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Active clinical trials for "Lymphocytosis"

Results 1-10 of 19

Ibrutinib for the Treatment of COVID-19 in Patients Requiring Hospitalization

Aplastic AnemiaHematopoietic and Lymphoid Cell Neoplasm5 more

This phase Ib/II trial studies the side effects and best dose of ibrutinib and how well it works in treating patients with COVID-19 requiring hospitalization. Ibrutinib may help improve COVID-19 symptoms by lessening the inflammatory response in the lungs, while preserving overall immune function. This may reduce the need to be on a ventilator to help with breathing.

Active25 enrollment criteria

CD34+ (Non-Malignant) Stem Cell Selection for Patients Receiving Allogeneic Stem Cell Transplantation...

Bone Marrow Failure SyndromeSevere Aplastic Anemia14 more

This study's goal is to determine the frequency and severity of acute graft versus host disease, to evaluate incidence of primary and secondary graft rejection, to assess event free survival and overall survival, to determine the time to neutrophil and platelet engraftment, to determine the time to immune reconstitution (including normalization of T, B and natural killer (NK) cell repertoire and Immunoglobulin G production), and to establish the incidence of infectious complications including bacterial, viral, fungal and atypical mycobacterial and other infections following CD34+ selection in children, adolescents and young adults receiving an allogeneic peripheral blood stem cell transplant from a family member or unrelated adult donor for a non-malignant disease.

Active27 enrollment criteria

Baby Detect : Genomic Newborn Screening

Congenital Adrenal HyperplasiaFamilial Hyperinsulinemic Hypoglycemia 1134 more

Newborn screening (NBS) is a global initiative of systematic testing at birth to identify babies with pre-defined severe but treatable conditions. With a simple blood test, rare genetic conditions can be easily detected, and the early start of transformative treatment will help avoid severe disabilities and increase the quality of life. Baby Detect Project is an innovative NBS program using a panel of target sequencing that aims to identify 126 treatable severe early onset genetic diseases at birth caused by 361 genes. The list of diseases has been established in close collaboration with the Paediatricians of the University Hospital in Liege. The investigators use dedicated dried blood spots collected between the first day and 28 days of life of babies, after a consent sign by parents.

Recruiting4 enrollment criteria

Ibrutinib for the Treatment of AIHA in Patients With CLL/SLL or CLL-like MBL

Autoimmune Hemolytic AnemiaChronic Lymphocytic Leukemia2 more

This is a multicenter, single arm, phase II study aimed at evaluating ibrutinib therapy for the treatment of AIHA in patients with CLL/SLL or CLL-like MBL.

Not yet recruiting10 enrollment criteria

Natural History Study of Monoclonal B Cell Lymphocytosis (MBL), Chronic Lymphocytic Leukemia/Small...

Waldenstrom MacroglobulinemiaLymphoplasmacytic Lymphoma3 more

Background: The development of new technologies now allow scientists to investigate the molecular basis and clinical manifestations of monoclonal B cell lymphocytosis (MBL), chronic lymphocytic leukemia(CLL)/small lymphocytic lymphoma (SLL), lymphoplasmacytic lymphoma (LPL)/Waldenstrom macroglobulinemia (WM), and splenic marginal zone lymphoma (SMZL). Applying these methods in a natural history study can clarify processes involved in disease progression and possibly lead to the discovery or validation of treatment targets. Objectives: Study the history of MBL/CLL/SLL/LPL/WM/SMZL in patients prior to and after treatment. Characterize clinical, biologic and molecular events of disease stability and progression of patients enrolled on this protocol. Eligibility: Diagnosis of MBL/CLL/SLL/LPL/WM/SMZL Age greater than or equal to 18 years. Patients with CLL/SLL in remission after chemotherapy are excluded. ECOG performance status of 0-2. Design: Patients are typically followed every 6 to 24 months in the clinic and have blood drawn. When required patients may undergo additional testing that may include bone marrow biopsy and aspiration, blood drawing, lymph node biopsy, x-ray studies, positron emission tomography and CT and MRI scans. Some of these tests may be required to monitor CLL/SLL, LPL/WM, and SMZL patients. Other tests, such as bone marrow biopsy and aspiration, lymph node biopsy, may not be clinically indicated, but patients may be asked to undergo these procedures for research purposes. No treatment will be administered on this study. If a patients requires treatment for their cancer, available NIH clinical trials and alternative treatment options will be discussed with the patient.

Recruiting6 enrollment criteria

B-Cell Hematologic Malignancy Vaccination Registry

Monoclonal Gammopathy of Undetermined SignificanceMultiple Myeloma6 more

The goal of this study is to develop a vaccination registry system for Aurora Health Care patients newly diagnosed with MM and other B-Cell Hematologic Malignancies in order to prospectively characterize vaccination history and outcomes such as infection in these patients at Aurora Health Care. Additionally hospitalization rates, cost analysis, infection (influenza, pneumonia, other) related to vaccination in this patient population will be evaluated.

Enrolling by invitation9 enrollment criteria

Family Study of Lymphoproliferative Disorders

LymphomaNon-Hodgkin8 more

Blood and lymph node cancers can begin in either the lymphatic tissues (as in the case of lymphoma) or in the bone marrow (as with leukemia and myeloma), and they all are involved with the uncontrolled growth of white blood cells. There are many subtypes of these cancers, e.g., chronic lymphocytic leukemia and non-Hodgkin lymphoma. Since there is evidence that these cancers cluster in families, this study aims to understand how genetics and environmental exposures contribute to the development of these cancers.

Recruiting1 enrollment criteria

Study on the Diagnosis and Management of CLL in Italy by GIMEMA

Chronic Lymphocytic LeukemiaSmall Lymphocytic Lymphoma1 more

retrospective and prospective multicenter observational clinical and biological data collection from all patients with newly diagnosed CLL, SLL or MBL. retrospective cohort: all cases with a diagnosis between January 1st 2010 and August 31th 2021. prospective cohort: all patients with a diagnosis between September 1st 2021 and September 1st 2025.

Recruiting9 enrollment criteria

Lenalidomide in Improving Immune Response to Vaccine Therapy in Patients With Chronic Lymphocytic...

Monoclonal B-Cell LymphocytosisStage 0 Chronic Lymphocytic Leukemia2 more

This randomized phase II trial studies how well lenalidomide improves immune response to pneumococcal 13-valent conjugate vaccine in patients with chronic lymphocytic leukemia, small lymphocytic lymphoma, or monoclonal B cell lymphocytosis. Biological therapies, such as lenalidomide, use substances made from living organisms that may stimulate or suppress the immune system in different ways and stop cancer cells from growing. Lenalidomide may also improve the effectiveness of pneumococcal 13-valent conjugate vaccine that is used to prevent infection.

Terminated52 enrollment criteria

Lenalidomide and Ofatumumab in Treating Participants With Previously Treated Chronic Lymphocytic...

Chronic Lymphocytic LeukemiaFatigue8 more

This phase II trial studies how well lenalidomide and ofatumumab work in treating participants with previously treated chronic lymphocytic leukemia or small lymphocytic lymphoma. Drugs used in chemotherapy, such as lenalidomide, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Monoclonal antibodies, such as ofatumumab, may interfere with the ability of tumor cells to grow and spread. Giving lenalidomide and ofatumumab may work better in treating participants with chronic lymphocytic leukemia or small lymphocytic lymphoma

Completed19 enrollment criteria
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