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In utero CRISPR-mediated therapeutic editing of metabolic genes

  • Avery C. Rossidis
  • , John D. Stratigis
  • , Alexandra C. Chadwick
  • , Heather A. Hartman
  • , Nicholas J. Ahn
  • , Haiying Li
  • , Kshitiz Singh
  • , Barbara E. Coons
  • , Li Li
  • , Wenjian Lv
  • , Philip W. Zoltick
  • , Deepthi Alapati
  • , William Zacharias
  • , Rajan Jain
  • , Edward E. Morrisey
  • , Kiran Musunuru
  • , William H. Peranteau
  • The Children's Hospital of Philadelphia
  • University of Pennsylvania

Producción científicarevisión exhaustiva

203 Citas (Scopus)

Resumen

In utero gene editing has the potential to prenatally treat genetic diseases that result in significant morbidity and mortality before or shortly after birth. We assessed the viral vector–mediated delivery of CRISPR–Cas9 or base editor 3 in utero, seeking therapeutic modification of Pcsk9 or Hpd in wild-type mice or the murine model of hereditary tyrosinemia type 1, respectively. We observed long-term postnatal persistence of edited cells in both models, with reduction of plasma PCSK9 and cholesterol levels following in utero Pcsk9 targeting and rescue of the lethal phenotype of hereditary tyrosinemia type 1 following in utero Hpd targeting. The results of this proof-of-concept work demonstrate the possibility of efficiently performing gene editing before birth, pointing to a potential new therapeutic approach for selected congenital genetic disorders.

Idioma originalEnglish
Páginas (desde-hasta)1513-1518
Número de páginas6
PublicaciónNature Medicine
Volumen24
N.º10
DOI
EstadoPublished - 1 oct 2018
Publicado de forma externa

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