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Neonatal gene therapy achieves sustained disease rescue of maple syrup urine disease in mice.
Pontoizeau, Clément; Simon-Sola, Marcelo; Gaborit, Clovis; Nguyen, Vincent; Rotaru, Irina; Tual, Nolan; Colella, Pasqualina; Girard, Muriel; Biferi, Maria-Grazia; Arnoux, Jean-Baptiste; Rötig, Agnès; Ottolenghi, Chris; de Lonlay, Pascale; Mingozzi, Federico; Cavazzana, Marina; Schiff, Manuel.
Afiliação
  • Pontoizeau C; Necker Hospital, APHP, Biochemistry, Metabolomics Unit, Paris Cité University, Paris, France. clement.pontoizeau@aphp.fr.
  • Simon-Sola M; Necker Hospital, APHP, Reference Center for Inborn Error of Metabolism, Pediatrics Department, Paris Cité University, Filière G2M, Paris, France. clement.pontoizeau@aphp.fr.
  • Gaborit C; Inserm UMR_S1163, Institut Imagine, Paris, France. clement.pontoizeau@aphp.fr.
  • Nguyen V; Inserm UMR_S1163, Institut Imagine, Paris, France.
  • Rotaru I; Inserm UMR_S1163, Institut Imagine, Paris, France.
  • Tual N; Inserm UMR_S1163, Institut Imagine, Paris, France.
  • Colella P; Inserm UMR_S1163, Institut Imagine, Paris, France.
  • Girard M; Inserm UMR_S1163, Institut Imagine, Paris, France.
  • Biferi MG; Généthon INTEGRARE UMR-S951, University of Evry, Evry, France.
  • Arnoux JB; Necker Hospital, APHP, Pediatric Hepatology Unit, Pediatrics Department, Paris Cité University, Paris, France.
  • Rötig A; Inserm U1151, Institut Necker Enfants Malades, Paris, France.
  • Ottolenghi C; Sorbonne University, Inserm, Institute of Myology, Centre of Research in Myology, Paris, France.
  • de Lonlay P; Necker Hospital, APHP, Reference Center for Inborn Error of Metabolism, Pediatrics Department, Paris Cité University, Filière G2M, Paris, France.
  • Mingozzi F; Inserm UMR_S1163, Institut Imagine, Paris, France.
  • Cavazzana M; Necker Hospital, APHP, Biochemistry, Metabolomics Unit, Paris Cité University, Paris, France.
  • Schiff M; Necker Hospital, APHP, Reference Center for Inborn Error of Metabolism, Pediatrics Department, Paris Cité University, Filière G2M, Paris, France.
Nat Commun ; 13(1): 3278, 2022 06 07.
Article em En | MEDLINE | ID: mdl-35672312
ABSTRACT
Maple syrup urine disease (MSUD) is a rare recessively inherited metabolic disorder causing accumulation of branched chain amino acids leading to neonatal death, if untreated. Treatment for MSUD represents an unmet need because the current treatment with life-long low-protein diet is challenging to maintain, and despite treatment the risk of acute decompensations and neuropsychiatric symptoms remains. Here, based on significant liver contribution to the catabolism of the branched chain amino acid leucine, we develop a liver-directed adeno-associated virus (AAV8) gene therapy for MSUD. We establish and characterize the Bckdha (branched chain keto acid dehydrogenase a)-/- mouse that exhibits a lethal neonatal phenotype mimicking human MSUD. Animals were treated at P0 with intravenous human BCKDHA AAV8 vectors under the control of either a ubiquitous or a liver-specific promoter. BCKDHA gene transfer rescued the lethal phenotype. While the use of a ubiquitous promoter fully and sustainably rescued the disease (long-term survival, normal phenotype and correction of biochemical abnormalities), liver-specific expression of BCKDHA led to partial, though sustained rescue. Here we show efficacy of gene therapy for MSUD demonstrating its potential for clinical translation.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Doença da Urina de Xarope de Bordo Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Doença da Urina de Xarope de Bordo Idioma: En Ano de publicação: 2022 Tipo de documento: Article