Education and Training

  • Optimizing Haploidentical Aplastic Anemia Transplantation (BMT CTN 1502)

    This study is a prospective, multicenter phase II study with patients receiving haploidentical transplantation for Severe Aplastic Anemia (SAA). The primary objective is to assess overall survival (OS) at 1 year post-hematopoietic stem cell transplantation (HSCT).

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  • Pilot Study to Evaluate a Method of Controlling High Blood Sugar in the Pediatric Intensive Care Unit

    Recent studies of adult intensive care unit (ICU) patients have shown significantly decreased morbidity and mortality when blood sugar concentrations are closely controlled. The safety and efficacy of this type of blood sugar management has not been studied in the pediatric ICU population. Based on the current pediatric literature data as well as our extensive retrospective study, blood sugar concentrations have a potentially profound role to play among PICU patients. In preparation for a multi-center randomized control trial, we propose a prospective feasibility study to evaluate the safety and effectiveness of using an insulin delivery algorithm to manage blood sugar in the PICU. Our hypothesis for this feasibility trial is that uniformly monitoring and controlling blood glucose with a Discrete-Closed-Loop(DCL) insulin delivery algorithm will be an effective, safe, and consistent means of delivering insulin to manage glucose in the pediatric intensive care unit.

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  • Long-term Follow-up Study for Participants of Kite-Sponsored Interventional Studies Treated With Gene-Modified Cells

    The goal of this clinical study is to learn more about the long-term safety, effectiveness and prolonged action of Kite study drugs, axicabtagene ciloleucel, brexucabtagene autoleucel, KITE-222, KITE-363, KITE-439, KITE-585, and KITE-718, in participants of Kite-sponsored interventional studies.

    Investigator

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  • MLN4924 for the Treatment of Acute Myelogenous Leukemia, Myelodysplastic Syndrome, and Acute Lymphoblastic Leukemia

    An open-label, multicenter, phase 1, dose escalation study of MLN4924 in adult patients with acute myelogenous leukemia (AML), high-grade myelodysplastic syndrome (MDS). The patient population will consist of adults previously diagnosed with AML including high-grade MDS for which standard curative, life-prolonging treatment does not exist or is no longer effective.

    Investigator

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  • Imaging Study of Chronic Low Back Pain in Patients Taking Pain Medication

    Duloxetine has recently been shown to be effective in reducing the pain in chronic pain patients. Duloxetine is known to exert a central mechanism, however the precise human brain structures responsible for mediating its pain-relieving properties are not known. We will use functional magnetic resonance imaging (FMRI) to investigate the neural and functional correlates of pain.

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  • Prostate Radiation Therapy or Short-Term Androgen Deprivation Therapy and Pelvic Lymph Node Radiation Therapy With or Without Prostate Radiation Therapy in Treating Patients With a Rising Prostate Specific Antigen (PSA) After Surgery for Prostate Cancer

    RATIONALE: Radiation therapy uses high-energy x-rays to kill tumor cells. Androgens can cause the growth of prostate cancer cells. Antihormone therapy, such as flutamide, bicalutamide, and luteinizing hormone-releasing hormone agonist, may lessen the amount of androgens made by the body. It is not yet known which regimen of radiation therapy with or without androgen-deprivation therapy is more effective for prostate cancer.

    PURPOSE: This randomized phase III trial is studying prostate radiation therapy to see how well it works compared with short-term androgen deprivation therapy given together with pelvic lymph node radiation therapy with or without prostate radiation therapy in treating patients with a rising PSA after surgery for prostate cancer.

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  • N2007-02:Bevacizumab,Cyclophosphamide,& Zoledronic Acid in Patients W/ Recurrent or Refractory High-Risk Neuroblastoma

    RATIONALE: Monoclonal antibodies, such as bevacizumab, can block tumor growth in different ways. Some block the ability of tumor cells to grow and spread. Others find tumor cells and help kill them or carry tumor-killing substances to them. Drugs used in chemotherapy, such as cyclophosphamide, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Zoledronic acid may stop the growth of tumor cells in bone. Giving bevacizumab together with cyclophosphamide and zoledronic acid may kill more tumor cells.

    PURPOSE: This phase I trial is studying the side effects of giving bevacizumab together with cyclophosphamide and zoledronic acid in treating patients with recurrent or refractory high-risk neuroblastoma.

    Investigator

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  • Immunostimulatory CpG SD-101 + RT in Recurrent/Progressive Lymphoma After Allogeneic Hematopoietic Cell Transplantation (HCT)

    For patients with lymphoma that recurs after chemotherapy, bone marrow transplantation using cells from a healthy donor represents potentially curative treatment. In these individuals, cure is possible because transplantation of healthy donor immune cells can fight the lymphoma in the patient. The goal of this work is to test a strategy that activates the healthy donor immune cells so that they more effectively fight lymphoma and can result in an increased cure rate for these patients. Our group has previously studied CpG, an immune activating medication, in patients with lymphoma and demonstrated modest anti-tumor responses. We now have a more potent form of CpG which we intend to test to see if it will better activate the donor immune cells and result in shrinkage of tumor throughout the entire body, not just at the injected site.

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  • Optimizing a Smartphone Application for Individuals With Eating Disorders

    This study will augment an existing mobile application for individuals with eating disorders by developing adaptive, tailored content targeting remediation of cognitive distortions. The adaptive application will be deployed and assessed for efficacy relative to the standard product in a randomized controlled trial.

    Investigator

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  • Multi-center, Survival Data Collection in Subjects Previously Enrolled in Celgene Protocol CC-5013-MDS-003

    Multi-center, survival data collection in subjects previously enrolled in study NCT00065156 (Celgene Protocol CC-5013-MDS-003).

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  • Inotuzumab Ozogamicin in Treating Younger Patients With B-Lymphoblastic Lymphoma or Relapsed or Refractory CD22 Positive B Acute Lymphoblastic Leukemia

    This phase II trial studies how well inotuzumab ozogamicin works in treating younger patients with B-lymphoblastic lymphoma or CD22 positive B acute lymphoblastic leukemia that has come back (relapsed) or does not respond to treatment (refractory). Inotuzumab ozogamicin is a monoclonal antibody, called inotuzumab, linked to a toxic agent called ozogamicin. Inotuzumab attaches to CD22 positive cancer cells in a targeted way and delivers ozogamicin to kill them.

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  • Phase II NKTR-102 In Bevacizumab-Resistant High Grade Glioma

    High Grade Gliomas, including anaplastic astrocytomas, anaplastic oligodendrogliomas and glioblastomas (GBM), are the most common and most aggressive primary brain tumors. Prognosis for patients with high-grade gliomas remains poor. The estimated median survival for patients with GBM is between 12 to 18 months. Recurrence after initial therapy with temozolomide and radiation is nearly universal. Since May 2009, the majority of patients in the US with an initial recurrence of high-grade glioma receive bevacizumab, a monoclonal antibody against vascular endothelial growth factor (VEGF), which is thought to prevent angiogenesis in these highly vascular tumors. BEV has response rates from 32-62% and has improved overall median survival in patients with recurrent high-grade gliomas1. However, the response is short lived, and nearly 100% of patients eventually progress despite bevacizumab. No chemotherapeutic agent administered following progression through bevacizumab has made a significant impact on survival. Patients progress to death within 1-5 months after resistance develops. Therefore, patients with high-grade gliomas who have progressed through bevacizumab represent a population in dire need of a feasible and tolerable treatment.

    NKTR-102 is a topoisomerase I inhibitor polymer conjugate that was engineered by attaching irinotecan molecules to a polyethylene glycol (PEG) polymer using a biodegradable linker. Irinotecan released from NKTR-102 following administration is further metabolized to the active metabolite, 7-ethyl-10-hydroxy-camptothecin (SN38), that causes DNA damage through inhibition of topoisomerase. The goal in designing NKTR-102 was to attenuate or eliminate some of the limiting side effects of irinotecan while improving efficacy by modifying the distribution of the agent within the body. The size and structure of NKTR-102 results in marked alteration in pharmacokinetic (PK) profile for the SN38 derived from NKTR-102 compared to that following irinotecan: the maximal plasma concentration (Cmax) is reduced 5- to 10-fold and the half-life (t1/2 ) of SN38 is increased from 2 days to approximately 50 days. This altered profile leads to constant exposure of the tumor to the active drug. In addition, the large NKTR-102 molecule does not freely pass out of intact vasculature, which may account for relatively higher concentrations of the compound and the active metabolites in tumor tissues in in vivo models, where the local vasculature may be relatively more permeable. A 145 mg/m2 dose of NKTR-102, the dose intended for use in this phase II clinical trial (and being used in the phase III clinical program), results in approximately the same plasma exposure to SN38 as a 350 mg/m2 dose of irinotecan, but exposure is protracted, resulting in continuous exposure between dosing cycles and lower Cmax. NKTR-102 was therefore developed as a new chemotherapeutic agent that may improve the clinical outcomes of patients.

    Investigator

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  • Non-Myeloablative Allogeneic Transplant for Myelodysplastic Syndromes and Myeloproliferative Disorders

    To improve survival outcomes for patients with MDS and MPD with a nonmyeloablative allogeneic hematopoietic cell transplant.

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  • N2001-02: I-MIBG With Intensive Chemotherapy and Autologous Stem Cell Rescue for High-Risk Neuroblastoma

    RATIONALE: Radioactive drugs, such as iodine I 131 metaiodobenzylguanidine, may carry radiation directly to tumor cells and not harm normal cells. Drugs used in chemotherapy, such as carboplatin, etoposide, and melphalan, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Radiation therapy uses high-energy x-rays to kill tumor cells. An autologous peripheral stem cell or bone marrow transplant may be able to replace blood-forming cells that were destroyed by chemotherapy and radiation therapy. Giving iodine I 131 metaiodobenzylguanidine and combination chemotherapy with an autologous peripheral stem cell or bone marrow transplant may allow more chemotherapy to be given so that more tumor cells are killed. Giving radiation therapy after an autologous peripheral stem cell or bone marrow transplant may kill any remaining tumor cells.

    PURPOSE: This phase II trial is studying how well giving iodine I 131 metaiodobenzylguanidine together with combination chemotherapy and radiation therapy works in treating patients who are undergoing an autologous peripheral stem cell or bone marrow transplant for relapsed or refractory neuroblastoma.

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  • Investigation of Dysynchrony in Patients With Pulmonary Hypertension

    The purpose of the study is to determine whether patients with pulmonary hypertension (PH) have dysynchrony, and if so whether it is electrical or mechanical. Once this has been determined, during a catheterization the investigators will test if pacing the heart improves blood circulation.

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  • Memantine Augmentation in Obsessive-Compulsive Disorder

    The purpose of this study is to determine whether memantine is safe and effective when used as an augmentation to standard treatment for Obsessive-Compulsive Disorder (OCD).

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  • Interventions for Convergence Insufficiency in Concussed Children

    The ICONICC Study is a randomized controlled clinical trial designed to compare the proportion of successful treatment outcomes between children assigned to standard concussion care only, standard concussion care plus simple convergence procedures, or standard concussion care plus office-based vergence/accommodative therapy in children aged 11 to 17 years with symptomatic post-concussion syndrome. Children with post-concussion syndrome (4-12 weeks post-concussion injury) and symptomatic CI will be randomized to a 12-week treatment program of either standard concussion care (SC), SC plus simple convergence procedures (SC+), or SC plus office-based vergence/accommodative therapy SC+OBVAT (1:1:1 ratio).

    The study will also compare the effect of treatment on clinical measures of both accommodation and vergence, symptom level/burden, health-related quality of life, clinical measures of saccadic eye movement, and objective eye movement measurements of disparity vergence, saccadic function, and accommodative function. The attainment of objective eye movement measures provides an opportunity to understand the underlying neurophysiology of the vergence and accommodative systems. Objective eye movement recordings are powerful because of the rich foundation from primate single-cell recordings that show a direct correlation with vergence and accommodative parameters in the supraoculomotor area of midbrain2, 3 and the oculomotor vermis of the cerebellum.4, 5 Thus, a combined approach of acquiring both clinical vision function measures and objective eye movement recordings in children with PCS-CI may lead to better characterization of the oculomotor phenotype with subsequent improved and personalized therapeutic interventions.

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  • Optimal Treatment for Women With a Persisting Pregnancy of Unknown Location

    This is a randomized controlled trial to compare three currently available management strategies for women with a persisting pregnancy of unknown location (PPUL), which makes them at-risk for ectopic pregnancy. We will recruit hemodynamically stable women with a confirmed PPUL to be randomized to one of three strategies: 1) Uterine evacuation followed by methotrexate (MTX) for some (those that have evidence of a non visualized ectopic pregnancy) 2) Empiric treatment with MTX for all 3) Expectant management. Randomization will be 1:1:1 into these three arms. After randomization, they will be followed and treated clinically as is indicated by the progression of their condition. Primary outcome measures: uneventful decline of hCG to 5 IU/mL.

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  • Platelet-Oriented Inhibition in New TIA and Minor Ischemic Stroke (POINT) Trial

    A transient ischemic attack (TIA) is a transient episode of neurological dysfunction caused by focal brain, spinal cord, or retinal ischemia, without acute infarction. An ischemic stroke is a cerebral infarction. In POINT, eligibility is limited to brain TIAs and to minor ischemic strokes (with an NIH Stroke Scale [NIHSS] score less than or equal to 3).

    TIAs are common [25], and are often harbingers of disabling strokes. Approximately 250,000-350,000 TIAs are diagnosed each year in the US. Given median survival of more than 8 years [32], there are approximately 2.4 million TIA survivors. In a national survey, one in fifteen of those over 65 years old reported a history of TIA [33], which is equivalent to a prevalence of 2.3 million in older Americans. Based on the prevalence of undiagnosed transient neurological events, the true incidence of TIA may be twice as high as the rates of diagnosis [33]. Based on our review of the National Inpatient Sample for 1997-2003, there were an average of 200,000 hospital admissions for TIA each year, with annual charges climbing quickly in the period to $2.6 billion in 2003.

    Composite endpoint of new ischemic vascular events: ischemic stroke, myocardial infarction or ischemic vascular death at 90 days.

    Investigators

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  • Neural Signatures of Parkinson's Disease

    The purpose of this study is to provide objective measurements of abnormal movements of the body in correlation with neural activity of the brain and track how these change over time. This may allow for the development of objective evaluation of the neural activity causing abnormal movements, which may lead to the ability of the DBS system to stimulate the brain by sensing the abnormal neural activity that is causing abnormal movements.

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