Great Ormond Street Hospital for Children NHS Foundation Trust
London, Greater London, WC1N 3JH, United Kingdom
Location status: Recruiting
NCT Number: NCT03601286
Severe combined immunodeficiency disorder (SCID) is a heterogeneous group of inherited disorders characterized by a profound reduction or absence of T lymphocyte function, resulting in lack of both cellular and humoral immunity. SCID arises from a variety of molecular defects which affect lymphocyte development and function. The most common form of SCID is an X-linked form (SCID-X1), which accounts for 30-50% of all cases. SCID-X1 is caused by defects in the common cytokine receptor gamma chain, which was originally identified as a component of the high affinity interleukin-2 receptor (IL2RG).
Allogeneic haematopoietic stem cell transplantation (HSCT), which replaces the patient's bone marrow with that of a healthy donor, is the only treatment that definitively restores the normal function of the bone marrow. HSCT is the first choice of treatment for patients with signs of bone marrow failure and a fully-matched related donor. However, patients without a fully-matched related donor have much worse overall outcomes from HSCT.
This study will investigate whether patients with SCID-X1 without a fully matched related donor may benefit from gene therapy. To do this the investigators propose to perform a phase I/II clinical trial to evaluate the safety and efficacy (effect) of gene therapy for SCID-X1 patients using a lentivirus delivery system containing the IL2RG gene. Up to 5 eligible SCID-X1 patients will undergo mobilisation and harvest of their haematopoietic stem precursor cells (HPSCs). In the laboratory the disabled lentivirus will be used to insert a normal human IL2RG gene into the patient's harvested HPSCs. Patients will receive chemotherapy conditioning prior to cell infusion, in order to enhance grafting. The genetically corrected stem cells will then be re-infused into the patient. Patients will be followed up for 2 years. This trial will determine whether gene therapy for SCID-X1 using a lentiviral vector is safe, feasible and effective
Interested in participating?
Request Info8 week–5 year
Male
Interventional
Phase 1
London, Greater London, WC1N 3JH, United Kingdom
Location status: Recruiting
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Gene therapy for X-linked Severe Combined Immunodeficiency will be performed by introduction a normal copy of the IL2RG gene into the blood forming stem cells (CD34+ cells) of the patient's bone marrow by using a type of gene delivery system (in this trial called a lentiviral vector). The gene corrected cells are then transplanted back into the patient.
Other names: G2SCID lentiviral vector transduced CD34+ cells
Time frame: 1 year
Event-free survival at 1 year post-infusion. Events will include death, infusion of unmanipulated back-up product for failure of haematopoietic recovery, and allogeneic transplant performed for poor immune reconstitution
Time frame: 1 year
T cell reconstitution at 1 year post-infusion: CD3+ T cell count ≥300 cells/microliter in peripheral blood
Time frame: 1 year
T cell reconstitution at 1 year post-infusion: Gene marking ≥0.1 copies/cell in sorted CD3+ T cells
Time frame: 2 years
Measure overall survival at 2 years post-infusion
Time frame: 2 years
Measure event-free survival at 2 years post-infusion
Time frame: up to 2 years post-infusion of gene therapy
Incidence of adverse events related to gene therapy
Time frame: up to 2 years post-infusion of gene therapy
Enumeration of absolute lymphocyte count determined by routine complete blood counts (CBC)
Time frame: up to 6 weeks post-infusion of gene therapy
Haematopoietic recovery is defined as absolute neutrophil count above 0.5 x10^9 /l for three consecutive days, achieved within 6 weeks following infusion.
Time frame: up to 2 years post-infusion of gene therapy
Absolute numbers of T, B and NK lymphocytes
Time frame: up to 2 years post-infusion of gene therapy
Percentage of naïve and memory T cell subsets
Time frame: up to 2 years post-infusion of gene therapy
Percentage of naïve and memory B cell subsets
Time frame: 2 years post-infusion of gene therapy
Freedom from immunoglobulin substitution for at least 9 months
Time frame: up to 2 years post-infusion of gene therapy
Serum immunoglobulin levels
Time frame: up to 2 years post-infusion of gene therapy
Proliferation of lymphocytes to phytohaemagglutinin determined by titrated thymidine incorporation
Time frame: up to 2 years post-infusion of gene therapy
Measure antigen specific antibody titres to tetanus toxoid
Time frame: up to 2 years post-infusion of gene therapy
Measure T cell receptor excision circles (TREC)
Time frame: up to 2 years post-infusion of gene therapy
Measure T cell receptor Vb family usage
Time frame: up to 2 years post-infusion of gene therapy
Gene marking in specific lineages of peripheral blood cells. Genomic DNA isolated from each population will be assayed for VCN by quantitative PCR (qPCR). The results will be aggregated to determine the effectiveness of gene marking in the peripheral blood cells.
Time frame: up to 2 years post-infusion of gene therapy
Clonal diversity will be quantitated and used to estimate the number of transduced haematopoietic stem cells that have engrafted in the subjects. Number of sequence reads and unique integration sites will be assessed to quantify population clone diversity, distribution of integration sites and relative abundance.
Time frame: at 6 month, 12 month and 2 years post-infusion of gene therapy
Correlation of potential biomarkers of humoral immune reconstitution at 6 months, 1 year, 2 years post infusion with freedom from intravenous immunoglobulin substitution and antibody response to tetanus at 2 years post infusion including: Gene marking in B cells and B cell phenotype.
Time frame: 2 years post-infusion of gene therapy
Correlation of busulfan area-under-the-curve measurements prior to infusion with freedom from intravenous immunoglobulin substitution and antibody response to tetanus at 2 years post-infusion and other markers of humoral immune reconstitution
Time frame: 1 year and 2 years post infusion of gene therapy
Evidence of insertion site sharing between 2 or more lineages at 1 year and 2 years post infusion
Time frame: 1 year and 2 years post infusion of gene therapy
Correlation of gene marking and insertion site sharing in expanded peripheral blood CD34+ cells with peripheral blood mature cell samples at 1 year and 2 years post infusion
Time frame: Pre-harvest, 3 month, 6 month, 12 month and 2 years post infusion of gene therapy
Description of T cell receptor and B cell receptor repertoire before and after infusion
Time frame: Pre-harvest, 3 month, 6 month, 12 month and 2 years post infusion of gene therapy
Description of NK cell function and phenotype before and after infusion
Interested in participating?
Request InfoGreat Ormond Street Hospital for Children NHS Foundation Trust
Other
Phase I/II Study of Lentiviral Gene Transfer for SCID-X1 With Low Dose Targeted Busulfan
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
Published trials that share one or more normalized conditions with this study.
NCT01306019
Congenital, Hereditary, and Neonatal Diseases and Abnormalities, Genetic Diseases, Inborn
Bethesda, Maryland, United States
View Trial DetailsNCT00128973
Bronchial Diseases, Bronchiolitis
Bethesda, Maryland, United States
View Trial DetailsNCT07474935
Aneurysm, Aneurysm, False
Brest, France
View Trial DetailsNCT03311503
Congenital, Hereditary, and Neonatal Diseases and Abnormalities, Gene Therapy
Los Angeles, California, United States
View Trial Details