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Liver development is restored by blastocyst complementation of HHEX knockout in mice and pigs.
Ruiz-Estevez, M; Crane, A T; Rodriguez-Villamil, P; Ongaratto, F L; You, Yun; Steevens, A R; Hill, C; Goldsmith, T; Webster, D A; Sherry, L; Lim, S; Denman, N; Low, W C; Carlson, D F; Dutton, J R; Steer, C J; Gafni, O.
Afiliación
  • Ruiz-Estevez M; Recombinetics Inc., Stem Cell Technologies, 3388 Mike Collins Drive, Eagan, MN, 55121, USA.
  • Crane AT; Department of Neurosurgery, University of Minnesota, Minneapolis, USA.
  • Rodriguez-Villamil P; Stem Cell Institute, University of Minnesota, Minneapolis, USA.
  • Ongaratto FL; Recombinetics Inc., Stem Cell Technologies, 3388 Mike Collins Drive, Eagan, MN, 55121, USA.
  • You Y; Recombinetics Inc., Stem Cell Technologies, 3388 Mike Collins Drive, Eagan, MN, 55121, USA.
  • Steevens AR; Mouse Genetics Laboratory, University of Minnesota, Minneapolis, USA.
  • Hill C; Department of Neurosurgery, University of Minnesota, Minneapolis, USA.
  • Goldsmith T; Stem Cell Institute, University of Minnesota, Minneapolis, USA.
  • Webster DA; Recombinetics Inc., Stem Cell Technologies, 3388 Mike Collins Drive, Eagan, MN, 55121, USA.
  • Sherry L; Recombinetics Inc., Stem Cell Technologies, 3388 Mike Collins Drive, Eagan, MN, 55121, USA.
  • Lim S; Recombinetics Inc., Stem Cell Technologies, 3388 Mike Collins Drive, Eagan, MN, 55121, USA.
  • Denman N; Recombinetics Inc., Stem Cell Technologies, 3388 Mike Collins Drive, Eagan, MN, 55121, USA.
  • Low WC; Bioinformatics and Computational Biology Program, University of Minnesota, Minneapolis, USA.
  • Carlson DF; Stem Cell Institute, University of Minnesota, Minneapolis, USA.
  • Dutton JR; Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, USA.
  • Steer CJ; Department of Neurosurgery, University of Minnesota, Minneapolis, USA.
  • Gafni O; Stem Cell Institute, University of Minnesota, Minneapolis, USA.
Stem Cell Res Ther ; 12(1): 292, 2021 05 19.
Article en En | MEDLINE | ID: mdl-34011403
ABSTRACT

BACKGROUND:

There are over 17,000 patients in the US waiting to receive liver transplants, and these numbers are increasing dramatically. Significant effort is being made to obtain functional hepatocytes and liver tissue that can for therapeutic use in patients. Blastocyst complementation is a challenging, innovative technology that could fundamentally change the future of organ transplantation. It requires the knockout (KO) of genes essential for cell or organ development in early stage host embryos followed by injection of donor pluripotent stem cells (PSCs) into host blastocysts to generate chimeric offspring in which progeny of the donor cells populate the open niche to develop functional tissues and organs.

METHODS:

The HHEX gene is necessary for proper liver development. We engineered loss of HHEX gene expression in early mouse and pig embryos and performed intraspecies blastocyst complementation of HHEX KO embryos with eGFP-labeled PSCs in order to rescue the loss of liver development.

RESULTS:

Loss of HHEX gene expression resulted in embryonic lethality at day 10.5 in mice and produced characteristics of lethality at day 18 in pigs, with absence of liver tissue in both species. Analyses of mouse and pig HHEX KO fetuses confirmed significant loss of liver-specific gene and protein expression. Intraspecies blastocyst complementation restored liver formation and liver-specific proteins in both mouse and pig. Livers in complemented chimeric fetuses in both species were comprised of eGFP-labeled donor-derived cells and survived beyond the previously observed time of HHEX KO embryonic lethality.

CONCLUSIONS:

This work demonstrates that loss of liver development in the HHEX KO can be rescued via blastocyst complementation in both mice and pigs. This complementation strategy is the first step towards generating interspecies chimeras for the goal of producing human liver cells, tissues, and potentially complete organs for clinical transplantation.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Trasplante de Órganos / Células Madre Pluripotentes Límite: Animals / Humans Idioma: En Revista: Stem Cell Res Ther Año: 2021 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Trasplante de Órganos / Células Madre Pluripotentes Límite: Animals / Humans Idioma: En Revista: Stem Cell Res Ther Año: 2021 Tipo del documento: Article País de afiliación: Estados Unidos