View clinical trials related to Leukemia, Lymphocytic, Chronic.
Filter by:Sarcopenia is defined as reduction in muscle mass and function according to the criteria of the European Working Group on Sarcopenia in older people. Initially described for elderly patients, it is also presented as a negative prognostic factor in overall survival in oncology in certain locations (lung, ENT pathways, colon, pancreas) and more controversially for hemopathies. Its screening by measurement of skeletal muscle mass by CT scan and / or PET scan against L3 and by physical functional tests is not routinely integrated despite international recommendations. Sarcopenia is one of the characteristics of patient fragility that can induce more complications, lengthen the average length of hospital stay and reduce overall survival. The PRONOPALL score, a predictor score for survival validated by a previous study, will be correlated with the presence (or absence) of sarcopenia at inclusion for patients with a solid tumor (breast, ovary, prostate cancer , kidney, lungs, pancreas, colorectal). A prospective study on 38 patients with metastatic cancer was carried out at the Victor Hugo clinic in Le Mans between 01/JUN/21 and 31/AUG/21 (SPACE, ClinicalTrials.gov number, NCT04714203): 25 patients were analyzable on the CT and PRONOPALL score data with a prevalence of sarcopenia of 60% and median overall survival of 14 months (unpublished data), clinical performance and muscle strength tests were not carried out (as in the publications cited above). A prospective study for the detection of sarcopenia is indicated by extending to blood diseases with the integration of clinical tests included in the initial APA (Adapted physical activity) assessment recommended for diagnosis.
What are the investigators trying to do? By most measures, humans consume more food than needed. Over several decades, overconsumption has led to an increase in a number of diseases, including cancer. What if this could be reversed, or slowed down, by fasting? Would that improve how cancer patients respond to chemotherapy? Could simply changing eating patterns to reduce overall intake be a way to prevent and/or manage cancer? All of these are important questions and the investigators are undertaking a new initiative to study how nutrition and dietary behaviours affect cancer patients. Fasting: A way to improve overall health and increase our defenses to cancer Fasting in various forms has been shown to have a number of health benefits. Intermittent fasting, or time restricted feeding, has been shown to reverse or improve various diseases such as diabetes, heart disease and metabolic syndrome, decrease the risk of cancer, and significantly extend the life of an individual. In previous studies, fasting was well-tolerated with notable improvements in energy levels, sense of well-being, and sleep quality. In cancer patients, clinical trials have demonstrated intermittent fasting to lessen some of the short-term side effects of chemotherapy such as nausea, fatigue, and sleep quality. How fasting alters the course of cancer or improve immune defenses is not yet known but may be an alternative way to treat or manage cancer. The study plan The investigators plan to examine the effects of intermittent fasting (time restricted feeding) in patients with chronic lymphocytic leukemia (CLL). CLL is the most common chronic leukemia and is presently incurable. The advantage of choosing this patient population is that the cancer is easily assessed with a blood test measuring the amount of cancerous white cells (lymphocytes). Patients who consent to participate in this study will, through the support of an oncology dietitian and after a period of transition, split their daily feeding into a fasting period and a non-fasting period. This regime is as simple as skipping or having a late breakfast. At this time, participants will not be required to limit their total caloric intake. What is required from the participant? The investigators will assess whether intermittent fasting reduces the cancer by measuring the lymphocyte count in the blood over a period of 3 months. Study participants will complete questionnaires to help determine if fasting causes any change in their quality of life. The effects of intermittent fasting on a cancer control system called autophagy, as well as its effects on inflammation will be studied in the Deeley Research Centre laboratory at BC Cancer. What is the short- and long-term impact? In the short-term, if intermittent fasting can have an effect cancer lymphocyte count or on autophagy, then investigators will proceed with further studies to try and optimize the effects of intermittent fasting. In the long-term, this study is expected to be the first-ever to shed light on how intermittent fasting may be linked to cancer survival and/or growth. If true, this will open up new avenues to re-evaluate the inclusion of diet into cancer treatment protocols.
This is a Phase 1/2a, nonrandomized, open-label, parallel assignment, single-dose, dose-escalation, and dose-expansion study to evaluate the safety and clinical activity of PBCAR20A in adult subjects with r/r B-cell NHL or r/r CLL/SLL.
Background: Chronic lymphocytic leukemia and small lymphocytic lymphoma (hereby referred as CLL) are tumors of B cells. A subset of patients categorized as high-risk CLL has a poor clinical outcome when treated with conventional chemotherapy. This single-arm, phase II study investigates the combination of ibrutinib, fludarabine and pembrolizumab for treatment of CLL. Ibrutinib is an orally administered therapy for CLL. Fludarabine is a well-tolerated drug that has been widely used to treat CLL. Also, fludarabine can modulate CLL cells as well as immune cells that support the growth of CLL cells. Pembrolizumab recruits immune cells to attack CLL cells. With this approach we hope to achieve a greater reduction in CLL cells than with single agent ibrutinib and to restore healthier immune system that could contribute to durable responses. Objective: To investigate the rate of complete response to ibrutinib, short course fludarabine and pembrolizumab. Eligibility: Patients with active CLL meeting treatment indications defined by 2008 International Workshop on CLL (IWCLL) consensus guideline. High-risk CLL defined by one of the following: - Relapsed/refractory disease status, or - Presence of high-risk mutations regardless of prior treatment status: deletion 17p, TP53 mutation, NOTCH1 mutation, SF3B1 mutation, MYC aberration, or complex cytogenetics. Design: This is a single-arm, open-label phase II study. Timeline: Treatment on this study is given in cycles from cycle -3 to 17, then in months beyond cycle 17. Cycles -3 to -1 are 28-day cycles. Cycles 1 to 17 are 21-day cycles. After completion of 1 year of pembrolizumab, the time on study is by chronological months on study from starting pembrolizumab. Treatment plan: - Ibrutinib is given starting from cycle -3 and continuously until disease progression or intolerable side effects occur. - Fludarabine is given on D1-D5 on cycle -2 only - Pembrolizumab is given every 3 weeks starting from cycle 1 for 1 year. - Minimal residual disease will be measured at 2 years from cycle 1 to determine the need for long- term treatment with ibrutinib. - Previously-untreated patients who achieve minimal residual disease negativity will stop ibrutinib. - Patients who do not achieve minimal residual disease negativity or who has Relapsed/refractory CLL will continue ibrutinib.
A prospective, open-label, multicentre phase-II trial of ibrutinib plus venetoclax plus obinutuzumab in physically fit (CIRS ≤ 6 & normal creatinine clearance) and unfit (CIRS > 6 & creatinine clearance ≥ 50 ml/min) patients with previously untreated chronic lymphocytic leukemia (CLL) with TP53 deletion (17p-) and/or mutation
This study is a dose escalation, and cohort expansion study in subjects with advanced cancer for which no standard therapy exists. Subjects must have received prior treatment for cancer that has not worked, or has stopped working.
This study is a means of providing transplantation to those patients who would be a stem cell transplant candidate who do not have an appropriate donor. The use of CD34 selected haploidentical donor with an umbilical cord unit may help provide earlier engraftment without the need for long term immunosuppression. This study tests a new method of bone marrow transplantation called combined haploidentical-cord blood transplantation. In this procedure, some of the blood forming cells (the stem cells) from a partially human leukocyte antigen (HLA) matched (haploidentical) related donor are collected from the blood, as well as cells from an umbilical cord are transplanted into the patient (the recipient) after administration of a "conditioning regimen". A conditioning regimen consists of chemotherapy and sometimes radiation to the entire body (total body irradiation, or TBI), which is meant to destroy the cancer cells and suppress the recipient's immune system to allow the transplanted cells to take (grow).
The present project aims at evaluating the capacity of MSC to improve one-year overall survival of patients transplanted with HLA-mismatched PBSC from related or unrelated donors after non-myeloablative conditioning. Co-infusion of MSC has been shown to facilitate engraftment of hematopoietic stem cell (HSC) in an immunodeficient mouse model. In addition, it has been shown that infusion of third party MSC in HSC transplantation could be successfully used as treatment for grade II-IV steroid-refractory acute graft versus host disease. One hundred and twenty patients with HLA-mismatched donors will be included over 6 years at multiple centers across Belgium through the transplant committee of the Belgian Hematological Society. The conditioning regimen will consist of fludarabine and 2 Gy TBI, followed by the infusion of donor HSC. Patients will be randomized 1/1 in double-blind fashion to receive or not MSC (1.5-.3.0 x106/kg) from third-party (either haploidentical family members or unrelated volunteer) donors on day 0. Postgrafting immunosuppression will combine tacrolimus and MMF. Except for the collection, expansion and infusion of MSC, the clinical management of the patient will not differ from that of routine NM-HCT.
The purpose of this research study is to see if the investigational drug EL625, when combined with traditional chemotherapy (rituximab, fludarabine, and cyclophosphamide), is effective in Persistent Chronic Lymphocytic Leukemia (CLL) and Small Lymphocytic Lymphoma (SLL)
To determine the highest dose of study drug that can be taken without causing serious side effects in patients with advanced cancer. The study will look at safety of the study drug and whether the treatment schedule is tolerated by patients.