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NCT Number: NCT07697118

Study Evaluating a Gene Therapy for IPEX Syndrome Through the Expression of FOXP3 on Deficient T Cells to Produce Tregs-like.

The purpose of this study is to evaluate the safety and efficacy of FOXP3-T4 (an autologous gene therapy) alone or in combination with low-dose IL-2 for the treatment of IPEX syndrome. The therapy involves the transplantation of autologous CD4+ T-cells transduced ex vivo with the LV-EF1a-FOXP3-LNGFR lentiviral vector. The study follows a staggered approach: the first two patients will receive FOXP3-T4 monotherapy. Subsequent patients will receive FOXP3-T4 followed if needed by low-dose IL-2 treatment consisting of a daily dose for 5 days, then weekly administrations for 3 months.

The study aims to stabilize autoimmune manifestations and potentially cure the underlying disease, ultimately allowing for the discontinuation of ongoing immunosuppressive treatments.

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Key information

Age range

1 year–45 year

Sex eligibility

Male

Study type

Interventional

Phase

Phase 1 / Phase 2

Primary location

Department of Biotherapy, Hopital Necker Enfants malades

Paris, Île-de-France Region, 75015, France

Location contact

Marina CAVAZZANA, MD, PHD

CONTACT

[email protected]

01 44 49 50 68 ext. +33

About this study

IPEX syndrome is a primary immunodeficiency caused by hemizygous mutations in the gene FOXP3, which encodes an essential transcription factor required to maintain immunological tolerance by thymus-derived regulatory T (Treg) cells. The most common presentation suggestive of the diagnosis of IPEX syndrome is the classical triad of enteropathy, type I diabetes (TID), and eczema in neonatal onset. Still, it is now well established that IPEX syndrome comprises a broad spectrum of clinical manifestations with different degrees of severity and evolution.

Currently, the only curative treatment for the severe form is allogeneic hematopoietic stem cell transplantation (HSCT). However, because of its significant toxicity, it can be proposed only for more severe presentations and when an HLA identical donor is available. Moreover, the post-HSCT prognosis is also linked to prior disease activity and organ failures.

This clinical study aims to assess a new therapeutical strategy consisting of the conversion of the IPEX patient's CD4+T-cells into functional Treg-like cells by transducing them with an optimized bidirectional lentivirus vector expressing human FOXP3 and a truncated form of the low-affinity nerve growth factor receptor (ΔLNGFR) allowing the selection of the transduced cells. To favour Treg-like cells engraftment and expansion, the FOXP3-T4 infusion may be combined with subcutaneous injection of low-dose IL-2, if needed. Injecting FOXP3-T4 T-reg-like cells into IPEX patients is expected to stably improve the autoimmune manifestations and even cure the underlying disease, allowing the ongoing immunosuppressive treatments to be stopped.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Male patients only
  • Patients aged from 1 - 45 years of age (the first three patients will be aged between 10 - 45 years of age)
  • Patient with IPEX syndrome caused by mutation of the FOXP3 gene
  • Patients are eligible from the second line of treatment onward, even those under controlled disease
  • Patient with recurrent IPEX symptoms, under immune suppressive medications
  • Patient for whom HSCT is not feasible or when no suitable compatible donor is available
  • Patients who have had prior allogeneic blood stem cell transplantation (HSCT) with engraftment failure defined as no intake of donor cells
  • Patient or parental, guardian's patient signed informed consent
  • Male participants of reproductive potential with a partner of childbearing potential (WOCBP): willing to use an effective method of contraception during the trial and for at least 12 months post-infusion
  • Affiliation to a French or European social security scheme

Exclusion criteria

  • Unwillingness to return for follow-up during the 2-year study and during the 15 years of long term follow up study.
  • Patient with short life expectancy
  • Patient on AME (state medical aid) (unless exemption from affiliation).
  • Diagnosis of a significant psychiatric disorder of the patient that could seriously impede the ability to participate in the study.
  • Eligible for an HLA matched sibling or matched unrelated donor blood stem cell transplant (HLA 10/10) and be willing to undergo transplant.
  • Patients with uncontrolled or ongoing active infections.
  • HIV-1 or 2 or HTLV-1 infections.
  • Patients with severe IPEX clinical presentation needing a rapid allogeneic HSCT treatment within 3 months.
  • Patients with known history of hypersensitivity to IL-2 or any component of the formulation (mannitol, sodium lauryl sulfate, monosodium phosphate dehydrate, disodium phosphate dehydrate, glucose.

Treatment and study plan

FOXP3-T4 drug product

Genetic

Each patient will receive a single IV infusion of FOXP3-T4, autologous gene-modified CD4+ T-transduced ex vivo with a self-inactivating lentiviral vector (LV-EF1a.FOXP3-LNGFR)

ILT-101

Drug

The first two patients included in the study will not receive IL-2 treatment. The others will receive the first injection the FOXP3-T4 treatment and if needed IL2-treatment. For IL2 treatment, patients will receive a daily dose for 5 days, followed by an administration per week for 3 months (ILT-101)

Other names: Adeleuskin or IL2

Primary outcomes

  1. Frequency of clinical AEs and pathological variations of laboratory parameters

    Time frame: Up to 24 months post-infusion

    Number of clinical AEs

  2. Severity of clinical AEs and pathological variations of laboratory parameters

    Time frame: Up to 24 months post-infusion

    Grading will be performed according to the CTCAE (Common Terminology Criteria for Adverse Events) current version. Severity is rated on a scale of Grade 1 (Mild) to Grade 5 (Death).

  3. Incidence of clinically detectable lymphoproliferation and abnormal clonal dominance

    Time frame: Up to 24 months post-infusion

    This is measured via Vector Insertion Site Analysis (VISA)

  4. Incidence of clinically detectable lymphoproliferation and abnormal clonal dominance

    Time frame: Beyond 3 months to 24 months post-infusion

    This is measured by proliferation of LNGFR+ cells

  5. Detection of Replication-Competent Lentivirus (RCL)

    Time frame: Up to 24 months post-infusion

  6. Persistence of recirculating LNGFR+among CD4+ T cells

    Time frame: at 3 months post-infusion

    Percentage of LNGFR+ among CD4+ T cells

Secondary outcomes

  1. Persistence of FOXP3-T4 Cells

    Time frame: Up to 24 months post-infusion

    Persistence of recirculating LNGFR among CD4+ T cells

  2. Phenotyping

    Time frame: Up to 24 months post-infusion

    Deeper phenotyping of FOXP3-T4 (CD4+LNGFR+ CD25+ FOXP3+ CD127low)

  3. Vector Copy Number (VCN) Analysis

    Time frame: Up to 24 months post-infusion

    Quantification of the transgene copy number (VCN) on drug product and on sorted T-CD4+

  4. Immunophenotyping T and B cells if no change is detected from the baseline (e.g. before treatment), the immunological phenotype

    Time frame: Beyond 3 months to 24 months post-infusion

  5. TCR repertoire

    Time frame: At 3 months, 12 months and 24 months, post-infusion

    Evaluated by NGS before and after the treatment with FOXP3-T4

  6. Autoantibodies dosage

    Time frame: At 3 months, 6 months, 12 months and 24 months post-infusion

  7. Organ-Specific Remission: Skin disease

    Time frame: Up to 24 months post-infusion

    Diminution of the skin lesions severity

  8. Organ-Specific Remission: Skin disease

    Time frame: Up to 24 months post-infusion

    Diminution of inflammation in the skin biopsy

  9. Organ-Specific Remission: Endocrine System Function

    Time frame: Up to 24 months post-infusion

    Evaluation of the functions of endocrine glands

  10. Organ-Specific Remission: Endocrine System Function

    Time frame: Up to 24 months post-infusion

    Reduction of insulin dose administrered

  11. Organ-Specific Remission: Endocrine System Function

    Time frame: Up to 24 months post-infusion

    Reduction of HBA1C

  12. Organ-Specific Remission: Renal function

    Time frame: Up to 24 months post-infusion months

    Improvement of creatine and creatine clearance

  13. Organ-Specific Remission: Renal function

    Time frame: Up to 24 months post-infusion months

    Improvement of proteinuria

  14. Organ-Specific Remission: Renal function

    Time frame: Up to 24 months post-infusion months

    Improvement of tubular effect

  15. Organ-Specific Remission: Digestive System

    Time frame: Up to 24 months post-infusion months

    Change in the weight curve

  16. Organ-Specific Remission: Digestive System

    Time frame: Up to 24 months post-infusion months

    Change in diarrhea incidence

  17. Organ-Specific Remission: Digestive System

    Time frame: Up to 24 months post-infusion months

    Decrease of fecal calprotectin

  18. Organ-Specific Remission: Musculoskeletal System

    Time frame: Up to 24 months post-infusion months

    Improvement of arthritis evaluated by physical examination

  19. Organ-Specific Remission: Respiratory Function

    Time frame: Up to 24 months post-infusion months

    Improvement of asthma evaluated by physical examination

  20. Organ-Specific Remission: General status

    Time frame: Up to 24 months post-infusion months

    Improvement of performance status : Lansky and Karnofsky scores range from 100 to 10

  21. Organ-Specific Remission: Blood count

    Time frame: Up to 24 months post-infusion months

    Presence of autoimmune hemolytic anemia

  22. Organ-Specific Remission: Blood count

    Time frame: Up to 24 months post-infusion months

    Presence of thrombocytopenia

  23. Organ-Specific Remission: Eye

    Time frame: Up to 24 months post-infusion months

    Improvement of blepheratis evaluated by physical examination.

  24. Reduction of Concomitant Therapy

    Time frame: Up to 24 months

    Reduction of corticosteroid therapy or immunosuppressive treatment

Study contacts

Contact information is provided by the study sponsor or research team.

Aline DECHANET, Project Manager

CONTACT

[email protected]

01 44 38 17 11 ext. +33

Marina CAVAZZANA, MD, PhD

CONTACT

[email protected]

01 44 49 50 68 ext. + 33

Sponsors and collaborators

Lead sponsor

Assistance Publique - Hôpitaux de Paris

Other

Collaborators

  • URC-CIC Paris Descartes Necker Cochin

Registry information

Official study title

A Phase I/II Open-label, Non-randomized, Monocentric, Single-arm Study Evaluating the Safety and Efficacy of Induced CD4+ Treg by LV Vector Transduction Expressing the FOXP3 cDNA (FOXP3-T4) in Patients With IPEX Syndrome

Acronym: THERIPEX

Important dates

Study start
2026
Primary completion
2028
Study completion
2029
First posted
Jul 13, 2026
Registry last updated
Jul 13, 2026

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.

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