Literature DB >> 11900639

Regenerated bovine fetal fibroblasts support high blastocyst development following nuclear transfer.

L Liu1, T Shin, J H Pryor, D Kraemer, M Westhusin.   

Abstract

Regenerated bovine fetal fibroblast cells were derived from a fetus cloned from an adult cow and passaged every 2-3 days. Serum starvation was performed by culturing cells in DMEM/F-12 supplemented with 0.5% FCS for 1-3 days. In vitro matured bovine oocytes were enucleated by removing the first polar body and a small portion of cytoplasm containing the metaphase II spindle. Cloned embryos were constructed by electrofusion of fetal fibroblast cells with enucleated bovine oocytes, electrically activated followed by 5 h culture in 10 microg/mL cycloheximide + 5 microg/mL cytochalasin B, and then cultured in a B2 + vero-cell co-culture system. A significantly higher proportion of fused embryos developed to blastocysts by day 7 when nuclei were exposed to oocyte cytoplasm prior to activation for 120 min (41.2%) compared to 0-30 min (28.2%, p < 0.01). Grade 1 blastocyst rates were 85.1% and 73.3%, respectively. The mean number of nuclei per grade 1 blastocyst was significantly greater for 120 min exposure (110.63 +/- 7.19) compared to 0-30 min exposure (98.67 +/- 7.94, p < 0.05). No significant differences were observed in both blastocyst development (37.4% and 30.6%) and mean number of nuclei per blastocyst (103.59 +/- 6.6 and 107.00 +/- 7.12) when serum starved or nonstarved donor cells were used for nuclear transfer (p > 0.05). Respectively, 38.7%, 29.4%, and 19.9% of the embryos reconstructed using donor cells at passage 5-10, 11-20 and 21-36 developed to the blastocyst stage. Of total blastocysts, the percentage judged to be grade 1 were 80.9%, 79.2%, and 54.1%, and mean number of nuclei per grade 1 blastocysts, were 113.18 +/- 9.06, 100.04 +/- 6.64, and 89.25 +/- 6.19, respectively. The proportion of blastocyst percentage of grade 1 blastocysts, and mean number of nuclei per grade 1 blastocyst decreased with increasing passage number of donor cells (p < 0.05). These data suggest that regenerated fetal fibroblast cells support high blastocyst development and embryo quality following nuclear transfer. Remodeling and reprogramming of the regenerated fetal fibroblast nuclei may be facilitated by the prolonged exposure of the nuclei to the enucleated oocyte cytoplasm prior to activation. Serum starvation of regenerated fetal cells is not beneficial for embryo development to blastocyst stage. Regenerated fetal fibroblast cells can be maintained up to at least passage 36 and still support development of nuclear transfer embryos to the blastocyst stage.

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Year:  2001        PMID: 11900639     DOI: 10.1089/15204550152475554

Source DB:  PubMed          Journal:  Cloning        ISSN: 1520-4553


  5 in total

1.  Examination of DNA methyltransferase expression in cloned embryos reveals an essential role for Dnmt1 in bovine development.

Authors:  Michael C Golding; Gayle L Williamson; Todd K Stroud; Mark E Westhusin; Charles R Long
Journal:  Mol Reprod Dev       Date:  2011-04-08       Impact factor: 2.609

2.  Transcriptional reprogramming of gene expression in bovine somatic cell chromatin transfer embryos.

Authors:  Nelida Rodriguez-Osorio; Zhongde Wang; Poothappillai Kasinathan; Grier P Page; James M Robl; Erdogan Memili
Journal:  BMC Genomics       Date:  2009-04-24       Impact factor: 3.969

3.  In Vitro and In Vivo Development of Horse Cloned Embryos Generated with iPSCs, Mesenchymal Stromal Cells and Fetal or Adult Fibroblasts as Nuclear Donors.

Authors:  Ramiro Olivera; Lucia Natalia Moro; Roberto Jordan; Carlos Luzzani; Santiago Miriuka; Martin Radrizzani; F Xavier Donadeu; Gabriel Vichera
Journal:  PLoS One       Date:  2016-10-12       Impact factor: 3.240

Review 4.  Cloning animals by somatic cell nuclear transfer--biological factors.

Authors:  X Cindy Tian; Chikara Kubota; Brian Enright; Xiangzhong Yang
Journal:  Reprod Biol Endocrinol       Date:  2003-11-13       Impact factor: 5.211

5.  RNA-Seq Profiling of Intact and Enucleated Oocyte SCNT Embryos Reveals the Role of Pig Oocyte Nucleus in Somatic Reprogramming.

Authors:  Lin Bai; Mengqi Li; Junli Sun; Xiaogan Yang; Yangqing Lu; Shengsheng Lu; Kehuan Lu
Journal:  PLoS One       Date:  2016-04-12       Impact factor: 3.240

  5 in total

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