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Scalable GMP-compliant gene correction of CD4+ T cells with IDLV template functionally validated in vitro and in vivo

Articolo
Data di Pubblicazione:
2023
Citazione:
Scalable GMP-compliant gene correction of CD4+ T cells with IDLV template functionally validated in vitro and in vivo / Asperti, C.; Canarutto, D.; Porcellini, S.; Sanvito, F.; Cecere, F.; Vavassori, V.; Ferrari, S.; Rovelli, E.; Albano, L.; Jacob, A.; Sergi Sergi, L.; Montaldo, E.; Ferrua, F.; Gonzalez-Granado, L. I.; Lougaris, V.; Badolato, R.; Finocchi, A.; Villa, A.; Radrizzani, M.; Naldini, L.. - In: MOLECULAR THERAPY. METHODS & CLINICAL DEVELOPMENT. - ISSN 2329-0501. - 30:(2023), pp. 546-557. [10.1016/j.omtm.2023.08.020]
Abstract:
Hyper-IgM1 is a rare X-linked combined immunodeficiency caused by mutations in the CD40 ligand (CD40LG) gene with a median survival of 25 years, potentially treatable with in situ CD4+ T cell gene editing with Cas9 and a one-size-fits-most corrective donor template. Here, starting from our research-grade editing protocol, we pursued the development of a good manufacturing practice (GMP)-compliant, scalable process that allows for correction, selection and expansion of edited cells, using an integrase defective lentiviral vector as donor template. After systematic optimization of reagents and conditions we proved maintenance of stem and central memory phenotypes and expression and function of CD40LG in edited healthy donor and patient cells recapitulating the physiological CD40LG regulation. We then documented the preserved fitness of edited cells by xenotransplantation into immunodeficient mice. Finally, we transitioned to large-scale manufacturing, and developed a panel of quality control assays. Overall, our GMP-compliant process takes long-range gene editing one step closer to clinical application with a reassuring safety profile.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Cas9; gene editing; GMP; hyper-IgM1; IDLV; large-scale process
Elenco autori:
Asperti, C.; Canarutto, D.; Porcellini, S.; Sanvito, F.; Cecere, F.; Vavassori, V.; Ferrari, S.; Rovelli, E.; Albano, L.; Jacob, A.; Sergi Sergi, L.; Montaldo, E.; Ferrua, F.; Gonzalez-Granado, L. I.; Lougaris, V.; Badolato, R.; Finocchi, A.; Villa, A.; Radrizzani, M.; Naldini, L.
Autori di Ateneo:
FERRARI SAMUELE
NALDINI LUIGI
Link alla scheda completa:
https://iris.unisr.it/handle/20.500.11768/198109
Pubblicato in:
MOLECULAR THERAPY. METHODS & CLINICAL DEVELOPMENT
Journal
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