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Stable and functional lymphoid reconstitution in artemis-deficient mice following lentiviral artemis gene transfer into hematopoietic stem cells

  • Fatine Benjelloun
  • , Alexandrine Garrigue
  • , Corinne Demerens-de Chappedelaine
  • , Pauline Soulas-Sprauel
  • , Michele Malassis-Séris
  • , Daniel Stockholm
  • , Julia Hauer
  • , Johanna Blondeau
  • , Julie Rivière
  • , Annick Lim
  • , Marc Le Lorc'h
  • , Serge Romana
  • , Nicole Brousse
  • , Frederique Pâques
  • , Anne Galy
  • , Pierre Charneau
  • , Alain Fischer
  • , Jean Pierre de Villartay
  • , Marina Cavazzana-Calvo
  • INSERM U70
  • CNRS UMR 8587
  • Institut Pasteur, Paris
  • Hôpital Necker Enfants Malades
  • Cellectis Therapeutics

Research output: Contribution to journalArticlepeer-review

58 Scopus citations

Abstract

Patients with mutations in the Artemis gene display a complete absence of T- and B lymphocytes, together with increased cellular radiosensitivity; this leads to a radiosensitive severe combined immunodeficiency (RS-SCID). Allogenic hematopoietic stem-cell (HSC) transplantation is only partially successful in the absence of an human leukocyte antigen-genoidentical donor, and this has prompted a search for alternative therapeutic approaches such as gene therapy. In this study, a self-inactivated lentiviral vector expressing Artemis was used to complement the Artemis knockout mouse (Art-/-). Transplantation of Artemis-transduced HSCs into irradiated Art-/- mice restored a stable (over a 15-month period of follow-up) and functional T- and cell repertoire that was comparable to that of control mice. The success of secondary transplantations demonstrated that the HSCs had been transduced. One of thirteen mice developed a thymoma 6 months after gene therapy. Although thymic cells were seen to be carrying two lentiviral integration sites, there was no evidence of lentivirus-driven oncogene activation. The Art-/- mice were found to be prone to develop T-cell lymphomas, either spontaneously or after irradiation. These data indicate that the observed lymphoproliferation was probably the consequence of the chromosomal instability associated with the Artemis-deficient background. As a whole, our work provides a basis for supporting the gene therapy approach in Artemis-deficient SCID.

Original languageEnglish
Pages (from-to)1490-1499
Number of pages10
JournalMolecular Therapy
Volume16
Issue number8
DOIs
StatePublished - Aug 2008
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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