IP Library Granted Patent US 12,668,812
Granted Patent B2
US 12,668,812 · App. 17/295,093 · Granted Jun 30, 2026

Recombinant vectors suitable for the treatment of IPEX syndrome

Inventors: Isabelle Andre (Paris, FR); Emmanuelle Six (Paris, FR); Florence Bellier (Paris, FR); Marianne Delville (Paris, FR); Marina Cavazzana (Paris, FR); Mario Amendola (Evry, FR); Axel Schambach (Hannover, DE)
Assignees: INSERM (Institut National de la Santé et de la Recherche Médicale); Université de Paris; Assistance Publique-Hôpitaux de Paris (APHP); Fondation Imagine; Université d'Evry-Val-d'Essonne; Ecole Pratique des Hautes Etudes; Medizinische Hochschule Hannover
C12N15/86A61K40/11A61K40/22A61K40/416C07K14/4702C07K14/70578C12N5/0637A61K48/00C12N2740/15043
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Quick Facts
Patent No.
US 12,668,812
App. No.
17/295,093
Granted
Jun 30, 2026
Kind
B2
Abstract

IPEX (Immune dysregulation Polyendocrinopathy X linked) syndrome is a primary immunodeficiency caused by mutations in the gene encoding the transcription factor forkhead box P3 (FOXP3), which leads to the loss of function of thymus-derived CD4+CD25+ regulatory T (tTreg) cells. Preclinical and clinical studies suggest that T cell gene therapy approaches designed to selectively restore the repertoire of Treg cells by transfer of wild type FOXP3 gene is a promising potential cure for IPEX. However, there is still a need for a vector that can be used efficiently for the preparation of said Treg cells. The inventors thus compared 6 different lentiviral constructs according to 4 criteria (vector titers, level of transduction of human CD4+ T cells, level of expression of FOXP3 and ΔLNGFR genes, degree of correlation between both expression) and selected one construct comprising a bidirectional PGK-EF1a promoter that showed remarkable efficiency.

Claims (10)

1 . A method of producing a population of Treg cells, comprising the step of transfecting or transducing a population of T cells in vitro or ex vivo with a lentiviral vector comprising a recombinant nucleic acid molecule, wherein the recombinant nucleic acid molecule comprises

a bidirectional PGK-EF1a promoter operably linked to a first transgene in one direction and to a second transgene in the opposite direction, wherein the bidirectional PGK-EF1a promoter comprises a nucleic acid sequence as set forth in SEQ ID NO:5, and wherein

the first transgene is under control of the first PGK portion of the bidirectional PGK-EF1a promoter and encodes for a truncated low-affinity nerve growth factor receptor (LNGFR) comprising a nucleic acid sequence as set forth in SEQ ID NO: 8, and

the second transgene is under control of the second EF1a portion of the bidirectional PGK-EF1a promoter and encodes for FoxP3.

2 . A population of Treg cells obtainable by the method of claim 1 .

3 . The method of claim 1 , wherein the sequences of the first transgene and the second transgene are codon-optimized.

4 . The method of claim 1 , wherein

the second transgene comprises a nucleic acid sequence having at least 80% of identity with the nucleic acid sequence as set forth in SEQ ID NO:7.

5 . The method of claim 1 , wherein the recombinant nucleic acid molecule comprises a nucleic acid sequence having at least 80% of identity with the nucleic acid sequence as set forth in SEQ ID NO:11.

6 . The method of claim 1 , wherein the recombinant nucleic acid molecule comprises a nucleic acid sequence as set forth in SEQ ID NO:11.