不同细胞质体积聚集或融合重建的牛手工克隆胚胎的发育潜力。

Eduardo de Souza Ribeiro, Renato Pereira da Costa Gerger, Lain Uriel Ohlweiler, Ivens Ortigari, Joana Cláudia Mezzalira, Fabiana Forell, Luciana Relly Bertolini, José Luiz Rodrigues, Carlos Eduardo Ambrósio, Maria Angélica Miglino, Alceu Mezzalira, Marcelo Bertolini
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引用次数: 49

摘要

动物克隆与发育异常有关,由该过程引起的异质性水平是其潜在的限制因素之一。本研究的目的是确定半细胞质体融合或半胚胎聚集对手工克隆(HMC)、孤雌生殖或体外受精(IVF)产生的胚胎发育和细胞密度的影响,从而改变最终的细胞质体积。一个或两个去核的半细胞质体配对并与一个皮肤体细胞融合。激活的克隆和无带孤雌胚和半胚在井中(WOW)系统中体外培养,按WOW标准分为6个实验组:单克隆或孤雌半胚(1 × 50%);两个(2 × 50%),三个(3 × 50%)或四个(4 × 50%)克隆或孤雌半胚胎的聚集;单克隆或孤雌胚胎(1 × 100%);或两个无性或孤雌胚胎的聚集(2 × 100%)。对照带完整孤雌体或体外受精胚胎在四孔培养皿中体外培养。结果表明,随着每个WOW内聚集结构数量的增加,卵裂率、囊胚率和细胞密度呈线性增加。细胞质体积的增加,无论是通过融合还是通过聚集,对胚胎发育有积极的影响,支持妊娠的建立和移植给受体后可存活的克隆小牛的出生。然而,除了两个克隆胚胎的聚集外,胚胎聚集并没有在半细胞质体的基础上促进发育。
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Developmental potential of bovine hand-made clone embryos reconstructed by aggregation or fusion with distinct cytoplasmic volumes.

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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