Hopital Beaujon
Verified
Clichy, France
Rare diseases
Investigational molecules
Locations
A plain-language summary of the goals, design and what participants do
This clinical trial is focused on studying a rare disease called Familial Hemophagocytic Lymphohistiocytosis (FHL), which is caused by mutations in the UNC13D gene. The study is testing a new treatment involving gene therapy. This treatment uses a special type of cell therapy with two medications: MUNC13.4-CD34 suspension and MUNC13.4-T3 suspension. These medications are made from the patient's own cells, which are modified outside the body using a lentiviral vector, a tool that helps deliver the correct gene into the cells. The modified cells are then given back to the patient through an intravenous infusion.
The purpose of the study is to evaluate the safety and effectiveness of this gene therapy in patients with FHL. Participants will receive a single dose of their own modified cells. The study will monitor the patients closely to see how their bodies respond to the treatment and to check for any side effects. The trial will also look at how well the treatment works in controlling the disease over time.
Throughout the study, researchers will observe the patients for any changes in their health, focusing on the safety of the treatment and its ability to help manage FHL. The study aims to provide valuable information on whether this new gene therapy can be a safe and effective option for patients with this genetic condition.
The trial runs in 7 steps – from screening to follow-up. Each step says what happens and what the team monitors.
7 criteria
6 criteria
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Clichy, France
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is a type of gene therapy used in this clinical trial. It involves taking a patient's own stem cells, which are special cells that can develop into different types of blood cells. These stem cells are collected from the patient and then modified outside the body using a special vector, which is like a delivery system, to carry a healthy version of the UNC13D gene. This modified gene is intended to help correct the genetic problem that causes the disease. After the modification, the stem cells are returned to the patient's body to help restore normal function.
is another part of the gene therapy approach in this trial. It involves using the patient's own T-cells, which are a type of immune cell. These T-cells are collected and then modified in a similar way to the stem cells, using a vector to introduce the healthy UNC13D gene. The goal is to enhance the immune system's ability to function properly by correcting the genetic defect in these cells. Once modified, the T-cells are returned to the patient's body to help improve immune function.
is the tool used to modify the patient's cells in this trial. It is a type of viral vector, which means it uses a virus that has been altered to be safe and is used to deliver the healthy UNC13D gene into the patient's cells. This vector helps ensure that the new gene is inserted into the cells correctly, allowing them to produce the necessary proteins to help treat the disease.
This medication is administered through a gene therapy approach, where a patient's own stem cells are modified outside the body and then reintroduced. It is currently being studied in clinical trials for its safety and effectiveness in treating Familial Hemophagocytic Lymphohistiocytosis (FHL), a rare genetic disorder. The therapy works by using a lentiviral vector to insert a healthy copy of the UNC13D gene into the patient's stem cells, aiming to correct the underlying genetic defect. MUNC-CD34 falls under the category of gene therapy, which is a cutting-edge area in medicine focused on treating diseases by modifying genes.
This treatment involves the use of modified T-cells, which are a type of immune cell, to help treat Familial Hemophagocytic Lymphohistiocytosis (FHL). It is part of a clinical trial assessing its safety and potential benefits. The process includes altering the patient's T-cells with a lentiviral vector to express the UNC13D gene, which is intended to address the genetic mutation causing the disorder. MUNC-T3 is classified as a form of gene therapy, a promising field that seeks to treat diseases by correcting genetic abnormalities.
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