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Microsurgical nuclear transfer by intraooplasmic karyoplast injection as an alternative embryo reconstruction method in somatic cloning of pigs and other mammal species; application value of the method and its technical advantages: a review

Author

Listed:
  • M. Samiec

    (Department of Animal Reproduction Biotechnology, Immuno- and Cytogenetics, National Research Institute of Animal Production, Balice/Kraków, Poland)

  • M. Skrzyszowska

    (Department of Animal Reproduction Biotechnology, Immuno- and Cytogenetics, National Research Institute of Animal Production, Balice/Kraków, Poland)

Abstract

The introduction of cell nuclei into enucleated recipient cells, beyond enucleation, is the most significant stage of somatic cloning procedure. Microsurgical transfer of somatic nuclei can be an alternative method of clonal nuclear-cytoplasmic hybrid reconstruction towards cell fusion induced in the electric field, not only from the aspect of molecular mechanisms of nuclear chromatin rearrangement, advantageously influencing epigenetic reprogramming and structural remodelling of exogenous genetic material but also because in recent studies on pig cloning it was proved that the effectiveness of piezo-driven microinjection of ear-derived fibroblast karyoplasts measured by the percentage of oocytes preserving vitality after the cell nuclei transplantation operation did not differ significantly from the survival rate (viability) of clonal cybrids reconstituted by an electrofusion method. An intraooplasmic injection system of karyoplasts prepared from cells at G0/G1 or G2/M stages of cell cycle could also increase considerably the total efficiency of somatic cloning technique in pigs and in other mammal species.

Suggested Citation

  • M. Samiec & M. Skrzyszowska, 2005. "Microsurgical nuclear transfer by intraooplasmic karyoplast injection as an alternative embryo reconstruction method in somatic cloning of pigs and other mammal species; application value of the metho," Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 50(6), pages 235-242.
  • Handle: RePEc:caa:jnlcjs:v:50:y:2005:i:6:id:4163-cjas
    DOI: 10.17221/4163-CJAS
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    References listed on IDEAS

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    1. K. J. McCreath & J. Howcroft & K. H. S. Campbell & A. Colman & A. E. Schnieke & A.J. Kind, 2000. "Production of gene-targeted sheep by nuclear transfer from cultured somatic cells," Nature, Nature, vol. 405(6790), pages 1066-1069, June.
    2. T. Wakayama & A. C. F. Perry & M. Zuccotti & K. R. Johnson & R. Yanagimachi, 1998. "Full-term development of mice from enucleated oocytes injected with cumulus cell nuclei," Nature, Nature, vol. 394(6691), pages 369-374, July.
    3. I. Wilmut & A. E. Schnieke & J. McWhir & A. J. Kind & K. H. S. Campbell, 1997. "Viable offspring derived from fetal and adult mammalian cells," Nature, Nature, vol. 385(6619), pages 810-813, February.
    4. K. J. McCreath & J. Howcroft & K. H. S. Campbell & A. Colman & A. E. Schnieke & A. J. Kind, 2000. "Erratum: Production of gene-targeted sheep by nuclear transfer from cultured somatic cells," Nature, Nature, vol. 408(6808), pages 120-120, November.
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