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Набира участници
Natural History and Biospecimen Acquisition for Children and Adults With Rare Solid Tumors
Malignant Solid Tumors Other Neoplasms Solid Tumors Pediatric Solid Tumor Refractory Solid Tumors +1

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 \*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\* \*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*

Начало: 28.01.2019 Край: 31.03.2032 Възраст: от 4 г.
United States National Cancer Institute (NCI) NCT03739827
Набира участници
Non-invasive Glioma Characterization Through Molecular Imaging
Glioma Brain Tumor Primary Brain Tumor Malignant Glioma +1

MRI-based sequences can provide non-invasive quantification of intratumoral 2-hydroxyglutarate (2HG) distribution and tumor cellularity in human gliomas and help guide the development of novel glioma therapies.

Начало: 25.01.2019 Край: 31.01.2027 Възраст: от 18 г.
United States University of Miami NCT03684109
Набира участници Фаза 1/2
Phase 1/2 Study of Linvoseltamab in Adult Patients With Relapsed or Refractory Multiple Myeloma
Multiple Myeloma

The main purpose of this study is to learn about the safety of linvoseltamab and to find out what is the best dose of linvoseltamab to give to patients with multiple myeloma and to look for any signs that linvoseltamab can effectively treat cancer. The study is looking at several other research questions, including: * Side effects that may be experienced by people receiving linvoseltamab * How linvoseltamab works in the body * How much linvoseltamab is present in the blood * How linvoseltamab may work to treat cancer

Начало: 23.01.2019 Край: 16.06.2033 Възраст: от 18 г.
Belgium, Germany, Japan +4 Regeneron Pharmaceuticals NCT03761108
Набира участници
The ImPreSS Trial: Pharmacogenomic Decision Making at Time of Surgery
Surgery

The study is enrolling adults who are scheduled for either inpatient or outpatient elective surgical procedures at The University of Chicago. At pre-operative visits, patients will be consented and a blood sample will be obtained for preemptive genotyping across a panel of actionable germline variants predicting drug response or toxicity risk. Genotyping results will be delivered to participating providers as patient-specific drug-gene clinical decision support summaries using a secured Web portal, the Genomic Prescribing System (GPS). Participating anesthesiologists and critical care and pain management physicians and associated providers from the Department of Anesthesia and Critical Care at the University of Chicago will be invited to receive results for their participating patients. There will be an initial 6- month "run-in" period of the study comprised of approximately 100 enrolled adults in which all patients will have pharmacogenomic results made available to providers. The run-in period will allow for process refinement and GPS delivery to be examined and optimized prior to the randomized phase After the initial run-in period, patients will be randomized to one of two arms - in the pharmacogenomic arm, providers will have access to GPS and pharmacogenomic information, whereas in the control arm, providers will not have access to GPS and patient-specific pharmacogenomic information (current standard of care).

Начало: 22.01.2019 Край: 22.08.2027 Възраст: от 18 г.
United States University of Chicago NCT03729180
Набира участници Фаза 3
Vaginal Cuff Brachytherapy Fractionation Study
Endometrial Cancer

The purpose of this study is to see the effects of two different standard of care treatments of endometrial cancer on sexual dysfunction. This study will compare two standard of care treatments: HDR (high dose radiation) vaginal brachytherapy 3 fractions of 7 Gy to HDR vaginal brachytherapy 6 fractions of 4Gy for early stage endometrial cancer.

Начало: 17.01.2019 Край: 30.01.2028 Възраст: от 18 г.
United States Kara Romano, MD NCT03785288
Набира участници Фаза 2
Toripalimab(JS001) as Monotherapy in Participants With POLE or POLD-1 Mutated and Non-MSI-H Advanced Solid Tumors
Solid Tumor Advanced Cancer

The purpose of this study is to evaluate the response of toripalimab (JS001), a PD1 antibody, in participants with POLE or POLD-mutated and non microsatellite instability (non-MSI-H) advanced solid cancers.

Начало: 15.01.2019 Край: 31.12.2029 Възраст: 18–75 г.
China Sun Yat-sen University NCT03810339
Набира участници Фаза 1/2
Venetoclax, Lenalidomide and Rituximab in Patients With Previously Untreated Mantle Cell Lymphoma
Mantle Cell Lymphoma

The purpose of this study is to determine if giving an experimental drug called venetoclax in combination with lenalidomide and rituximab is safe and effective for treating people with Mantle Cell Lymphoma (MCL).

Начало: 24.12.2018 Край: 24.06.2027 Възраст: от 18 г.
United States City of Hope Medical Center NCT03523975
Набира участници
Assessment of Functional and Symptom Outcomes for Survivors of Paranasal Sinus, Nasopharyngeal and Skull Base Tumors
Tumors

To learn about the symptoms and changes our patients experience while receiving treatment for sinonasal or nasopharyngeal cancer

Начало: 20.12.2018 Край: 31.12.2029 Възраст: от 18 г.
United States M.D. Anderson Cancer Center NCT05733091
Набира участници
Amino Acid Metabolism in Fed Surgical Critically Ill Patients
Metabolism and Nutrition Disorder

Introduction Sarcopenia is defined as progressive generalized loss of skeletal muscle mass, strength and function. Sarcopenia due to lack of physical activity is a known phenomenon and is usually observed as a normal part of aging or in certain diseases and pathogenic processes. Major associated factors causing development of sarcopenia may be summarized as interactions of environmental and hormonal factors, underlying diseases, activation of inflammatory pathways, mitochondrial dysfunction, reduced satellite cell numbers, and loss of neuromuscular junctions. Intensive care acquired weakness (ICU-AW) known formerly as critical illness polyneuropathy, is a diagnosis that becomes more common as survival rates from long ICU hospitalization are more prevalent. It is characterized by a primary axonal degeneration, without demyelination, that typically affects motor nerves more than sensory nerves. ICU-AW affects the limbs (particularly the lower extremities) in a symmetric pattern. Weakness is most notable in proximal neuromuscular areas (e.g., the shoulders and hip girdle). In addition, involvement of the respiratory muscles can occur and can impede weaning from mechanical ventilation. The pathophysiological mechanisms of ICU-acquired weakness are believed to be multifactorial. Some suspected factors include dysfunctional microcirculation and hyperglycemia. It has been shown that tight glucose control in ICU patients reduces the risk for ICU-AW (although it has been associated with other adverse events). Sodium channels channelopathy is also a researched cause for ICU-AW. Muscle loss in the ICU are usually related to bedridden condition and lack of mobility, increase in ubiquitination and inadequate protein administration associated with large negative nitrogen balance. In addition mechanical ventilation contributes greatly to this problem. This has been particularly relevant in post trauma/surgical long stayer patients. In the past years great progress was made in the investigation of protein balance, breakdown and synthesis using stable isotope tracers in various medical conditions. In a research performed in PICU (1-5) and ICU (6, 7) regarding the measurement of plasma amino acid during critical illness, stable phenylalanine, tyrosine leucine, arginine and citrulline isotope were used intravenously without any safety issue problem. Another study was performed on adults suffering from COPD with matched healthy adults, using stable isotopes of phenylalanine, tyrosine leucine, isoleucine and valine (8). During the study the isotopes were given parenterally as well as enterally. The study showed significant change in splanchnic extraction of various amino acids and higher turnover of BCAA in COPD patients. Using the theory that supplemental milk can compensate for the elevated turnover of BCAA in COPD patients, using the isotope analysis demonstrated that this theory was proven wrong and the conclusion was that alterations are present in BCAA metabolism despite normal plasma levels in normal weight COPD. Further research is needed to find a way to compensate for it. These studies and other recent studies (9-19) show us the safety regarding the use of stable isotope tracers whether IV or PO, while giving us the opportunity to assess the metabolism of amino acid in all sorts of pathological states. Hypothesis \& Aim of the study We think that based on current literature, there are important differences between critically ill patients and healthy population in the amino acid profile and distribution in the body as well as synthesis and breakdown. The aim of the study is to measure these differences in long ICU stayers (above 7 days) admitted in the ICU after surgical/trauma injury, and to try and help aiming future treatment and research in this field.

Начало: 02.12.2018 Край: 30.01.2028 Възраст: от 18 г.
Israel Rabin Medical Center NCT03451968
Набира участници Фаза 1
5-aza-4'-Thio-2'-Deoxycytidine (Aza-TdC) in People With Advanced Solid Tumors
Neoplasms Solid Tumors

Background: Blood, tissue, and tumor cells contain genes. Genes are made up of DNA. DNA is the "instruction book" for each cell. In some people with cancer, the genes that might have slowed the growth of their tumor were "turned off." Researchers want to see if a new drug can turn the genes back on and slow the tumor growth. The drug is called Aza-TdC. Objective: To test the safety of Aza-TdC, and to find out the dose of this drug that can be safely given to humans. Eligibility: People ages 18 and older who have advanced cancer that has gotten worse after standard treatment, or for which no effective therapy exists Design: Participants will be screened with: Medical history Blood and urine tests Scans to measure their tumors Test to measure the electrical activity of the heart Participants will take the study drug by mouth. The drug is given in cycles. Each cycle is 21 days (3 weeks) long. Week 1 and week 2: participants will take the study drug once a day for 5 days. Then they will have 2 days without the drug. Week 3: no study drug is taken. This completes one cycle of treatment. For cycle 1, participants will repeat the screening tests several times. For all other cycles, participants will have blood tests and pregnancy tests. They will have scans of their tumor every 6 weeks. The cycle will be repeated as long as the participant tolerates the drug and the cancer is either stable or gets better. Sponsoring Institute: National Cancer Institute

Начало: 05.11.2018 Край: 30.09.2026 Възраст: 18–120 г.
United States National Cancer Institute (NCI) NCT03366116
Набира участници
Videocapsule Endoscopy in Lynch Syndrome
Lynch Syndrome Lynch Syndrome I Lynch Syndrome II MLH1 Gene Mutation +4

Background Lynch syndrome is caused by a pathogenic variant in one of the four Mismatch Repair genes (MMR): MLH1, MSH2/Epcam, MSH6, or PMS2. These pathogenic variants confer a higher risk of developing colorectal and other cancers, including small bowel cancer. The risk of developing a small bowel adenocarcinoma is about 100 times higher compared to individuals without Lynch syndrome, and the lifetime risk of small bowel cancer is estimated at 4,2%. The diagnosis of a small bowel cancer depends on videocapsule endoscopy (VCE). This device is swalled so that it can record images of the small bowel, which are then stored on a wearable device for about 8 hours. The capsule is then expelled in the feces while the images are transferred to a computer to be analysed. To date, there is conflicting evidence on the efficacy of small bowel cancer screening with VCE Rationale: this registry study will collect prospective data from patients with LS undergoing VCE Aim: evaluate the incidence of neoplastic and pre-neoplastic lesions in patients with LS during a VCE-based small bowel cancer screening study Design: this is a multicentric, observational study that analyzes data from diagnostic techniques already approved. Patients will not undergo diagnostic procedures beyond what would be recommended by clinical practice.

Начало: 01.11.2018 Край: 31.12.2029 Възраст: от 18 г.
Italy San Raffaele University NCT05704010
Набира участници Фаза 2
Venetoclax, Cladribine, Low Dose Cytarabine, and Azacitidine in Treating Patients With Previously Untreated Acute Myeloid Leukemia
Acute Myeloid Leukemia

This phase II trial studies how well venetoclax, cladribine, low dose cytarabine, and azacitidine work in treating patients with acute myeloid leukemia that has previously not been treated. Drugs used in chemotherapy, such as venetoclax, cladribine, and low dose cytarabine, 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. Azacitidine may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving venetoclax, cladribine, low dose cytarabine induction followed by cladribine, low dose cytarabine, and azacitidine consolidation may work better in treating patients with acute myeloid leukemia.

Начало: 25.10.2018 Край: 30.04.2027 Възраст: от 50 г.
United States M.D. Anderson Cancer Center NCT03586609
Набира участници
Patient-derived Organoid Model and Circulating Tumor Cells for Treatment Response of Lung Cancer
Lung Neoplasm

Create a living biobank of PDOs from Stage I-III lung cancer patients.

Начало: 16.10.2018 Край: 01.12.2029 Възраст: от 18 г.
United States The University of Texas Health Science Center at San An NCT03655015
Набира участници
Pharmacokinetics and Safety of Commonly Used Drugs in Lactating Women and Breastfed Infants
Lactating Women on Select DOI Breastfed Infants of Mothers on Select DOI

Over half of women in the US who are breastfeeding their infants take prescription drugs. You are being asked to participate in this study because you are breastfeeding your infant and are currently taking, as part of your medical care, at least one of the drugs we are studying. We are interested in studying drugs commonly prescribed to women who are breastfeeding so we can learn more about the amount of drug that is transferred to breastmilk and estimate how much of drug that is consumed by breastfed infants.

Начало: 04.10.2018 Край: 31.07.2028
Canada, United States Duke University NCT03511118
Набира участници Фаза 1
hUC Mesenchymal Stem Cells (19#iSCLife®-LC) in the Treatment of Decompensated Hepatitis b Cirrhosishepatitis b Cirrhosis
Hepatitis B

1. Evaluation the safety of using human umbilical mesenchymal stem cells to treat patients with hepatitis B cirrhosis. 2. Observe the curative effect of patients with hepatitis B cirrhosis who use human umbilical mesenchymal stem cells to treat. 3. Explore the possible mechanism of human umbilical mesenchymal stem cells to treat patients with hepatitis B cirrhosis.

Начало: 01.10.2018 Край: 31.12.2027 Възраст: 18–60 г.
China Sclnow Biotechnology Co., Ltd. NCT03826433
Набира участници Фаза 2
Tislelizumab (Anti-Programmed Cell Death Protein-1 (PD-1) Antibody) in MSI-H or dMMR Solid Tumors
MSI-H/dMMR Solid Tumors

In this Phase 2, Single-Arm, Multi-Center, Open-Label Study, participants with previously treated locally advanced unresectable or metastatic solid tumors with mismatched repair deficient (dMMR) or microsatellite instability-high (MSI-H) will be treated with anti-PD-1 Monoclonal Antibody Tislelizumab (BGB-A317).

Начало: 19.09.2018 Край: 01.09.2027 Възраст: от 18 г.
China BeiGene NCT03736889
Набира участници
Mechanism of Non-invasive Magnetic Stimulation
Healthy Volunteers

Background: Transcranial magnetic stimulation (TMS) is form of non-invasive brain stimulation. It is approved to treat depression. TMS may help decrease drug craving. It is important to understand how TMS affects the brain. Such a better understanding would help to design ways to treat drug addiction. Objectives: To learn how TMS affects the brain when it stimulates an area in the front of the brain. Also, to see how the stimulation affects the area stimulated and other connected areas. Eligibility: Healthy, right-handed adults ages 18-60 who are non-drug users. Design: Participants will be screened under protocol 06-DA-N415. Participants will have at least 3 visits. The first visit will last about 3 hours. All other visits will last up to 6 hours. Participants cannot use drugs or alcohol at least 24 hours before a visit. They cannot have more than half a cup of a caffeinated drink at least 12 hours before a visit. Each visit will include a brief medical history update, urine test for drugs and pregnancy (if female), a breath test for alcohol and smoking, and questionnaires. Participants will have a TMS orientation visit. A wire coil will be placed on the head. An electrical current will pass through the coil to create a magnetic pulse that stimulates the brain. The other visits will include 2 sessions of TMS-MRI. Participants will lie on a table that slides into a cylinder. The TMS coil and the MRI coil will be placed over the head. Pictures will be taken of the brain with and without stimulation. Participants will complete a questionnaire about how they feel before and after each TMS session and in a follow-up call 1-3 days after their last session. ...

Начало: 19.09.2018 Край: 31.12.2026 Възраст: 18–60 г.
United States National Institute on Drug Abuse (NIDA) NCT03394066
Набира участници
Influence of Brain Oscillation-Dependent TMS on Motor Function
Healthy Stroke Normal Physiology Aging

Background: When people have a stroke, they often have difficulty moving their arms and hands. Transcranial magnetic stimulation (TMS) can improve how well people with and without stroke can move their arms and hands. But the effects of TMS are minor, and it doesn t work for everyone. Researchers want to study how to time brain stimulation so that the effects are more consistent. Objective: To understand how the brain responds to transcranial magnetic stimulation so that treatments for people with stroke can be improved. Eligibility: Adults ages 18 and older who had a stroke at least 6 months ago Healthy volunteers ages 50 and older Design: Participants will have up to 5 visits. At visit 1, participants will be screened with medical history and physical exam. Participants with stroke will also have TMS and surface electromyography (sEMG). For TMS, a brief electrical current will pass through a wire coil on the scalp. Participants may hear a click and feel a pull. Muscles may twitch. Participants may be asked to do simple movements during TMS. For sEMG, small electrodes will be attached to the skin and muscle activity will be recorded. At visit 2, participants will have magnetic resonance imaging (MRI). They will lie on a table that slides into a metal cylinder in a strong magnetic field. They will get earplugs for the loud noise. At visit 3, participants will have TMS, sEMG, and electroencephalography (EEG). For EEG, small electrodes on the scalp will record brainwaves. Participants will sit still, watch a movie, or do TMS. Participants may be asked to have 2 extra visits to redo procedures.

Начало: 11.09.2018 Край: 31.03.2029 Възраст: 18–120 г.
United States National Institute of Neurological Disorders and Stroke NCT03288220
Набира участници Фаза 2
Administration of Autologous T-Cells Genetically Engineered to Express T-Cell Receptors Reactive Against Neoantigens in People With Metastatic Cancer
Endocrine Tumors Non-Small Cell Lung Cancer Ovarian Cancer Breast Cancer +3

Background: A person s tumor is studied for mutations. When cells are found that can attack the mutation in a person s tumor, the genes from those cells are studied to find the parts that make the attack possible. White blood cells are then taken from the person s body, and the gene transfer occurs in a laboratory. A type of virus is used to transfer the genes that make those white blood cells able to attack the mutation in the tumor. The gene transfer therapy is the return of those white blood cells back to the person. Objective: To see if gene transfer therapy of white blood cells can shrink tumors. Eligibility: People with certain metastatic cancer for which standard treatments have not worked. Design: Participants may complete screening under another protocol. Screening includes: * Getting tumor cells from a previous procedure * Medical history * Physical exam * Scans * Blood, urine, heart, and lung tests The study has 8 stages: 1. Screening tests repeated over 1-2 weeks. Participants will have leukapheresis: Blood is removed by a needle in one arm. A machine removes white blood cells. The rest of the blood is returned by a needle in the other arm. 2. Care at home over approximately 12 weeks. 3. Stopping therapy for 4-6 weeks while their cells are changed in a lab. 4. Hospital stay approximately 3-4 weeks for treatment. An IV catheter will be placed in the chest to administer drugs. 5. Patients on Arm 2 of the study will receive the first dose of pembrolizumab while in the hospital. Three additional doses will be given after the cell infusion 3 weeks apart. 6. Receiving changed cells by catheter. Then getting a drug over 1-5 days to help the cells live longer. 7. Recover in the hospital for 1-2 weeks. Participants will get drugs and have blood and urine tests. 8. Participants will take an antibiotic and maybe an antiviral for at least 6 months after treatment. They will have repeat screening tests at visits every few months for the first year, every 6 months for the second year, then as determined.

Начало: 06.09.2018 Край: 23.03.2028 Възраст: 18–72 г.
United States National Cancer Institute (NCI) NCT03412877
Набира участници Фаза 3
Long-term Safety and Efficacy Extension Study for Participants With Advanced Tumors Who Are Currently on Treatment or in Follow-up in a Pembrolizumab (MK-3475) Study (MK-3475-587/KEYNOTE-587)
Solid Tumors Hematologic Malignancies

The purpose of this study is to evaluate the long-term safety and efficacy of pembrolizumab (MK-3475) in participants from previous Merck pembrolizumab-based parent studies who transition into this extension study. This study will consist of three phases: 1) First Course Phase, 2) Survival Follow-up Phase or 3) Second Course Phase. Each participant will transition to this extension study in one of the following three phases, depending on the study phase they were in at the completion of the parent study. Participants who were in the First Course Phase of study treatment with pembrolizumab or lenvatinib in their parent study will enter the First Course Phase of this study and complete up to 35 doses or more every 3 weeks (Q3W) or 17 doses or more every 6 weeks (Q6W) of study treatment with pembrolizumab or a pembrolizumab-based combination or lenvatinib according to arm assignment. Participants who were in the Follow-up Phase in the parent study (post-treatment or Survival Follow-up Phase) will enter the Survival Follow-up Phase of this study. Participants who were in the Second Course Phase in their parent study will enter Second Course Phase of this study and complete up to 17 doses Q3W or 8 doses Q6W of study treatment with pembrolizumab or a pembrolizumab-based combination according to arm assignment. Any participant originating from a parent trial where crossover to pembrolizumab was permitted upon disease progression may be eligible for 35 doses as Q3W or 17 doses Q6W of pembrolizumab (approximately 2 years), if they progress while on the control arm and pembrolizumab is approved for the indication in the country where the potential eligible crossover participant is being evaluated.

Начало: 21.08.2018 Край: 04.08.2043 Възраст: от 18 г. Лечение
Argentina, Australia, Austria +48 Merck Sharp & Dohme LLC NCT03486873
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