Efficacy and Safety of Oral Rilzabrutinib in Adults With Immune Thrombocytope1
Sanofi
Immune Thrombocytopenia
This is a multinational, open label, single arm study that will evaluate the impact of
early multi-immune modulation with rilzabrutinib in adult ITP patients who failed
first-line treatment. The study includes a screening period (up to 8 weeks), a primary
analysis period (up to 28 weeks), a long-te1 expand
This is a multinational, open label, single arm study that will evaluate the impact of early multi-immune modulation with rilzabrutinib in adult ITP patients who failed first-line treatment. The study includes a screening period (up to 8 weeks), a primary analysis period (up to 28 weeks), a long-term extension period for selected participants (28 weeks) and a 24-week follow-up period only for eligible participants. Type: Interventional Start Date: Oct 2025 |
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Tolerance Through Mixed Chimerism (Sip-Tego)
Tatsuo Kawai, MD, PhD
Kidney Failure
Transplant Recipient (Kidney)
Transplant Tolerance
Immunosuppresion
Immunosuppression After Kidney Transplantation
This is an open-label, single-institution study to assess the safety and the efficacy of
the Sip-Tego regimen for the induction of donor-specific immunologic unresponsiveness to
a renal allograft. The investigators propose to treat 6 adult subjects in end-stage renal
disease (ESRD) who do not demon1 expand
This is an open-label, single-institution study to assess the safety and the efficacy of the Sip-Tego regimen for the induction of donor-specific immunologic unresponsiveness to a renal allograft. The investigators propose to treat 6 adult subjects in end-stage renal disease (ESRD) who do not demonstrate evidence of prior sensitization. Type: Interventional Start Date: May 2025 |
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Ivosidenib as Post-HSCT Maintenance for AML
Massachusetts General Hospital
IDH1 Mutation
Acute Myeloid Leukemia (AML)
Hematopoietic Stem Cell Transplant (HSCT)
This is a Phase 2 study of the study drug, ivosidenib (a mutant IDH1 inhibitor), compared
to placebo, given to patients with IDH1-mutant acute myeloid leukemia (AML) after
hematopoietic stem cell transplantation (HCT). expand
This is a Phase 2 study of the study drug, ivosidenib (a mutant IDH1 inhibitor), compared to placebo, given to patients with IDH1-mutant acute myeloid leukemia (AML) after hematopoietic stem cell transplantation (HCT). Type: Interventional Start Date: Jan 2026 |
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Open-Label Study of BBO-10203 in Subjects With Advanced Solid Tumors
TheRas, Inc., d/b/a BBOT (BridgeBio Oncology Therapeutics)
Solid Tumor, Adult
Metastatic Breast Cancer
Advanced Breast Cancer
HER2 Mutation-Related Tumors
HER2-positive Metastatic Breast Cancer
First in human study to evaluate the safety, tolerability, and pharmacokinetics (PK) of
BBO-10203, a PI3Kα:RAS breaker, alone and in combination with other anti-cancer agents in
patients with advanced solid tumors. expand
First in human study to evaluate the safety, tolerability, and pharmacokinetics (PK) of BBO-10203, a PI3Kα:RAS breaker, alone and in combination with other anti-cancer agents in patients with advanced solid tumors. Type: Interventional Start Date: Oct 2024 |
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Treatment ResistAnt Depression Subcallosal CingulatE Network DBS (TRANSCEND)
Abbott Medical Devices
Treatment Resistant Depression
The goal of this clinical trial is to evaluate the effectiveness and safety of bilateral
stimulation of the subcallosal cingulate white matter (SCCwm) using Deep Brain
Stimulation (DBS) as an adjunctive treatment of non-psychotic unipolar Major Depressive
Disorder (MDD) in adults. expand
The goal of this clinical trial is to evaluate the effectiveness and safety of bilateral stimulation of the subcallosal cingulate white matter (SCCwm) using Deep Brain Stimulation (DBS) as an adjunctive treatment of non-psychotic unipolar Major Depressive Disorder (MDD) in adults. Type: Interventional Start Date: Sep 2024 |
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A Multicenter Phase 1b/2 Study of Adagrasib, Cetuximab, and Cemiplimab for Metastatic Colorectal Ca1
M.D. Anderson Cancer Center
Metastatic Colorectal Cancer
KRAS G12C Mutations
To learn if the drug combination of adagrasib, cetuximab, and cemiplimab can help to
control metastatic CRC with KRAS G12C mutations. expand
To learn if the drug combination of adagrasib, cetuximab, and cemiplimab can help to control metastatic CRC with KRAS G12C mutations. Type: Interventional Start Date: Aug 2024 |
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Development of a Transdiagnostic Intervention for Adolescents at Risk for Serious Mental Illness
Massachusetts General Hospital
Anxiety Disorders
Psychotic Disorders
Depressive Disorder
Psychosocial Functioning
This research study aims to develop a brief group-based treatment called Resilience
Training for Teens, then to test how well it protects high school students with mild
symptoms of depression, anxiety, or having unusual feelings from developing mental
illnesses. expand
This research study aims to develop a brief group-based treatment called Resilience Training for Teens, then to test how well it protects high school students with mild symptoms of depression, anxiety, or having unusual feelings from developing mental illnesses. Type: Interventional Start Date: Mar 2024 |
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Individual Closed-Loop Neuromodulation Therapy for Alzheimer's Disease
Massachusetts General Hospital
Alzheimer Disease
Mild Cognitive Impairment
The project is a placebo-controlled study that aims to use closed-loop transcranial
alternating current stimulation (tACS) to study patients with symptoms of mild cognitive
impairment which is likely due to Alzheimer's disease or another form of dementia
(AD-MCI). Patients will undergo an EEG and c1 expand
The project is a placebo-controlled study that aims to use closed-loop transcranial alternating current stimulation (tACS) to study patients with symptoms of mild cognitive impairment which is likely due to Alzheimer's disease or another form of dementia (AD-MCI). Patients will undergo an EEG and complete some questionnaires and computer tasks during each study visit. The project has the following aims and hypotheses: 1.) To determine the impact of closed-loop 40 Hz tACS on the entrainment of natural gamma rhythms in patients with AD-MCI, 2.) To determine the impact of closed-loop 40 Hz tACS on cognitive performance in patients with AD-MCI, and 3.) To assess the relationship between baseline neurodegenerative burden and impact of tACS. [exploratory] Type: Interventional Start Date: Jan 2025 |
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Gamma Light and Sound Stimulation to Prevent Dementia in Cognitively Normal People at Risk for Alzh1
Massachusetts General Hospital
Alzheimer Disease
Family Members
Alzheimer's disease (AD) is characterized by significant memory loss, toxic protein
deposits (amyloid and tau) in the brain, and changes in the gamma frequency band on EEG.
Gamma waves are important for memory, and in patients with AD, there are fewer gamma
waves in the brain. The Tsai lab found th1 expand
Alzheimer's disease (AD) is characterized by significant memory loss, toxic protein deposits (amyloid and tau) in the brain, and changes in the gamma frequency band on EEG. Gamma waves are important for memory, and in patients with AD, there are fewer gamma waves in the brain. The Tsai lab found that boosting gamma waves in AD mouse models using light and sound stimulation at 40Hz not only reduced amyloid and tau in the brain, but also improved memory. A light and sound device was developed for humans that stimulates the brain at 40Hz that can be used safely at home. The goal of this study is to see if using this device can prevent dementia in people who are at risk for developing Alzheimer's disease. Type: Interventional Start Date: Jun 2024 |
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Screening Trial for Pain Relief in Schwannomatosis (STARFISH)
Massachusetts General Hospital
Schwannomatosis
Schwannomas
Pain, Chronic
This is a placebo-controlled, multi-arm phase II platform screening trial designed to
test the safety, pain responses, and pharmacodynamic activity of multiple experimental
therapies simultaneously in participants with moderate-to-severe pain due to
schwannomatosis (SWN).
This Master Study is bein1 expand
This is a placebo-controlled, multi-arm phase II platform screening trial designed to test the safety, pain responses, and pharmacodynamic activity of multiple experimental therapies simultaneously in participants with moderate-to-severe pain due to schwannomatosis (SWN). This Master Study is being conducted as a platform that may allow participants with pain associated with schwannomatosis to receive a novel intervention throughout this study. Embedded within the Master Study are individual drug sub-studies: - Investigational Drug Sub-Study A: Siltuximab - Investigation Drug Sub-Study B: Erenumab-Aooe Type: Interventional Start Date: Aug 2023 |
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A Study to Assess the Efficacy and Safety of FORE8394 in Participants With Cancer Harboring BRAF Al1
Fore Biotherapeutics
Cancer Harboring BRAF Alterations
HGG
LGG
Solid Tumors
The objective of this Master Protocol is to evaluate the efficacy and safety of
plixorafenib in participants with BRAF altered (BRAF V600E or BRAF fusions) locally
advanced or metastatic solid tumors, or recurrent or progressive primary central nervous
system (CNS) tumors, including rare BRAF V600E1 expand
The objective of this Master Protocol is to evaluate the efficacy and safety of plixorafenib in participants with BRAF altered (BRAF V600E or BRAF fusions) locally advanced or metastatic solid tumors, or recurrent or progressive primary central nervous system (CNS) tumors, including rare BRAF V600E-mutated solid tumors, including anaplastic thyroid, ovarian, cholangiocarcinoma or other rare cancers. Type: Interventional Start Date: Feb 2023 |
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Testing the Addition of Stereotactic Radiation Therapy With Immune Therapy for the Treatment of Pat1
NRG Oncology
Metastatic Renal Cell Carcinoma
Stage III Renal Cell Cancer AJCC v8
Stage IV Renal Cell Cancer AJCC v8
Unresectable Renal Cell Carcinoma
This phase II trial tests whether the addition of radiation to the primary tumor,
typically given with stereotactic ablative radiation therapy (SABR), in combination with
standard of care immunotherapy improves outcomes in patients with renal cell cancer that
is not recommended for surgery and has1 expand
This phase II trial tests whether the addition of radiation to the primary tumor, typically given with stereotactic ablative radiation therapy (SABR), in combination with standard of care immunotherapy improves outcomes in patients with renal cell cancer that is not recommended for surgery and has spread from where it first started (primary site) to other places in the body (metastatic). Radiation therapy uses high energy photons to kill tumor cells and shrink tumors. Stereotactic body radiation therapy uses special equipment to position a patient and deliver radiation to tumors with high precision. This method may kill tumor cells with fewer doses of radiation over a shorter period and cause less damage to normal tissue. Immunotherapy with monoclonal antibodies, such as nivolumab, ipilimumab, avelumab, and pembrolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Axitinib, cabozantinib, and lenvatinib are in a class of medications called antiangiogenic agents. They work by stopping the formation of blood vessels that bring oxygen and nutrients to tumor. This may slow the growth and spread of tumor. Giving SABR in combination with standard of care immunotherapy may help shrink or stabilize the cancer in patients with renal cell cancer. Type: Interventional Start Date: Feb 2023 |
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A Trial to Evaluate Multiple Regimens in Newly Diagnosed and Recurrent Glioblastoma
Global Coalition for Adaptive Research
Glioblastoma
Glioblastoma (GBM) adaptive, global, innovative learning environment (GBM AGILE) is an
international, seamless Phase II/III response adaptive randomization platform trial
designed to evaluate multiple therapies in newly diagnosed (ND) and recurrent GBM.
All institutions are enrolling Newly Diagnos1 expand
Glioblastoma (GBM) adaptive, global, innovative learning environment (GBM AGILE) is an international, seamless Phase II/III response adaptive randomization platform trial designed to evaluate multiple therapies in newly diagnosed (ND) and recurrent GBM. All institutions are enrolling Newly Diagnosed participants. Institutions also enrolling Recurrent participants are marked with an asterisk (*). Type: Interventional Start Date: Jul 2019 |
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Inotuzumab Ozogamicin and Post-Induction Chemotherapy in Treating Patients With High-Risk B-ALL, Mi1
Children's Oncology Group
B Acute Lymphoblastic Leukemia
B Lymphoblastic Lymphoma
Central Nervous System Leukemia
Mixed Phenotype Acute Leukemia
Testicular Leukemia
This phase III trial studies whether inotuzumab ozogamicin added to post-induction
chemotherapy and immunotherapy (chemo-immunotherapy) for patients with High-Risk B-cell
Acute Lymphoblastic Leukemia (B-ALL) improves outcomes. Inotuzumab ozogamicin is a
monoclonal antibody, which is a type of prote1 expand
This phase III trial studies whether inotuzumab ozogamicin added to post-induction chemotherapy and immunotherapy (chemo-immunotherapy) for patients with High-Risk B-cell Acute Lymphoblastic Leukemia (B-ALL) improves outcomes. Inotuzumab ozogamicin is a monoclonal antibody, which is a type of protein that can bind to certain targets on the surface of cells. Inotuzumab ozogamicin is a monoclonal antibody that is linked to a type of chemotherapy called calicheamicin. Inotuzumab attaches to cancer cells by binding to the CD22 protein on the surface of the cancer cell and delivering calicheamicin inside the cells to kill them. Other drugs used in the chemotherapy regimen, such as cyclophosphamide, cytarabine, dexamethasone, doxorubicin, daunorubicin, methotrexate, leucovorin, mercaptopurine, prednisone, thioguanine, vincristine, and pegaspargase or calaspargase pegol work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Blinatumomab is a specialized type of monoclonal antibody known as a bispecific T-cell engager (BiTE). It works by simultaneously binding to CD19 on cancer cells and CD3 on normal immune cells, bringing them together to destroy leukemia cells. Blinatumomab is a standard part of chemo-immunotherapy treatment for B-ALL. This trial also studies the outcomes of patients with mixed phenotype acute leukemia (MPAL), and B-lymphoblastic lymphoma (B-LLy) when treated with ALL therapy without inotuzumab ozogamicin or blinatumomab. The overall goal of this study is to understand if adding inotuzumab ozogamicin to standard of care chemo-immunotherapy maintains or improves outcomes in High Risk B-cell Acute Lymphoblastic Leukemia (HR B-ALL). The first part of the study includes the first phase of therapy: Induction. This part will collect information on the leukemia, as well as the effects of the initial treatment, to classify patients into post-induction treatment groups. On the second part of this study, patients with HR B-ALL will receive the remainder of the chemotherapy cycles (consolidation, blinatumomab block 1, interim maintenance 1, blinatumomab block 2, delayed intensification, interim maintenance 2, maintenance), with some patients randomized to receive inotuzumab. The patients that receive inotuzumab will not receive part of consolidation or part of delayed intensification. Other aims of this study include evaluating 1) side effects of treatment using patient-reported outcomes and health-related quality of life, 2) the best ways to help patients adhere to oral chemotherapy regimens, 3) the relationship between levels of inotuzumab ozogamicin in the blood and side effects, 4) the impact of chemo-immunotherapy on the immune system and risk of infection, and 5) the impact of social determinants of health on outcomes. Finally, this study will be the first to track the outcomes of subjects with disseminated B-cell Lymphoblastic Leukemia (B-LLy) or Mixed Phenotype Acute Leukemia (MPAL) when treated with B-ALL chemotherapy. Type: Interventional Start Date: Oct 2019 |
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A Prospective, Multi-center, Randomized Controlled Blinded Trial Demonstrating the Safety and Effec1
LivaNova
Treatment Resistant Depression
Objectives of this study are to determine whether active VNS Therapy treatment is
superior to a no stimulation control in producing a reduction in baseline depressive
symptom severity, based on multiple depression scale assessment tools at 12 months from
randomization. expand
Objectives of this study are to determine whether active VNS Therapy treatment is superior to a no stimulation control in producing a reduction in baseline depressive symptom severity, based on multiple depression scale assessment tools at 12 months from randomization. Type: Interventional Start Date: Sep 2019 |
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RESOLVE: Abemaciclib + Letrozole +/- Metformin or Gedatolisib in Endometrial Cancer
Dana-Farber Cancer Institute
Endometrial Cancer
This research study is studying a combination of targeted therapies as a possible
treatment for estrogen-receptor positive (ER+) endometrial cancer.
The drugs involved in this study are:
- Abemaciclib (also known as Verzenio™)
- Letrozole (also known as Femara®)
- Metformin (also known1 expand
This research study is studying a combination of targeted therapies as a possible treatment for estrogen-receptor positive (ER+) endometrial cancer. The drugs involved in this study are: - Abemaciclib (also known as Verzenio™) - Letrozole (also known as Femara®) - Metformin (also known as Glucophage®) - Gedatolisib (also known as PF-05212384) Type: Interventional Start Date: Dec 2018 |
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Harmony-HHT: ATV-1601 in Participants With Hereditary Hemorrhagic Telangiectasia (HHT)
Atavistik Bio, Inc
Hereditary Hemorrhagic Telangiectasia (HHT)
Osler Weber Rendu Disease
This is a 2-part study evaluating ATV-1601 in participants with moderate to severe HHT.
Part 1 is a randomized, double-blind, placebo-controlled study evaluating 3 dosing
regimens of ATV-1601. Patients completing Part 1 may participate in the Part 2 open-label
extension to receive ATV-1601. expand
This is a 2-part study evaluating ATV-1601 in participants with moderate to severe HHT. Part 1 is a randomized, double-blind, placebo-controlled study evaluating 3 dosing regimens of ATV-1601. Patients completing Part 1 may participate in the Part 2 open-label extension to receive ATV-1601. Type: Interventional Start Date: Jun 2026 |