
Search Clinical Trials
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Two Studies for Patients With Unfavorable Intermediate Risk Prostate Cancer Testing Less Intense Tr1
NRG Oncology
Prostate Adenocarcinoma
This phase III trial uses the Decipher risk score to guide therapy selection. Decipher
score is based on the activity of 22 genes in prostate tumor and may predict how likely
it is for recurrent prostate cancer to spread (metastasize) to other parts of the body.
Decipher score in this study is used1 expand
This phase III trial uses the Decipher risk score to guide therapy selection. Decipher score is based on the activity of 22 genes in prostate tumor and may predict how likely it is for recurrent prostate cancer to spread (metastasize) to other parts of the body. Decipher score in this study is used for patient selection and the two variations of treatment to be studied: intensification for higher Decipher score or de-intensification for low Decipher score. Patients with higher Decipher risk score will be assigned to the part of the study that compares the use of 6 months of the usual treatment (hormone therapy and radiation treatment) to the use of darolutamide plus the usual treatment (intensification). The purpose of this section of the study is to determine whether the additional drug can reduce the chance of cancer coming back and spreading in patients with higher Decipher score. The addition of darolutamide to the usual treatment may better control the cancer and prevent it from spreading. Alternatively, patients with low Decipher risk score will be assigned to the part of the study that compares the use of radiation treatment alone (de-intensification) to the usual approach (6 months of hormone therapy plus radiation). The purpose of this part of the study is to determine if radiation treatment alone is as effective compared to the usual treatment without affecting the chance of tumor coming back in patients with low Decipher score prostate cancer. Radiation therapy uses high energy to kill tumor cells and reduce the tumor size. Hormone therapy drugs such as darolutamide suppress or block the production or action of male hormones that play role in prostate cancer development. Effect of radiation treatment alone in patients with low Decipher score prostate cancer could be the same as the usual approach in stabilizing prostate cancer and preventing it from spreading, while avoiding the side effects associated with hormonal therapy. Type: Interventional Start Date: Dec 2021 |
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Extracellular Vesicle Treatment for Acute Respiratory Distress Syndrome (ARDS) (EXTINGUISH ARDS)
Direct Biologics, LLC
Acute Respiratory Distress Syndrome
ARDS
To evaluate the safety and efficacy of intravenous (IV) administration of bone marrow
mesenchymal stem cell derived extracellular vesicles (EVs), ExoFlo, versus placebo for
the treatment of hospitalized patients with moderate-to-severe Acute Respiratory Distress
Syndrome (ARDS). expand
To evaluate the safety and efficacy of intravenous (IV) administration of bone marrow mesenchymal stem cell derived extracellular vesicles (EVs), ExoFlo, versus placebo for the treatment of hospitalized patients with moderate-to-severe Acute Respiratory Distress Syndrome (ARDS). Type: Interventional Start Date: Jul 2022 |
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Using Biomarkers to Help Guide Safe Immunotherapy Discontinuation in Patients With Unresectable Sta1
ECOG-ACRIN Cancer Research Group
Advanced Melanoma
Clinical Stage III Cutaneous Melanoma AJCC v8
Clinical Stage IV Cutaneous Melanoma AJCC v8
Melanoma of Unknown Primary
Pathologic Stage IIIB Cutaneous Melanoma AJCC v8
This phase II trial investigates how well biomarkers on PET/CT imaging drive early
discontinuation of anti-PD-1 therapy in patients with stage IIIB-IV melanoma that cannot
be removed by surgery (unresectable). Anti-PD-1 therapy has become a standard therapy
option for patients with unresectable mel1 expand
This phase II trial investigates how well biomarkers on PET/CT imaging drive early discontinuation of anti-PD-1 therapy in patients with stage IIIB-IV melanoma that cannot be removed by surgery (unresectable). Anti-PD-1 therapy has become a standard therapy option for patients with unresectable melanoma. This trial is being done to determine if doctors can safely shorten the use of standard of care anti-PD1 therapy for melanoma by using biomarkers seen on PET/CT imaging and tumor biopsy. Type: Interventional Start Date: Feb 2021 |
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Testing Continuous Versus Intermittent Treatment With the Study Drug Zanubrutinib for Older Patient1
Alliance for Clinical Trials in Oncology
Mantle Cell Lymphoma
This phase III trial tests whether continuous or intermittent zanubrutinib after
achieving a complete remission (CR) with rituximab works in older adult patients with
mantle cell lymphoma (MCL) who have not received treatment in the past (previously
untreated). Rituximab is a monoclonal antibody th1 expand
This phase III trial tests whether continuous or intermittent zanubrutinib after achieving a complete remission (CR) with rituximab works in older adult patients with mantle cell lymphoma (MCL) who have not received treatment in the past (previously untreated). Rituximab is a monoclonal antibody that may interfere with the ability of cancer cells to grow and spread. Zanubrutinib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. When zanubrutinib is used in MCL, the current standard of care is to continue administering the drug indefinitely until disease progression. This continuous treatment comes with clinical as well as financial toxicity, which could be especially detrimental in older patients. For patients who achieve a CR after initial zanubrutinib plus rituximab therapy, it may be safe and equally effective to stop treatment and restart zanubrutinib upon disease progression rather than continuing indefinitely in previously untreated older adult patients with MCL. Type: Interventional Start Date: Oct 2023 |
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Testing Drug Treatments After CAR T-cell Therapy in Patients With Relapsed/Refractory Diffuse Large1
SWOG Cancer Research Network
Diffuse Large B-Cell Lymphoma
Grade 3b Follicular Lymphoma
Primary Mediastinal (Thymic) Large B-Cell Lymphoma
Recurrent Diffuse Large B-Cell Lymphoma
Refractory Diffuse Large B-Cell Lymphoma
This phase II trial tests whether mosunetuzumab and/or polatuzumab vedotin helps benefit
patients who have received chemotherapy (fludarabine and cyclophosphamide) followed by
chimeric antigen receptor (CAR) T-cell therapy (tisagenlecleucel, axicabtagene
ciloleucel, or lisocabtagene maraleucel) for1 expand
This phase II trial tests whether mosunetuzumab and/or polatuzumab vedotin helps benefit patients who have received chemotherapy (fludarabine and cyclophosphamide) followed by chimeric antigen receptor (CAR) T-cell therapy (tisagenlecleucel, axicabtagene ciloleucel, or lisocabtagene maraleucel) for diffuse large B-cell lymphoma that has come back (recurrent) or that does not respond to treatment (refractory) or grade IIIb follicular lymphoma. Mosunetuzumab is a monoclonal antibody that may interfere with the ability of cancer cells to grow and spread. Polatuzumab vedotin is a monoclonal antibody, called polatuzumab, linked to a drug called vedotin. Polatuzumab is a form of targeted therapy because it attaches to specific molecules (receptors) on the surface of cancer cells, and delivers vedotin to kill them. Chemotherapy drugs, such as fludarabine and cyclophosphamide, 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. CAR T-cell therapy is a type of treatment in which a patient's T cells (a type of immune system cell) are changed in the laboratory so they will attack cancer cells. T cells are taken from a patient's blood. Then the gene for a special receptor that binds to a certain protein on the patient's cancer cells is added to the T cells in the laboratory. The special receptor is called a chimeric antigen receptor. Large numbers of the CAR T cells are grown in the laboratory and given to the patient by infusion for treatment of certain cancers. Giving mosunetuzumab and/or polatuzumab vedotin after chemotherapy and CAR T-cell therapy may be more effective at controlling or shrinking the cancer than not giving them. Type: Interventional Start Date: Jun 2023 |
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Comparing Sentinel Lymph Node (SLN) Biopsy With Standard Neck Dissection for Patients With Early-St1
NRG Oncology
Buccal Mucosa Squamous Cell Carcinoma
Floor of Mouth Squamous Cell Carcinoma
Gingival Squamous Cell Carcinoma
Hard Palate Squamous Cell Carcinoma
Lip Squamous Cell Carcinoma
This phase II/III trial studies how well sentinel lymph node biopsy works and compares
sentinel lymph node biopsy surgery to standard neck dissection as part of the treatment
for early-stage oral cavity cancer. Sentinel lymph node biopsy surgery is a procedure
that removes a smaller number of lymph1 expand
This phase II/III trial studies how well sentinel lymph node biopsy works and compares sentinel lymph node biopsy surgery to standard neck dissection as part of the treatment for early-stage oral cavity cancer. Sentinel lymph node biopsy surgery is a procedure that removes a smaller number of lymph nodes from your neck because it uses an imaging agent to see which lymph nodes are most likely to have cancer. Standard neck dissection, such as elective neck dissection, removes many of the lymph nodes in your neck. Using sentinel lymph node biopsy surgery may work better in treating patients with early-stage oral cavity cancer compared to standard elective neck dissection. Type: Interventional Start Date: Sep 2020 |
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Testing Longer Duration Radiation Therapy Versus the Usual Radiation Therapy in Patients With Cance1
NRG Oncology
Anatomic Stage IV Breast Cancer AJCC v8
Metastatic Breast Carcinoma
Metastatic Digestive System Carcinoma
Metastatic Lung Non-Small Cell Carcinoma
Metastatic Malignant Neoplasm in the Brain
This phase III trial compares the effectiveness of fractionated stereotactic radiosurgery
(FSRS) to usual care stereotactic radiosurgery (SRS) in treating patients with cancer
that has spread from where it first started to the brain. Radiation therapy uses high
energy x-rays to kill tumor cells and1 expand
This phase III trial compares the effectiveness of fractionated stereotactic radiosurgery (FSRS) to usual care stereotactic radiosurgery (SRS) in treating patients with cancer that has spread from where it first started to the brain. Radiation therapy uses high energy x-rays to kill tumor cells and shrink tumors. FSRS delivers a high dose of radiation to the tumor over 3 treatments. SRS is a type of external radiation therapy that uses special equipment to position the patient and precisely give a single large dose of radiation to a tumor. FSRS may be more effective compared to SRS in treating patients with cancer that has spread to the brain. Type: Interventional Start Date: Dec 2024 |
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Comparing Rituximab and Mosunetuzumab Drug Treatments for People With Low Tumor Burden Follicular L1
National Cancer Institute (NCI)
Classic Follicular Lymphoma
Follicular Lymphoma With Unusual Cytological Features
This phase III trial compares the effectiveness of rituximab to mosunetuzumab in treating
patients with follicular lymphoma with a low tumor burden. Rituximab is a monoclonal
antibody. It binds to a protein called CD20, which is found on B cells (a type of white
blood cell) and some types of cancer1 expand
This phase III trial compares the effectiveness of rituximab to mosunetuzumab in treating patients with follicular lymphoma with a low tumor burden. Rituximab is a monoclonal antibody. It binds to a protein called CD20, which is found on B cells (a type of white blood cell) and some types of cancer cells. This may help the immune system kill cancer cells. Mosunetuzumab is a monoclonal antibody that may interfere with the ability of cancer cells to grow and spread. It is not yet known if giving rituximab or mosunetuzumab works better in treating patients with follicular lymphoma with a low tumor burden. Type: Interventional Start Date: Oct 2024 |
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A Feasibility Study Evaluating a Role for Maintenance Therapy in Patients With Biochemically Progre1
University of Arkansas
Castration Sensitive Prostate Cancer
The goal of this clinical trial is to assess the feasibility of adding a combination of
metformin and turmeric as part of a nutritional intervention regimen to the current
standard of care, namely, intermittent Androgen Deprivation Therapy (iADT), for patients
with castration sensitive biochemical1 expand
The goal of this clinical trial is to assess the feasibility of adding a combination of metformin and turmeric as part of a nutritional intervention regimen to the current standard of care, namely, intermittent Androgen Deprivation Therapy (iADT), for patients with castration sensitive biochemical progressive prostate cancer. The main objectives are: - Assess the feasibility of the study population and enrollment. - Evaluate time to PSA relapse with nutritional intervention on iADT. Participants who are receiving iADT will be dispensed Metformin and turmeric and complete a pill diary. Participants will also have blood and stool samples collected and complete quality of life questionnaires. The long-term goal is to further assess the efficacy and safety of this nutritional regimen and the roles of metabolic syndrome, microenvironment/microbiome, and genomic vs epigenomic profiles in the care of these patients through a clinical trial. Type: Interventional Start Date: Apr 2024 |
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Testing Cabozantinib With or Without Atezolizumab in Patients With Advanced Papillary Kidney Cancer1
National Cancer Institute (NCI)
Metastatic Papillary Renal Cell Carcinoma
Stage IV Renal Cell Cancer AJCC v8
This phase II trial compares the effect of atezolizumab in combination with usual
treatment with cabozantinib to cabozantinib alone in patients with papillary renal cell
carcinoma that has spread from where it first started (primary site) to other places in
the body (metastatic). Papillary renal ce1 expand
This phase II trial compares the effect of atezolizumab in combination with usual treatment with cabozantinib to cabozantinib alone in patients with papillary renal cell carcinoma that has spread from where it first started (primary site) to other places in the body (metastatic). Papillary renal cell carcinoma (PRCC) is a type of kidney cancer that forms in the lining of the tiny tubes in the kidney that return filtered substances that the body needs back to the blood and remove extra fluid and waste as urine. Most papillary tumors look like long, thin finger-like growths under a microscope. It is also called papillary kidney cancer or PRCC. Immunotherapy with monoclonal antibodies, such as atezolizumab, may help the body's immune system attack the tumor and may interfere with the ability of tumor cells to grow and spread. Cabozantinib is in a class of medications called kinase inhibitors. It works by blocking the action of an abnormal protein that signals tumor cells to multiply and may also prevent the growth of new blood vessels that tumors need to grow. By these actions it may help slow or stop the spread of tumor cells. Combination therapy with atezolizumab and cabozantinib may shrink the tumor and allow a longer survival time in patients with metastatic renal cell carcinoma. Type: Interventional Start Date: Mar 2023 |
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Gemcitabine and Cisplatin Without Cystectomy for Patients With Muscle Invasive Bladder Urothelial C1
Alliance for Clinical Trials in Oncology
Infiltrating Bladder Urothelial Carcinoma
Stage II Bladder Urothelial Carcinoma
Stage III Bladder Urothelial Carcinoma
This phase II trial studies how well gemcitabine hydrochloride and cisplatin work in
treating participants with invasive bladder urothelial cancer. Drugs used in
chemotherapy, such as gemcitabine hydrochloride and cisplatin, work in different ways to
stop the growth of tumor cells, either by killin1 expand
This phase II trial studies how well gemcitabine hydrochloride and cisplatin work in treating participants with invasive bladder urothelial cancer. Drugs used in chemotherapy, such as gemcitabine hydrochloride and cisplatin, 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. Type: Interventional Start Date: Dec 2018 |
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Comparing Combinations of Targeted Drugs for Advanced Non-Small Cell Lung Cancer That Has EGFR and1
SWOG Cancer Research Network
Recurrent Lung Non-Small Cell Carcinoma
Stage IV Lung Cancer AJCC v8
This phase II Lung-MAP treatment trial test the combination of targeted drugs
(capmatinib, osimertinib, and/or ramucirumab) in treating patients with non-small cell
lung cancer that may have spread from where it first started to nearby tissue, lymph
nodes, or distant parts of the body (advanced) an1 expand
This phase II Lung-MAP treatment trial test the combination of targeted drugs (capmatinib, osimertinib, and/or ramucirumab) in treating patients with non-small cell lung cancer that may have spread from where it first started to nearby tissue, lymph nodes, or distant parts of the body (advanced) and that has EGFR and MET gene changes. Capmatinib and osimertinib are in a class of medications called kinase inhibitors. They work by blocking the action of the abnormal protein that signals cancer cells to multiply. This helps stop or slow the spread of cancer cells and may help shrink tumors. Ramucirumab is a monoclonal antibody that may prevent the growth of new blood vessels that tumors need to grow. Giving capmatinib, osimertinib, and/or ramucirumab and targeting abnormal gene changes in tumor cells may be effective in shrinking or stabilizing advanced non-small cell lung cancer. Type: Interventional Start Date: May 2023 |
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Testing the Addition of Anti-Cancer Drug, Cetuximab, to Standard of Care Treatment (Pembrolizumab)1
National Cancer Institute (NCI)
Metastatic Head and Neck Squamous Cell Carcinoma
Metastatic Hypopharyngeal Squamous Cell Carcinoma
Metastatic Laryngeal Squamous Cell Carcinoma
Metastatic Oral Cavity Squamous Cell Carcinoma
Metastatic Oropharyngeal Squamous Cell Carcinoma
This phase III trial compares the effect of adding cetuximab to pembrolizumab versus
pembrolizumab alone in treating patients with head and neck squamous cell carcinoma
(HNSCC) that has come back after a period of improvement (recurrent) and/or that has
spread from where it first started (primary s1 expand
This phase III trial compares the effect of adding cetuximab to pembrolizumab versus pembrolizumab alone in treating patients with head and neck squamous cell carcinoma (HNSCC) that has come back after a period of improvement (recurrent) and/or that has spread from where it first started (primary site) to other places in the body (metastatic). Cetuximab is in a class of medications called monoclonal antibodies. It binds to a protein called EGFR, which is found on some types of tumor cells. This may help keep tumor cells from growing. Immunotherapy with monoclonal antibodies, such as pembrolizumab, may help the body's immune system attack the tumor, and may interfere with the ability of tumor cells to grow and spread. Giving cetuximab and pembrolizumab together may be more effective at treating patients with recurrent and/or metastatic HNSCC than pembrolizumab alone. Type: Interventional Start Date: Mar 2025 |
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BiCaZO: A Study Combining Two Immunotherapies (Cabozantinib and Nivolumab) to Treat Patients With A1
National Cancer Institute (NCI)
Clinical Stage III Cutaneous Melanoma AJCC v8
Clinical Stage III HPV-Mediated (p16-Positive) Oropharyngeal Carcinoma AJCC v8
Clinical Stage IV Cutaneous Melanoma AJCC v8
Clinical Stage IV HPV-Mediated (p16-Positive) Oropharyngeal Carcinoma AJCC v8
Locally Recurrent Head and Neck Squamous Cell Carcinoma
This phase II trial studies the good and bad effects of the combination of drugs called
cabozantinib and nivolumab in treating patients with melanoma or squamous cell head and
neck cancer that may have spread from where it first started to nearby tissue, lymph
nodes, or distant parts of the body (a1 expand
This phase II trial studies the good and bad effects of the combination of drugs called cabozantinib and nivolumab in treating patients with melanoma or squamous cell head and neck cancer that may have spread from where it first started to nearby tissue, lymph nodes, or distant parts of the body (advanced). Cabozantinib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Immunotherapy with monoclonal antibodies, such as nivolumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. This trial may help doctors determine how quickly patients can be divided into groups based on biomarkers in their tumors. A biomarker is a biological molecule found in the blood, other body fluids, or in tissues that is a sign of a normal or abnormal process or a sign of a condition or disease. A biomarker may be used to see how well the body responds to a treatment for a disease or condition. The two biomarkers that this trial is studying are "tumor mutational burden" and "tumor inflammation signature." Another purpose of this trial is to help doctors learn if cabozantinib and nivolumab shrink or stabilize the cancer, and whether patients respond differently to the combination depending on the status of the biomarkers. Type: Interventional Start Date: Dec 2022 |
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Testing Proton Craniospinal Radiation Therapy Versus the Usual Radiation Therapy for Leptomeningeal1
NRG Oncology
Anatomic Stage IV Breast Cancer AJCC v8
Metastatic Breast Carcinoma
Metastatic Lung Non-Small Cell Carcinoma
Metastatic Malignant Neoplasm in the Leptomeninges
Stage IV Lung Cancer AJCC v8
This phase III trial compares proton craniospinal irradiation (pCSI) to involved-field
radiation therapy (IFRT) for the treatment of breast or non-small cell lung cancer that
has spread from where it first started to the cerebrospinal fluid filled space that
surrounds the brain and spinal cord (lep1 expand
This phase III trial compares proton craniospinal irradiation (pCSI) to involved-field radiation therapy (IFRT) for the treatment of breast or non-small cell lung cancer that has spread from where it first started to the cerebrospinal fluid filled space that surrounds the brain and spinal cord (leptomeningeal metastasis). Patients with leptomeningeal metastasis (LM) may develop multiple areas of nervous system (neurologic) impairment that can be life-threatening. Radiation therapy (RT) effectively relieves local symptoms due to LM. RT uses high energy radiography (x-rays), particles, or radioactive seeds to kill cancer cells and shrink tumors. IFRT is commonly used to treat symptoms of LM. IFRT is radiation treatment that uses x-rays to treat specific areas of LM and to relieve and/or prevent symptoms. pCSI uses protons that can be directed with more accuracy than x-rays which allows treatment of the entire central nervous system space containing the cerebrospinal fluid (CSF), brain, and spinal cord. The pCSI treatment could delay the worsening of LM. Giving pCSI may be better than IFRT in treating LM in patients with breast or non-small cell lung cancer. Type: Interventional Start Date: Mar 2025 |
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A Phase 1 Study of CTIM-76 in Patients With Recurring Ovarian Cancer and Other Advanced Solid Tumors
Context Therapeutics Inc.
Platinum-resistant Ovarian Cancer
Testicular Cancer
Endometrial Cancer
This is a Phase 1a/1b, open-label, dose escalation and expansion study to evaluate the
safety and efficacy of CTIM-76 (study drug), a CLDN6-directed T cell-engaging bispecific
antibody, in participants with platinum-refractory/resistant ovarian cancer (PRROC) and
other advanced CLDN6-positive solid1 expand
This is a Phase 1a/1b, open-label, dose escalation and expansion study to evaluate the safety and efficacy of CTIM-76 (study drug), a CLDN6-directed T cell-engaging bispecific antibody, in participants with platinum-refractory/resistant ovarian cancer (PRROC) and other advanced CLDN6-positive solid tumors (i.e., testicular and endometrial). Type: Interventional Start Date: Jul 2024 |
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Testing the Addition of Duvelisib or CC-486 to the Usual Treatment for Peripheral T-Cell Lymphoma
Alliance for Clinical Trials in Oncology
Angioimmunoblastic T-cell Lymphoma
Enteropathy-Associated T-Cell Lymphoma
Follicular T-Cell Lymphoma
Mature T-Cell and NK-Cell Non-Hodgkin Lymphoma
Monomorphic Epitheliotropic Intestinal T-Cell Lymphoma
This phase II trial studies the effect of duvelisib or CC-486 and usual chemotherapy
consisting of cyclophosphamide, doxorubicin, vincristine, etoposide, and prednisone in
treating patients with peripheral T-cell lymphoma. Duvelisib may stop the growth of
cancer cells by blocking some of the enzyme1 expand
This phase II trial studies the effect of duvelisib or CC-486 and usual chemotherapy consisting of cyclophosphamide, doxorubicin, vincristine, etoposide, and prednisone in treating patients with peripheral T-cell lymphoma. Duvelisib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Chemotherapy drugs, such as CC-486, cyclophosphamide, doxorubicin, vincristine, etoposide and prednisone, 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. This trial may help find out if this approach is better or worse than the usual approach for treating peripheral T-cell lymphoma. Type: Interventional Start Date: Oct 2021 |
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Comparing Proton Therapy to Photon Radiation Therapy for Esophageal Cancer
NRG Oncology
Clinical Stage I Esophageal Adenocarcinoma AJCC v8
Clinical Stage I Esophageal Squamous Cell Carcinoma AJCC v8
Clinical Stage I Gastroesophageal Junction Adenocarcinoma AJCC v8
Clinical Stage II Esophageal Adenocarcinoma AJCC v8
Clinical Stage II Esophageal Squamous Cell Carcinoma AJCC v8
This trial studies how well proton beam radiation therapy compared with intensity
modulated photon radiotherapy works in treating patients with stage I-IVA esophageal
cancer. Proton beam radiation therapy uses a beam of protons (rather than x-rays) to send
radiation inside the body to the tumor wit1 expand
This trial studies how well proton beam radiation therapy compared with intensity modulated photon radiotherapy works in treating patients with stage I-IVA esophageal cancer. Proton beam radiation therapy uses a beam of protons (rather than x-rays) to send radiation inside the body to the tumor without damaging much of the healthy tissue around it. Intensity modulated photon radiotherapy uses high-energy x-rays to deliver radiation directly to the tumor without damaging much of the healthy tissue around it. It is not yet known whether proton beam therapy or intensity modulated photon radiotherapy will work better in treating patients with esophageal cancer. Type: Interventional Start Date: Jun 2019 |
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Transformative Research in Diabetic Nephropathy
University of Pennsylvania
Diabetic Nephropathies
Diabetic Glomerulosclerosis
This is a prospective, observational, cohort study of patients with a clinical diagnosis
of diabetes who are undergoing clinically indicated kidney biopsy. The intent is to
collect, process, and study kidney tissue and to harvest blood, urine and genetic
materials to elucidate molecular pathways an1 expand
This is a prospective, observational, cohort study of patients with a clinical diagnosis of diabetes who are undergoing clinically indicated kidney biopsy. The intent is to collect, process, and study kidney tissue and to harvest blood, urine and genetic materials to elucidate molecular pathways and link them to biomarkers that characterize those patients have a rapid decline in kidney function (> 5 mL/min/1.73m2/year) from those with lesser degrees of kidney function change over the period of observation. High through-put genomic analysis associated with genetic and biomarker testing will serve to identify key potential therapeutic targets for DKD by comparing patients with rapid and slow progression patterns. Each participating clinical site will search for, consent, harvest the biopsy sample, and enroll the participants as required for the TRIDENT protocol. Type: Observational Start Date: Dec 2016 |
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A Study to Compare Two Surgical Procedures in Individuals With BRCA1 Mutations to Assess Reduced Ri1
NRG Oncology
Ovarian Carcinoma
This clinical trial evaluates how well two surgical procedures (bilateral salpingectomy
and bilateral salpingo-oophorectomy) work in reducing the risk of ovarian cancer for
individuals with BRCA1 mutations. Bilateral salpingectomy involves the surgical removal
of fallopian tubes, and bilateral salp1 expand
This clinical trial evaluates how well two surgical procedures (bilateral salpingectomy and bilateral salpingo-oophorectomy) work in reducing the risk of ovarian cancer for individuals with BRCA1 mutations. Bilateral salpingectomy involves the surgical removal of fallopian tubes, and bilateral salpingo-oophorectomy involves the surgical removal of both the fallopian tubes and ovaries. This study may help doctors determine if the two surgical procedures are nearly the same for ovarian cancer risk reduction for women with BRCA1 mutations. Type: Interventional Start Date: Sep 2020 |
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Testing the Addition of Herceptin Hylecta or Phesgo to the Usual Chemotherapy for HER2 Positive End1
National Cancer Institute (NCI)
Endometrial Carcinoma
Endometrial Clear Cell Adenocarcinoma
Endometrial Dedifferentiated Carcinoma
Endometrial Endometrioid Adenocarcinoma
Endometrial Mixed Cell Adenocarcinoma
This phase III trial tests whether adding trastuzumab and hyaluronidase-oysk (Herceptin
Hylecta [TM]) or pertuzumab, trastuzumab and hyaluronidase-zzxf (Phesgo [TM]) to the
usual chemotherapy (paclitaxel and carboplatin) works to shrink tumors in patients with
HER2 positive endometrial cancer. Tras1 expand
This phase III trial tests whether adding trastuzumab and hyaluronidase-oysk (Herceptin Hylecta [TM]) or pertuzumab, trastuzumab and hyaluronidase-zzxf (Phesgo [TM]) to the usual chemotherapy (paclitaxel and carboplatin) works to shrink tumors in patients with HER2 positive endometrial cancer. Trastuzumab and pertuzumab are monoclonal antibodies and forms of targeted therapy that attach to specific molecules (receptors) on the surface of tumor cells, known as HER2 receptors. When trastuzumab or pertuzumab attach to HER2 receptors, the signals that tell the cells to grow are blocked and the tumor cell may be marked for destruction by the body's immune system. Hyaluronidase is an endoglycosidase. It helps to keep pertuzumab and trastuzumab in the body longer, so that these medications will have a greater effect. Hyaluronidase also allows trastuzumab and trastuzumab/pertuzumab to be given by injection under the skin and shortens their administration time compared to trastuzumab or pertuzumab alone. Paclitaxel is a taxane and in a class of medications called antimicrotubule agents. It stops tumor cells from growing and dividing and may kill them. Carboplatin is in a class of medications known as platinum-containing compounds. It works in a way similar to the anticancer drug cisplatin, but may be better tolerated than cisplatin. Carboplatin works by killing, stopping or slowing the growth of tumor cells. Giving Herceptin Hylecta or Phesgo in combination with paclitaxel and carboplatin may shrink the tumor and prevent the cancer from coming back in patients with HER2 positive endometrial cancer. Type: Interventional Start Date: Nov 2022 |
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Letrozole With or Without Paclitaxel and Carboplatin in Treating Patients With Stage II-IV Ovarian,1
NRG Oncology
Low Grade Fallopian Tube Serous Adenocarcinoma
Ovarian Low Grade Serous Adenocarcinoma
Primary Peritoneal Low Grade Serous Adenocarcinoma
Stage II Fallopian Tube Cancer AJCC v8
Stage II Ovarian Cancer AJCC v8
This phase III trial studies how well letrozole with or without paclitaxel and
carboplatin works in treating patients with stage II-IV low-grade serous carcinoma of the
ovary, fallopian tube, or peritoneum. Letrozole is an enzyme inhibitor that lowers the
amount of estrogen made by the body which i1 expand
This phase III trial studies how well letrozole with or without paclitaxel and carboplatin works in treating patients with stage II-IV low-grade serous carcinoma of the ovary, fallopian tube, or peritoneum. Letrozole is an enzyme inhibitor that lowers the amount of estrogen made by the body which in turn may stop the growth of tumor cells that need estrogen to grow. Drugs used in chemotherapy, such as paclitaxel and carboplatin, 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 giving letrozole alone or in combination with paclitaxel and carboplatin works better in treating patients with low-grade serous carcinoma of the ovary, fallopian tube, or peritoneum compared to paclitaxel and carboplatin without letrozole. Type: Interventional Start Date: Sep 2019 |
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Registry Study for Radiation Therapy Outcomes
Proton Collaborative Group
Neoplasms
The purpose of this research study is to collect and analyze information from patients
being treated with various forms of radiation therapy. expand
The purpose of this research study is to collect and analyze information from patients being treated with various forms of radiation therapy. Type: Observational [Patient Registry] Start Date: Jun 2009 |
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A Study of Sovilnesib in Subjects With Ovarian Cancer
Volastra Therapeutics, Inc.
High Grade Serous Adenocarcinoma of Ovary
Fallopian Tube Cancer
Primary Peritoneal Carcinoma
Chromosomal Instability
This is a randomized, phase 1b study to assess the safety, tolerability, pharmacokinetics
(PK), and efficacy of sovilnesib at different dose levels to establish the Recommended
Phase 2 Dose (RP2D) of sovilnesib in subjects with high grade serous ovarian cancer
(HGSOC). expand
This is a randomized, phase 1b study to assess the safety, tolerability, pharmacokinetics (PK), and efficacy of sovilnesib at different dose levels to establish the Recommended Phase 2 Dose (RP2D) of sovilnesib in subjects with high grade serous ovarian cancer (HGSOC). Type: Interventional Start Date: Apr 2024 |
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A Clinical Trial of Four Medicines (Elranatamab Plus Carfilzomib and Dexamethasone or Maplirpacept)1
Pfizer
Multiple Myeloma
The main purpose of the study is to evaluate the safety and tolerability of the
combination of elranatamab and carfilzomib and dexamethasone or elranatamab and
maplirpacept.
There are 2 parts to this study. Part 1 will evaluate the safety and tolerability of
elranatamab when given in combination w1 expand
The main purpose of the study is to evaluate the safety and tolerability of the combination of elranatamab and carfilzomib and dexamethasone or elranatamab and maplirpacept. There are 2 parts to this study. Part 1 will evaluate the safety and tolerability of elranatamab when given in combination with carfilzomib plus dexamethasone. Part 2 has 2 arms. The first will evaluate the safety and tolerability of elranatamab when given in combination with maplirpacept. The second will identify the optimal dose(s) of elranatamab plus maplirpacept. All study medicines are given over 4-week cycles. Everyone taking part in this study will receive elranatamab as a shot under the skin. Participants in Part 1 will also receive weekly carfilzomib as an IV infusion (given directly into a vein) and dexamethasone either by mouth (as a pill) or by IV infusion. Participants in Part 2 will receive elranatamab in combination with maplirpacept as an IV infusion (given directly into a vein) The investigators will examine the experiences of people receiving the study medicines. This will help determine if the study medicines are safe and can be used for multiple myeloma treatment. Participants will take part in this study for about 2 years after the first dose. Type: Interventional Start Date: Dec 2022 |