
Search Clinical Trials
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A Study Evaluating the Effectiveness and Safety of Risdiplam Administered as an Early Intervention1
Hoffmann-La Roche
Muscular Atrophy, Spinal
This is an open-label, single-arm, multicenter clinical study to evaluate the
effectiveness and safety of risdiplam administered as an early intervention in pediatric
participants with spinal muscular atrophy (SMA) and 2 SMN2 copies who have previously
received onasemnogene abeparvovec. Participant1 expand
This is an open-label, single-arm, multicenter clinical study to evaluate the effectiveness and safety of risdiplam administered as an early intervention in pediatric participants with spinal muscular atrophy (SMA) and 2 SMN2 copies who have previously received onasemnogene abeparvovec. Participants are children < 2 years of age genetically diagnosed with SMA. Type: Interventional Start Date: May 2024 |
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Toci +/- SOC Chemo for Metastatic Triple Negative and ER-positive, HER2-negative Breast Cancers
Kathy Miller
Metastatic Breast Cancer
Triple Negative Breast Cancer
Estrogen-receptor-low Breast Cancer
ER Positive, HER2 Negative Breast Cancer
This is a randomized Phase II study of standard of care (SOC) chemotherapy monotherapy
vs. SOC chemotherapy combined with tocilizumab biosimilar in Black and non-Black patients
with metastatic triple negative and ER-positive, HER2-negative breast cancer. expand
This is a randomized Phase II study of standard of care (SOC) chemotherapy monotherapy vs. SOC chemotherapy combined with tocilizumab biosimilar in Black and non-Black patients with metastatic triple negative and ER-positive, HER2-negative breast cancer. Type: Interventional Start Date: Jul 2024 |
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Engaging Diverse and Underserved Communities in Cancer Awareness Training and Education
University of California, Davis
Cancer Awareness and Prevention Education
The University of California Davis, Comprehensive Cancer Center's (UCDCCC) Office of
Community Outreach and Engagement (OCOE) serves the 19 catchment counties which
approximately consists of 5 million residents. Currently, the overall catchment
population cancer screening rates fall below 80%. The1 expand
The University of California Davis, Comprehensive Cancer Center's (UCDCCC) Office of Community Outreach and Engagement (OCOE) serves the 19 catchment counties which approximately consists of 5 million residents. Currently, the overall catchment population cancer screening rates fall below 80%. The aim of OCOE is to increase cancer education (prevention, screening, and vaccination) and training. Through education, and encouraging participation in routine screening for early detection, this can help increase cancer knowledge. In addition to cancer education, OCOE wants to educate community members regarding modifiable risk factors which include tobacco usage, being overweight/obese (physical inactivity/poor nutrition), and lack of immunizations. By increasing knowledge of cancer prevention, screening, and vaccination this will help community members become more aware of their cancer risk. Type: Observational Start Date: Mar 2023 |
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The Teaspoon Study - Telefitting Spinal Cord Stimulation for Pain
University of Minnesota
Spinal Cord Injuries
Chronic Pain
Spinal cord stimulation modulates the nervous system to effectively block pain signals
originating from the back and legs. Spinal cord stimulation has been shown to improve
chronic pain, improve quality of life, and reduce disability. Unfortunately, spinal cord
stimulation has a high trial failure1 expand
Spinal cord stimulation modulates the nervous system to effectively block pain signals originating from the back and legs. Spinal cord stimulation has been shown to improve chronic pain, improve quality of life, and reduce disability. Unfortunately, spinal cord stimulation has a high trial failure rate and a high long-term failure rate. This study consists of a prospective cohort of patients clinically scheduled to undergo spinal cord stimulation for the treatment of chronic back pain or radiculopathy. Participants will undergo a structured optimization evaluating existing types of stimulation (tonic, burst, and multistim). Each participant will try out all types of available stimulation but be blinded to the type. Over the course of four months, each participant will evaluate each type of stimulation by reporting daily pain scores. Thompson sampling will be used to identify which setting produces the biggest improvement in pain and recommend it for future use. Participants will follow up routinely to collect laboratory, behavioral, and survey responses to test for the feasibility of obtaining data explaining pain phenotype. Type: Interventional Start Date: Oct 2023 |
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Decoding and Modulating Affective Brain States
University of Pennsylvania
Rumination
Major Depressive Disorder
Anxiety
The research study is being conducted to study brain patterns of negative emotion and
develop personalized brain stimulation protocols to disrupt these patterns with
transcranial magnetic stimulation (TMS). First, the investigators will use functional
Magnetic Resonance Imaging (fMRI) data to gener1 expand
The research study is being conducted to study brain patterns of negative emotion and develop personalized brain stimulation protocols to disrupt these patterns with transcranial magnetic stimulation (TMS). First, the investigators will use functional Magnetic Resonance Imaging (fMRI) data to generate a negative affect map for each participant. Then, the investigators will apply a variety of repetitive transcranial magnetic stimulation (rTMS) sequences while the participant is inside the MRI scanner to determine the optimal and least optimal rTMS frequencies at changing negative affect brain states. Finally, these two frequencies will be tested over two 3-day rTMS neuromodulation sessions to assess whether they can reduce negative emotions. Type: Interventional Start Date: Feb 2023 |
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Collecting Blood Samples From Patients With and Without Cancer to Evaluate Tests for Early Cancer D1
Alliance for Clinical Trials in Oncology
Acute Lymphoblastic Leukemia
Acute Myeloid Leukemia
Ann Arbor Stage I Lymphoma
Ann Arbor Stage II Lymphoma
Ann Arbor Stage III Lymphoma
This study collects blood and tissue samples from patients with cancer and without cancer
to evaluate tests for early cancer detection. Collecting and storing samples of blood and
tissue from patients with and without cancer to study in the laboratory may help
researchers develop tests for the earl1 expand
This study collects blood and tissue samples from patients with cancer and without cancer to evaluate tests for early cancer detection. Collecting and storing samples of blood and tissue from patients with and without cancer to study in the laboratory may help researchers develop tests for the early detection of cancers. Type: Observational Start Date: Aug 2022 |
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Ovarian Tissue Cryopreservation in Post Pubertal (OTC-Post Pubertal)
Erin Rowell
Pediatric Cancer
The purpose of this study is to safely remove ovarian tissue in pediatric patients, who
are at risk for infertility from their medical treatment, for freezing for future
restoration of fertility and hormone function. expand
The purpose of this study is to safely remove ovarian tissue in pediatric patients, who are at risk for infertility from their medical treatment, for freezing for future restoration of fertility and hormone function. Type: Observational [Patient Registry] Start Date: Nov 2017 |
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Five or Ten Year Colonoscopy for 1-2 Non-Advanced Adenomatous Polyps
NRG Oncology
Adenocarcinoma of the Colon
Adenocarcinoma of the Rectum
This trial examines colorectal cancer incidence in participants with 1 to 2 non-advanced
adenomas randomized to surveillance colonoscopy at 10 years compared to participants
randomized to surveillance colonoscopy at 5 and 10 years. expand
This trial examines colorectal cancer incidence in participants with 1 to 2 non-advanced adenomas randomized to surveillance colonoscopy at 10 years compared to participants randomized to surveillance colonoscopy at 5 and 10 years. Type: Interventional Start Date: Feb 2022 |
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A Study Assessing Corneal Endothelial Cells in Participants With Neovascular Age-related Macular De1
Genentech, Inc.
Neovascular Age-related Macular Degeneration
This study will assess corneal endothelial cells in participants with nAMD treated with
PDS refilled every 24 weeks (Q24W). expand
This study will assess corneal endothelial cells in participants with nAMD treated with PDS refilled every 24 weeks (Q24W). Type: Interventional Start Date: Dec 2021 |
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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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A Study Evaluating the Efficacy and Safety of Multiple Treatment Combinations in Participants With1
Hoffmann-La Roche
Inoperable, Locally Advanced or Metastatic, ER-positive Breast Cancer
This is a Phase Ib/II, open-label, multicenter, randomized umbrella study in participants
with breast cancer. The study is designed with the flexibility to open new treatment arms
as new treatments become available, close existing treatment arms that demonstrate
minimal clinical activity or unaccep1 expand
This is a Phase Ib/II, open-label, multicenter, randomized umbrella study in participants with breast cancer. The study is designed with the flexibility to open new treatment arms as new treatments become available, close existing treatment arms that demonstrate minimal clinical activity or unacceptable toxicity, or modify the patient population. Cohort 1 will focus on participants with inoperable, locally advanced or metastatic, estrogen receptor-positive (ER+), HER2-negative breast cancer who had disease progression during or following treatment with a cyclin-dependent kinase 4/6 inhibitor (CDK4/6i; e.g., palbociclib, ribociclib, abemaciclib) in the first- or second-line setting. Cohort 2 will focus on inoperable, locally advanced or metastatic, ER+, HER2-positive breast cancer with previous progression to standard-of-care anti-HER2 therapies, of which one was a trastuzumab-and-taxane-based systemic therapy (including in the early setting if recurrence occurred within 6 months of finishing adjuvant therapy) and one was a HER2-targeting antibody-drug conjugate (ADC; e.g., ado-trastuzumab emtansine or trastuzumab-deruxtecan) or a HER2-targeting tyrosine kinase inhibitor (TKI; e.g., tucatinib, lapatinib, pyrotinib, or neratinib). Cohort 3 will focus on inoperable, locally advanced or metastatic, ER+, HER2-negative, PIK3CA-mutated breast cancer with resistance to adjuvant endocrine therapy. Type: Interventional Start Date: Jun 2021 |
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Li-Fraumeni Syndrome/TP53 Biobank
Abramson Cancer Center at Penn Medicine
Li-Fraumeni Syndrome
Li-Fraumeni-Like Syndrome
Li-Fraumeni Syndrome (LFS) and Li-Fraumeni-like (LFL) Syndrome are cancer predisposition
syndromes due to germline aberrations in the TP53 gene. Patients with classical LFS have
a lifetime malignancy risk between 80-90%, with 21% of those cancers occurring by the age
of 15 years. There are establis1 expand
Li-Fraumeni Syndrome (LFS) and Li-Fraumeni-like (LFL) Syndrome are cancer predisposition syndromes due to germline aberrations in the TP53 gene. Patients with classical LFS have a lifetime malignancy risk between 80-90%, with 21% of those cancers occurring by the age of 15 years. There are established guidelines for screening patients with LFS that have led to earlier detection and treatment of cancer in this population. There are a number of important issues facing patients identified to have germline TP53 variations. First, with the advent of massively parallel sequencing, increasing numbers of patients are now being identified with a wide range of clinical phenotypes associated with germline TP53 mutations, and the natural history of these patients is less well understood. Second, surveillance for malignancy in LFS and other TP53-associated syndromes involves frequent laboratory and radiologic studies that are imperfect measures of disease onset; therefore, more specific, less invasive biomarker-driven screening methods are needed. Finally, studies to date have not yet identified whether tumors which form in LFS or other germline TP53-associated tumors have unique aberrations or signatures that could be exploited in precision medicine treatment of these patients. In order to study these important issues in LFS, this protocol will establish a TP53 Clinical Database and Biobank. The Investigator plans to use this biobank to study genotype-phenotype correlations in patients with LFS and other germline TP53-associated syndromes, mechanisms of tumor formation, and novel methods of cancer screening in this high risk population. Type: Observational [Patient Registry] Start Date: Sep 2019 |
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Men at High Genetic Risk for Prostate Cancer
National Cancer Institute (NCI)
Prostatic Neoplasms
Background:
Research studies have shown that genetic changes and family history may increase a man s
risk for prostate cancer. Researchers want to follow the prostate health of men who have
specific genetic changes associated with prostate cancer to help them learn more about
which men are at high1 expand
Background: Research studies have shown that genetic changes and family history may increase a man s risk for prostate cancer. Researchers want to follow the prostate health of men who have specific genetic changes associated with prostate cancer to help them learn more about which men are at higher risk for prostate cancer. Objectives: To study men with specific genetic changes and determine who is at higher risk for getting prostate cancer. To study if certain genetic changes and family history can be used to help prevent or treat prostate cancer. Eligibility: Males between ages 30-75 who have one or more specific genetic changes but without prostate cancer. Design: - This study does not perform genetic testing. All participants must have documented genetic changes and able to provide a copy of the report. - Before enrollment, participants will provide a copy of documented genetic changes and go through a telephone interview to determine eligibility for the study. - On enrollment, participants will have medical and family history review, medication review, physical exam, blood collection for clinical and research testing, and MRI (magnetic resonance imaging) of the prostate. - Every year, participants will repeat the physical exam, medical history, family history, medication review, routine blood tests, including PSA and testosterone. - Every 2 years, participants will repeat all the above plus prostate MRI and blood tests for research. - If, at any time, the physical exam, blood tests or MRI are abnormal, participants may be asked to do a biopsy. - If the biopsy results in prostate cancer, participants will be given counseling on next steps, general treatment recommendations, and then followed with a phone call each year. - Participants may ask to speak with a genetic counselor. Type: Observational Start Date: Mar 2019 |
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Donor T Cell Therapy in Treating Immunocompromised Patients With Adenovirus-Related Disease
M.D. Anderson Cancer Center
Hematopoietic and Lymphoid Cell Neoplasm
Immunocompromised
This phase I trial studies the side effects of allogeneic adenovirus-specific cytotoxic T
lymphocytes (donor T cell therapy) and to see how well they work in treating patients
with a weakened immune system (immunocompromised) and adenovirus-related disease.
Allogeneic adenovirus-specific cytotoxic1 expand
This phase I trial studies the side effects of allogeneic adenovirus-specific cytotoxic T lymphocytes (donor T cell therapy) and to see how well they work in treating patients with a weakened immune system (immunocompromised) and adenovirus-related disease. Allogeneic adenovirus-specific cytotoxic T lymphocytes are made from donated blood cells grown in the laboratory and are designed to kill viruses that can cause infections in immunocompromised patients with adenovirus-related disease. Type: Interventional Start Date: Mar 2018 |
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Dabrafenib and/or Trametinib Rollover Study
Novartis Pharmaceuticals
Melanoma
Non Small Cell Lung Cancer
Solid Tumor
Rare Cancers
High Grade Glioma
This study is to provide access for patients who are receiving treatment with dabrafenib
and/or trametinib in a Novartis-sponsored Oncology Global Development, Global Medical
Affairs or a former GSK-sponsored study who have fulfilled the requirements for the
primary objective, and who are judged by1 expand
This study is to provide access for patients who are receiving treatment with dabrafenib and/or trametinib in a Novartis-sponsored Oncology Global Development, Global Medical Affairs or a former GSK-sponsored study who have fulfilled the requirements for the primary objective, and who are judged by the investigator as benefiting from continued treatment in the parent study as judged by the Investigator at the completion of the parent study. Type: Interventional Start Date: Jan 2018 |
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Impact of NMES and HPRO on Recovery After SAH- Pilot Study
University of Maryland, Baltimore
Subarachnoid Hemorrhage
Muscle Atrophy
Inflammation
Nutritional and Metabolic Disease
The study purpose is to investigate the hypothesis that in adults with SAH, early
neuromuscular electrical stimulation (NMES) and high protein supplementation (HPRO) will
improve muscle mass, metabolic and inflammatory biomarker profiles, compared to SAH
controls receiving standard of care interven1 expand
The study purpose is to investigate the hypothesis that in adults with SAH, early neuromuscular electrical stimulation (NMES) and high protein supplementation (HPRO) will improve muscle mass, metabolic and inflammatory biomarker profiles, compared to SAH controls receiving standard of care interventions for nutrition and mobilization. The investigators will accomplish this by studying the effects of a high protein (HPRO) nutritional treatment as well as NMES intervention have upon muscle wasting and motor strength acutely after SAH. This will be addressed in a prospective trial of SAH patients receiving HRPO with NMES as compared to age and severity-matched SAH patients undergoing standard of care interventions for nutrition and mobilization. Additionally, the study will investigate the impact HPRO and NMES interventions have upon inflammatory cytokines and markers of energy balance. Results of this study will establish evidence for precision nutrition plus early exercise to mitigate the catabolic and inflammatory state produced by SAH to improve muscle, metabolic, and health recovery outcomes. Type: Interventional Start Date: Dec 2017 |
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Study of Biomarker-Based Treatment of Acute Myeloid Leukemia
Beat AML, LLC
Previously Untreated Relapsed Refractory Acute Myeloid Leukemia
This screening and multi-sub-study Phase 1b/2/3 trial will establish a method for genomic
screening followed by assigning and accruing simultaneously to a multi-study "Master
Protocol (BAML-16-001-M1)." The specific subtype of acute myeloid leukemia will determine
which sub-study, within this proto1 expand
This screening and multi-sub-study Phase 1b/2/3 trial will establish a method for genomic screening followed by assigning and accruing simultaneously to a multi-study "Master Protocol (BAML-16-001-M1)." The specific subtype of acute myeloid leukemia will determine which sub-study, within this protocol, a participant will be assigned to evaluate investigational therapies or combinations with the ultimate goal of advancing new targeted therapies for approval. The study also includes marker negative sub-studies which will include all screened patients not eligible for any of the biomarker-driven sub-studies. Patients with myeloid malignancies [e.g. myelodysplastic syndrome (MDS) or other diseases], will be allowed to enroll to Master protocol if there is an available sub-study. Type: Interventional Start Date: Nov 2016 |
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Third Party Viral Specific T-cells (VSTs)
Children's Hospital Medical Center, Cincinnati
Viral Infection
Viral Reactivation
Infection in an Immunocompromised Host
The purpose of this study is to demonstrate that viral specific T-cells (a type of white
blood cell) can be generated from an unrelated donor and given safely to patients with
viral infections. expand
The purpose of this study is to demonstrate that viral specific T-cells (a type of white blood cell) can be generated from an unrelated donor and given safely to patients with viral infections. Type: Interventional Start Date: Sep 2015 |
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UCB Transplant of Inherited Metabolic Diseases With Administration of Intrathecal UCB Derived Oligo1
Joanne Kurtzberg, MD
Adrenoleukodystrophy
Batten Disease
Mucopolysaccharidosis II
Leukodystrophy, Globoid Cell
Leukodystrophy, Metachromatic
The primary objective of the study is to determine the safety and feasibility of
intrathecal administration of DUOC-01 in patients who are undergoing standard treatment
with umbilical cord blood transplant (UCBT) for inborn errors of metabolism and who have
evidence of early demyelinating disease i1 expand
The primary objective of the study is to determine the safety and feasibility of intrathecal administration of DUOC-01 in patients who are undergoing standard treatment with umbilical cord blood transplant (UCBT) for inborn errors of metabolism and who have evidence of early demyelinating disease in the central nervous system (CNS). The secondary objective of the study is to describe the efficacy of UCBT with intrathecal administration of DUOC-01 in these patients. Type: Interventional Start Date: Sep 2014 |
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Donor-Derived Viral Specific T-cells (VSTs)
Children's Hospital Medical Center, Cincinnati
Allogeneic Stem Cell Transplant
Viral Infection
Viral Reactivation
In this research study, the investigators want to learn more about the use of
donor-derived viral specific T-cells (VSTs) to treat viral infections that occur after
allogeneic stem cell transplant. A viral specific T cell is a T lymphocyte (a type of
white blood cell) that kills cells that are infe1 expand
In this research study, the investigators want to learn more about the use of donor-derived viral specific T-cells (VSTs) to treat viral infections that occur after allogeneic stem cell transplant. A viral specific T cell is a T lymphocyte (a type of white blood cell) that kills cells that are infected (particularly with viruses). Allogeneic means the stem cells come from another person. These VSTs are cells specially designed to fight the virus infections that can happen after a bone marrow transplant. The investigators are asking people who have undergone or will undergo an allogeneic stem cell transplant to enroll in this research study, because viral infections are a common problem after allogeneic stem cell transplant and can cause significant complications including death. Stem cell transplant reduces a person's ability to fight infections. There is an increased risk of getting new viral infections or reactivation of viral infections that the patient has had in the past, such as cytomegalovirus (CMV), Epstein-Barr virus (EBV), adenovirus (ADV), BK virus (BKV), and JC virus. There are anti-viral medicines available to treat these infections, though not all patients will respond to the standard treatments. Moreover, treatment of viral infections is expensive and time consuming, with families often administering prolonged treatments with intravenous anti-viral medications, or patients requiring prolonged admissions to the hospital. The medicines can also have side effects like damage to the kidneys or reduction in the blood counts, so in this study the investigators are trying to find an easier way to treat these infections. Type: Interventional Start Date: Feb 2014 |
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Natural History and Biospecimen Acquisition for Children and Adults With Rare Solid Tumors
National Cancer Institute (NCI)
Malignant Solid Tumors
Other Neoplasms Solid Tumors
Pediatric Solid Tumor
Refractory Solid Tumors
Solid Tumor
Background:
Approximately 150 cases of cancer per one million per year are considered rare cancers.
While all tumors originate from genetic changes, a small percentage of these tumors are
familial. Researchers want to study these changes in biological samples from people with
rare tumors in order1 expand
Background: Approximately 150 cases of cancer per one million per year are considered rare cancers. While all tumors originate from genetic changes, a small percentage of these tumors are familial. Researchers want to study these changes in biological samples from people with rare tumors in order to learn more about how these tumors develop. The information obtained from this study may lead to improved screening, preventive guidelines, and treatments. Objective: To better understand rare cancers and hereditary cancer syndromes. Eligibility: People who have a rare tumor, a family history of a rare tumor, a hereditary cancer syndrome, or a mutation that leads to rare tumors. Design: Participants will be screened with questions about their medical history and/or that of their family members. They will give a saliva sample. Participants who have a tumor will have their medical records and tests reviewed. They will answer questions about their wellbeing and needs. They may provide a tumor tissue sample. Participants may also have: - Physical exam - Clinical photography - Blood, urine, saliva, and stool samples taken - Consultation with specialists - A scan that produces a picture of the body. Either one that uses a small amount of radiation, or one that uses a magnetic field. - Genetic testing/genetic counseling. Participants will be contacted once a year. They will answer updated questions about their medical and family history. Participants will be asked to contact the study team if there are changes in their tumors. Participants may be invited to join focus groups for people with the same diagnosis of rare tumors. Participants may be invited to participate in other NIH protocols. **************************************** **************************************** RARE TUMOR LIST: 1. Acinar cell carcinoma of the pancreas 2. Adamantinoma 3. Adenosqaumous carcinoma of the pancreas 4. Adrenocortical carcinoma 5. Alveolar soft part sarcoma 6. Anaplastic Thyroid Cancer 7. Angiosarcoma 8. Atypical Teratoid Rhabdoid Tumor/MRT 9. Carcinoid 10. Carcinoma of Unknown Primary 11. Chondrosarcoma 12. Chondromyxoid fibroma 13. Chordoma 14. Clear cell renal carcinoma 15. Clear Cell Sarcoma 16. Clear cell sarcoma of kidney 17. Conventional chordoma 18. Dedifferentiated chordoma 19. Desmoid 20. Desmoplastic small round cell tumor 21. Epithelioid hemangioendothelioma 22. Esthenioneuroblastoma 23. Ewing Sarcoma 24. Fibrolamellar carcinoma 25. Fusion negative rhabdomyosarcoma 26. Fusion positive renal cell carcinoma 27. Fusion positive rhabdomyosarcoma 28. Gastro-enteropancreatic neuroendocrine tumor 29. Hepatoblastoma 30. Hereditary Diffuse Gastric Cancer 31. Inflammatory myofibroblastic tumor 32. Kaposiform hemangioendothelioma 33. Malignant ectomesenchymal tumor 34. Malignant peripheral nerve sheath tumor 35. Malignant triton tumor 36. Medullary thyroid cancer 37. Mixed acinar adenocarcinoma 38. Mixed acinar neuroendocrine carcinoma 39. Myxoid Liposarcoma 40. Neuroblastoma 41. Neuroendocrine tumors 42. NUT midline carcinoma 43. Osteosarcoma 44. Pancreas ductal adenocarcinoma with squamous features 45. Pancreatic acinar cell carcinoma 46. Papillary renal cell carcinoma 47. Paraganglioma 48. Parosteal Osteosarcoma 49. Periosteal Osteosarcoma 50. Peripheral nerve sheath tumor 51. Peripheral primitive neuroectodermal tumor 52. Pheochromocytoma 53. Pituitary cancer 54. Poorly differentiated chordoma 55. Renal medullary carcinoma 56. Rhabdomyosarcoma 57. Round cell Liposarcoma 58. Schwannoma 59. Sclerosing Epithelioid Fibrosarcoma 60. SDH deficient GIST 61. SMARCB1 deficient tumors 62. SMARCA4 deficient tumors 63. Synovial sarcoma 64. Undifferentiated Sarcoma **************************************** **************************************** Type: Observational Start Date: Jan 2019 |
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DICER1-related Pleuropulmonary Blastoma Cancer Predisposition Syndrome: A Natural History Study
National Cancer Institute (NCI)
Pleuropulmonary Blastoma
Cystic Nephroma
Ovarian Sertoli-Leydig Cell Tumors
Ocular Medulloepithelioma
Nasal Chondromesenchymal Hamartoma
Background:
- Pleuropulmonary blastoma (PPB) is a rare fast-growing lung tumor that is associated
with other, rare tumor types. Most cases of PPB appear in children younger than 6 years
of age. Recently, it has been shown that this condition can be inherited (e.g., mutation
of the DICER1 gene). Re1 expand
Background: - Pleuropulmonary blastoma (PPB) is a rare fast-growing lung tumor that is associated with other, rare tumor types. Most cases of PPB appear in children younger than 6 years of age. Recently, it has been shown that this condition can be inherited (e.g., mutation of the DICER1 gene). Researchers are studying both clinical and genetic aspects of this newly described condition. They are interested in collecting further medical history and genetic information on individuals and close relatives of individuals who have PPB or other rare associated tumors. Objectives: - To study individuals with a personal or a family history of pleuropulmonary blastoma (PPB) or other rare tumors that can be associated with PPB (e.g., cystic nephroma, nasal chondromesenchymal hamartoma, ovarian Sertoli-Leydig cell tumors, ocular medulloepithelioma). Eligibility: - Individuals who have been diagnosed with PPB and/or PPB-related tumors. - Close blood relatives (e.g., parents, siblings, grandparents) of individuals who have been diagnosed with PPB and/or PPB-related tumors. Design: - Interested participants can enroll or inquire about this study by calling 1-800-518-8474. - Participants will be asked to complete family history and medical history questionnaires. They will complete the questionnaire if they are at least 18 years of age, or another person will complete the questionnaire if the key family member is too young to do so on his or her own. - Participants will be asked to sign a medical record release form to allow researchers to examine detailed medical history information. - Participants may be asked to have a physical examination and imaging studies, provide blood and saliva samples, or provide tumor tissue from prior biopsies or cancer surgeries. - Annually, participants will update the family history and individual information questionnaires to document important changes in medical history, and will also update the medical record release form. Participants may be asked to provide additional cheek lining cells and/or blood samples, as well as tumor tissue from any new or planned biopsies or tumor surgeries. - Treatment will not be provided as part of this protocol. Type: Observational Start Date: Feb 2011 |
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Comprehensive Omics Analysis of Pediatric and Adult Solid Tumors and Establishment of a Repository1
National Cancer Institute (NCI)
Sarcoma
Endocrine Tumors
Neuroblastoma
Retinoblastoma
Renal Cancer
Background:
- Laboratory investigators who are studying common childhood cancers are interested in
developing a tissue repository to collect and store blood, serum, tissue, urine, or
tumors of children who have cancer or adults who have common childhood cancers. To
develop this repository, additio1 expand
Background: - Laboratory investigators who are studying common childhood cancers are interested in developing a tissue repository to collect and store blood, serum, tissue, urine, or tumors of children who have cancer or adults who have common childhood cancers. To develop this repository, additional samples will be collected from children and adults who have been diagnosed with common childhood cancers such as leukemia and tumors of the central nervous system. Objectives: - To collect and store blood, serum, tissue, urine, or tumor samples of children who have cancer or adults who have common childhood cancers. Eligibility: - Individuals who have been diagnosed with a common childhood cancer (e.g., leukemia) regardless of patient age. - Children, adolescents, and adults who have been diagnosed with a type of cancer more commonly found in adults. Design: - Extra blood, serum (the liquid part of blood), tissue, urine, or tumor samples will be collected from participants at a time when sampling is required for medical care or as part of a research study. - No additional procedures will be performed for the sole purpose of obtaining additional tumor tissue, aside from what is required for clinical care. Type: Observational Start Date: Apr 2010 |
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Focal Therapy With Stereotactic Body Radiation Therapy (SBRT) for Patients With a Single Prostate T1
National Cancer Institute (NCI)
Prostatic Neoplasms
Prostate Cancer
Prostate Adenocarcinoma
Background:
The current standard treatment of prostate cancer is either surgery or radiation.
Typically, this includes either the removal or radiation of the whole prostate gland.
Many people now seek out focal therapy options to decrease the side effects of treatment.
Until now, several forms of1 expand
Background: The current standard treatment of prostate cancer is either surgery or radiation. Typically, this includes either the removal or radiation of the whole prostate gland. Many people now seek out focal therapy options to decrease the side effects of treatment. Until now, several forms of physical destruction with heat (thermal ablation), cold (cryotherapy), sound waves (HIFU), laser (FLA), and electrical energy (IRE). A new type of radiation (SBRT) may be an effective way to cure men of early-stage prostate cancer with fewer side effects than standard treatments. Objective: To see how people with untreated localized prostate cancer will respond to focal therapy with SBRT. Eligibility: People aged 18 years and older with untreated localized prostate cancer (prostate cancer which has not spread outside of the prostate gland). Design: - Participants will undergo screening including blood tests, an MRI, a PSMA PET/CT (18F-DCFPyL), and a biopsy. - Small, non-radioactive, gold seeds about the size of a grain of rice will be placed in and/or around the tumor to help target the radiation treatment. - Radiation (SBRT) will occur in 2 separate sessions about 1 week apart. No sedation is used, these sessions are painless. Each session will take about 1-2 hours. Participants can go home afterwards. - Follow-up will continue for 2 years with repeat scans (MRI and PSMA PET/CT) and blood (PSA) tests. - After two years, a biopsy will be done to understand the impact of this new treatment on prostate cancer. Type: Interventional Start Date: Oct 2023 |
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PDS01ADC in Combination With Hepatic Artery Infusion Pump (HAIP) and Systemic Therapy for Subjects1
National Cancer Institute (NCI)
Metastatic Colorectal Cancer (Mcrc)
Intrahepatic Cholangiocarcinoma (Icc)
Intrahepatic Bile Duct Cancer
Colorectal Neoplasms
Colorectal Cancer
Background:
One way to treat liver cancer is to deliver chemotherapy drugs only to the liver (and not
to the whole body). Researchers want to see if adding the drug PDS01ADC can improve the
treatment. The drug triggers the immune system to fight cancer.<TAB>
Objective:
To see if treatment with H1 expand
Background: One way to treat liver cancer is to deliver chemotherapy drugs only to the liver (and not to the whole body). Researchers want to see if adding the drug PDS01ADC can improve the treatment. The drug triggers the immune system to fight cancer.<TAB> Objective: To see if treatment with HAIPs to deliver liver-directed FUDR and Dexamethasone chemotherapy in combination with PDS01ADC is effective for certain cancers. Eligibility: People aged 18 and older who have cancer of the bile ducts that is only in the liver, or colorectal cancer that has spread to the liver, or cancer of the adrenal glands that has spread to the liver, who are also receiving or planning to receive standard systemic chemotherapy for their disease. Design: Participants will be screened with: Medical history Physical exam Blood tests Pregnancy test (if needed) Tumor biopsy (if needed) Electrocardiogram Computed tomography (CT) scans Participants will have an abdominal operation. A catheter will be placed into an artery that feeds blood to the liver. The catheter will then be attached to the HAIP. The HAIP will lay under the skin on the left side of the abdomen. All participants will have liver-directed FUDR and Dexamethasone chemotherapy drugs or heparin with saline infused into the HAIP every 2 weeks. PDS01ADC will be injected under the skin every 4 weeks. They will receive this treatment until their cancer gets worse or they have bad side effects. Participants will also receive standard systemic chemotherapy for their disease, assigned based on diagnosis, through an IV by their medical oncologist (at NIH or by a local provider) every 2 weeks. Participants will have 2 study visits at NIH each month. They will have CT scans every 8 weeks. At visits, they will repeat some screening tests. Participants will have a follow-up visit 1 month after treatment ends. Then they will be contacted every 6 months for 5 years. Type: Interventional Start Date: Oct 2022 |