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Find 517 clinical trials for multiple sclerosis near Houston, Texas. Connect with research centers in your area.
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NCT05014139
This study will test a drug called enfortumab vedotin in participants with a type of bladder cancer called non-muscle invasive bladder cancer (NMIBC). This study will also evaluate what the side effects are and if the drug works to treat NMIBC. A side effect is anything a drug does to your body besides treating your disease. In this study enfortumab vedotin will be put into the bladder using a catheter. A catheter is a thin tube that can be put into your bladder.
NCT03011372
The purpose of this study is to evaluate the efficacy and safety of pemigatinib (INCB054828) in subjects with myeloid/lymphoid neoplasms with fibroblast growth factor receptor (FGFR) 1 rearrangement.
NCT05980416
This study is an open-label, international, multi-center, Phase 1 study in adult patients with solid tumors likely to express CLDN18.2.
NCT03093909
Any time the words "you," "your," "I," or "me" appear, it is meant to apply to the potential participant. The goal of this clinical research study is to find the highest tolerable dose of gemcitabine that can be given by inhalation (breathing it as a mist) to patients with solid tumors that have spread to the lungs from other parts of the body. The safety and side effects of this drug will also be studied. This is an investigational study. Gemcitabine is FDA approved and commercially available for the treatment of pancreatic and lung cancer, and other solid tumors. Its administration by inhalation is investigational. The study doctor can explain how the study drug is designed to work. Up to 44 participants will be enrolled in this study. All will take part at MD Anderson.
NCT03114501
Objectives: Primary Aim: Examine the feasibility of a dyadic yoga program in 40 Head and Neck Cancer (HNC) patients undergoing radiotherapy (RT) and their family caregivers. Secondary Aims: 1\. Establish the initial efficacy of the yoga program in patients and their caregivers regarding quality of life (QOL) outcomes (i.e., fatigue, sleep disturbance, depressive symptoms, and overall QOL) and objective performance outcomes (i.e, sit to stand test and grip strength).
NCT04543188
First-in-human study to assess safety, tolerability, PK, and preliminary activity of PF-07284890 as a single agent and in combination with binimetinib in participants with BRAF V600-mutated advanced solid tumor malignancies with and without brain involvement.
NCT06597734
To learn if olutasidenib, when combined with a drug called a hypomethylating agent (HMA) can help to control MDS, CMML, and/or MPN. The safety of the drug combination will also be studied.
NCT02158858
Phase 1 Part: Open-label, sequential dose escalation study of pelabresib (CPI-0610) in patients with previously treated Acute Leukemia, Myelodysplastic/Myeloproliferative Neoplasms, and Phase 2 Part: Open-label study of pelabresib (CPI-0610) with and without Ruxolitinib in patients with Myeloproliferative Neoplasms (Myelofibrosis and Essential Thrombocythemia). Pelabresib (CPI-0610) is a small molecule inhibitor of bromodomain and extra-terminal (BET) proteins.
NCT01193088
This project includes two projects. One is looking for new genes that cause Charcot Marie Tooth disease (CMT). The other is looking for genes that do not cause CMT, but may modify the symptoms a person has.
NCT03739827
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 \*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\* \*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*\*
NCT04495556
The need for improved diagnostic methods in Multiple Sclerosis (MS) is widely recognized. Although Magnetic Resonance Imaging (MRI) is a longstanding tool for detecting MS lesions, diagnostic inaccuracies persist. Up to 20% of people diagnosed with MS (1 in 5) are later found not to have the disease. This is highly consequential, as more than two-thirds of misdiagnosed patients are unnecessarily exposed to risks from disease-modifying therapies, which in rare cases can be life-threatening. Moreover, the current standard in MS diagnosis - the McDonald criteria, which combine clinical symptoms and MRI findings - were developed from studies in people with typical clinical presentations of MS. This reduces the specificity of these criteria, rendering them uninformative for the nearly half of MS patients who present to neurologists with atypical or nonclassical symptoms. Timeliness of MS diagnosis is also key, as diagnostic delay is common in cases of relapsing-remitting MS and can carry severe and lifelong consequences. The CentrAl Vein Sign in MS (CAVS-MS) study has been designed to assess whether Central Vein Sign (CVS) criteria can help address some of these unmet diagnostic needs. It will specifically explore the role of presentation type by enrolling a mixed population of patients with typical clinical presentations (n = 200) and those with atypical presentations, including suggestive MRI findings in the absence of neurologic symptoms (n = 200) across North America.
NCT03500328
FDA-approved multiple sclerosis (MS) disease-modifying therapies (DMTs) target the relapsing phase of MS but have minimal impact once the progressive phase has begun. It is unclear if, in the relapsing phase, there is an advantage of early aggressive therapy with respect to preventing long-term disability. The infectious risks and other complications associated with higher-efficacy treatments highlight the need to quantify their effectiveness in preventing disability. The TRaditional versus Early Aggressive Therapy for MS (TREAT-MS) trial is a pragmatic, randomized controlled trial that has two primary aims: 1) to evaluate, jointly and independently among patients deemed at higher risk vs. lower risk for disability accumulation, whether an "early aggressive" therapy approach, versus starting with a traditional, first-line therapy, influences the intermediate-term risk of disability, and 2) to evaluate if, among patients deemed at lower risk for disability who start on first-line MS therapies but experience breakthrough disease, those who switch to a higher-efficacy versus a new first-line therapy have different intermediate-term risk of disability.
NCT03740165
The purpose of this study is to assess the efficacy and safety of treatment with carboplatin/paclitaxel\* PLUS pembrolizumab (MK-3475) and maintenance olaparib (MK-7339) in women with epithelial ovarian cancer (EOC), fallopian tube cancer, or primary peritoneal cancer. The primary study hypotheses are that the combination of pembrolizumab plus carboplatin/paclitaxel\* followed by continued pembrolizumab and maintenance olaparib is superior to carboplatin/paclitaxel alone with respect to Progression Free Survival (PFS) per Response Evaluation Criteria in Solid Tumors Version 1.1 (RECIST 1.1) in participants with programmed death-ligand 1 (PD-L1) positive tumors (Combined Positive Score \[CPS\]≥10) and in all participants, and that the combination of pembrolizumab plus carboplatin/paclitaxel followed by continued pembrolizumab is superior to carboplatin/paclitaxel alone with respect to PFS per RECIST 1.1 in participants with PD-L1 positive tumors (CPS≥10) and in all participants.
NCT01770418
The purpose of this research study is to compare the effects (good and bad) on subjects and their cancer using standard chemotherapy in combination with hypofractionated proton radiation therapy. Hypofractionation is a technique that delivers higher daily doses of radiation over a shorter period of time.
NCT01892722
To evaluate the safety and efficacy of fingolimod vs. interferon beta-1a i.m. in pediatric patients with multiple sclerosis (MS)
NCT05091346
The Phase 1b part of this study is conducted to assess the safety and tolerability of E7386 in combination with pembrolizumab in participants with previously treated selected solid tumors, and to determine the recommended Phase 2 dose (RP2D) of E7386 in combination with pembrolizumab. The Phase 2 part of this study is conducted to assess the objective response rate (ORR) of E7386 in combination with pembrolizumab (melanoma, colorectal cancer \[CRC\], hepatocellular carcinoma \[HCC\]) or of E7386 in combination with pembrolizumab plus lenvatinib (HCC) according to Response Evaluation Criteria in Solid Tumors (RECIST) 1.1.
NCT02752035
This was a clinical study for adult participants who were recently diagnosed with acute myeloid leukemia or AML. AML is a type of cancer. It is when bone marrow makes white blood cells that are not normal. These are called leukemia cells. Some participants with AML have a mutation, or change, in the FLT3 gene. This gene helps leukemia cells make a protein called FLT3. This protein causes the leukemia cells to grow faster. For participants with AML who could not receive standard chemotherapy, azacitidine (also known as Vidaza®) was a current standard of care treatment option in the United States. This clinical study tested an experimental medicine called ASP2215, also known as gilteritinib. Gilteritinib worked by stopping the leukemia cells from making the FLT3 protein. This helped stop the leukemia cells from growing faster. This study compared two different treatments. Participants were assigned to one of these two groups by chance: a medicine called azacitidine, also known as Vidaza®, or an experimental medicine gilteritinib in combination with azacitidine. There was a twice as much chance to receive both medicines combined than azacitidine alone. The clinical study may help show which treatment helps patients live longer.
NCT05845814
This study is a substudy being conducted under one pembrolizumab umbrella master study KEYMAKER-U04. The substudy will consist of 2 parts. Part 1 will evaluate the efficacy and safety of coformulated favezelimab/pembrolizumab plus EV and coformulated vibostolimab/pembrolizumab plus EV relative to pembrolizumab plus EV. There will be no comparison of coformulated favezelimab/pembrolizumab plus EV versus coformulated vibostolimab/pembrolizumab plus EV. If ORR and/or DRR are substantially better on coformulated favezelimab/pembrolizumab plus EV and/or coformulated vibostolimab/pembrolizumab plus EV compared with pembrolizumab plus EV, after evaluation of the totality of data, the sponsor might consider Part 2 (expansion) to further characterize the efficacy and safety of the treatment arms under study.
NCT04879628
Primary Objective: To determine the efficacy of SAR441344 as measured by reduction of the number of new active brain lesions Secondary Objective: * To evaluate efficacy of SAR441344 on disease activity as assessed by other MRI measures * To evaluate the safety and tolerability of SAR441344 * To evaluate pharmacokinetics of SAR441344
NCT03461419
Purpose of study is to determine safety and efficacy of use of autologous Adipose-Derived cellular Stromal Vascular Fraction (AD-cSVF) suspended in Normal Saline and delivered via intravascular system of quality of life and alteration of documented Advanced Muscular Sclerosis (MS). It is believed that the heterogeneous cell population which includes multipotent stem/stromal cells plus non-multipotent cellular elements are capable of immune modulation/inflammatory modulation properties. Exam of disease progression and quality of life changes will be evaluated by sophisticated mathematical non-biased MRI analysis.