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Developmental potential of bovine hand-made clone embryos reconstructed by aggregation or fusion with distinct cytoplasmic volumes. | LitMetric

AI Article Synopsis

  • Animal cloning can lead to developmental issues, particularly due to a condition called heteroplasmy, which affects the success of cloned embryos.
  • The study aimed to explore how different combinations of hemicytoplasts and hemiembryos, with varying cytoplasmic volumes, influence the development and cell density of embryos created through methods like handmade cloning and parthenogenesis.
  • Results showed that increasing the number of aggregated embryos improved overall embryo development and success rates, leading to viable clones, although aggregation didn't significantly enhance development for hemicytoplasts, except when aggregating two cloned embryos.

Article Abstract

Animal cloning has been associated with developmental abnormalities, with the level of heteroplasmy caused by the procedure being one of its potential limiting factors. The aim of this study was to determine the effect of the fusion of hemicytoplasts or aggregation of hemiembryos, varying the final cytoplasmic volume, on development and cell density of embryos produced by hand-made cloning (HMC), parthenogenesis or by in vitro fertilization (IVF). One or two enucleated hemicytoplasts were paired and fused with one skin somatic cell. Activated clone and zona-free parthenote embryos and hemiembryos were in vitro cultured in the well-of-the-well (WOW) system, being allocated to one of six experimental groups, on a per WOW basis: single clone or parthenote hemiembryos (1 x 50%); aggregation of two (2 x 50%), three (3 x 50%), or four (4 x 50%) clone or parthenote hemiembryos; single clone or parthenote embryos (1 x 100%); or aggregation of two clone or parthenote embryos (2 x 100%). Control zona-intact parthenote or IVF embryos were in vitro cultured in four-well dishes. Results indicated that the increase in the number of aggregated structures within each WOW was followed by a linear increase in cleavage, blastocyst rate, and cell density. The increase in cytoplasmic volume, either by fusion or by aggregation, had a positive effect on embryo development, supporting the establishment of pregnancies and the birth of a viable clone calf after transfer to recipients. However, embryo aggregation did not improve development on a hemicytoplast basis, except for the aggregation of two clone embryos.

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Source
http://dx.doi.org/10.1089/clo.2009.0022DOI Listing

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