• Title/Summary/Keyword: Bovine Fibroblast

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Gene Expressions in Bovine Nuclear Transferred Embryos with Mouse Fetal Fibroblast Cell

  • Park, Sang-Hyun;Park, Sang-Wook;Yun, Ji-Yung;Jun, Soon-Hong;Kim, Nam-Hyung
    • Proceedings of the KSAR Conference
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    • 2002.06a
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    • pp.11-11
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    • 2002
  • Interspecies nuclear transfer has been interested to determine ability of oocyte cytoplasm to support reprogramming of somatic cell nuclei of different species. In this study, we investigated developmental ability and mRNA expression patterns of developmentally important genes in bovine reconstructed embryos using a mouse fibroblast cell nucleus. While 20% nuclear transferred embryos with bovine fibroblast developed to morulae/blastocysts, a few(2-5%) nuclear transferred bovine embryos with mouse fibroblast developed to morula. (omitted)

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Production of Bovine Transgenic Embryos Derived from Non-transfected and Transfected Adult Cells (외부유전자가 도입된 체세포를 이용한 소 형질전환 복제란 생산)

  • J. K. Cho;M.M.U. Bhuiyan;G. Jang;Park, E. S.;J. M. Lim;S. K. Kang;Lee, B. C.;W. S. Hwang
    • Journal of Embryo Transfer
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    • v.17 no.2
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    • pp.109-115
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    • 2002
  • The present study was conducted for the production of transgenic cloned cows those secrete human lactoferricin into milk by somatic cell nuclear transfer (NT). To estimate detrimental effects of gene transfection on transgenic cloned embryo production, development rates of NT embryos were compared between transfected and non-transfected cumulus and ear fibroblast cells. An expression plasmid for human lactofericin (pbeta-LFC) was constructed by inserting a bovine beta-casein promoter, a green fluorescent protein (GFP) marker gene, and human lactoferricin target gene into a pcDNA3 plasmid. Two bovine somatic cell lines (cumulus cell and ear fibroblast) were established and transfected with the expression plasmid using a liposomal transfection reagent, Fugene6 as a carrier. Cumulus cell and ear fibroblast were transfected at the passage of 2 to 4, trypsinized and GFP-expressing cells were randomly selected and used for somatic cell NT. Developmental competences (rates of fusion, cleavage, and blastocyst formation) in bovine transgenic somatic cell NT embryos reconstructed with non-transfectecd cells were significantly higher than those from transfected cells in cumulus cell and ear fibroblast (P<0.05). This study indicated that transfection of done. cell has detrimental effect on embryo development in bovine transgenic NT.

Cell Cycle and Apoptosis of Bovine Fetal Fibroblast Cells following Different Activation Treatments

  • Bhak, Jong-Sik;Choe, Sang-yong
    • Proceedings of the KSAR Conference
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    • 2002.06a
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    • pp.37-37
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    • 2002
  • The success of embryo cloning depends on numerous factors; interaction between recipient ooplasm and donor nucleus, nuclear reprogramming, oocyte activation, and donor cell cycle and type. In this study, the cell cycle and apoptosis of bovine fetal fibroblast as a donor cell for embryo cloning were evaluated following different activation treatments. (omitted)

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Construction of fat1 Gene Expression Vector and Its Catalysis Efficiency in Bovine Fetal Fibroblast Cells

  • Liu, Boyang;Yang, Runjun;Li, Junya;Zhang, Lupei;Liu, Jing;Lu, Chunyan;Lian, Chuanjiang;Li, Zezhong;Zhang, Yong-Hong;Zhang, Liying;Zhao, Zhihui
    • Asian-Australasian Journal of Animal Sciences
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    • v.25 no.5
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    • pp.621-628
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    • 2012
  • The FAT-1 protein is an n-3 fatty acid desaturase, which can recognize a range of 18- and 20-carbon n-6 substrates and transform n-6 polyunsaturated fatty acids (PUFAs) into n-3 PUFAs while n-3 PUFAs have beneficial effect on human health. Fat1 gene is the coding sequence from Caenorhabditis elegans which might play an important role on lipometabolism. To reveal the function of fat1 gene in bovine fetal fibroblast cells and gain the best cell nuclear donor for transgenic bovines, the codon of fat1 sequence was optimized based on the codon usage frequency preference of bovine muscle protein, and directionally cloned into the eukaryotic expression vector pEF-GFP. After identifying by restrictive enzyme digests with AatII/XbaI and sequencing, the fusion plasmid pEF-GFP-fat1 was identified successfully. The pEF-GFP-fat1 vector was transfected into bovine fetal fibroblast cells mediated by Lipofectamine2000$^{TM}$. The positive bovine fetal fibroblast cells were selected by G418 and detected by RT-PCR. The results showed that a 1,234 bp transcription was amplified by reverse transcription PCR and the positive transgenic fat1 cell line was successfully established. Then the expression level of fat1 gene in positive cells was detected using quantitative PCR, and the catalysis efficiency was detected by gas chromatography. The results demonstrated that the catalysis efficiency of fat1 was significantly high, which can improve the total PUFAs rich in EPA, DHA and DPA. Construction and expression of pEF-GFP-fat1 vector should be helpful for further understanding the mechanism of regulation of fat1 in vitro. It could also be the first step in the production of fat1 transgenic cattle.

Bovine Nuclear Transfer using Ear Skin Fibroblast Cells Derived from Serum Starvation and Passage Numbers

  • Yang, Byoung-Chul;Im, Gi-Sun;Park, Jin-Ki;Kim, Hyun-Ju;Chang, Won-Kyung
    • Proceedings of the KSAR Conference
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    • 2001.03a
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    • pp.64-64
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    • 2001
  • To facilitate the widespread application of somatic cell cloning, improvements in blastocyst production efficiency and subsequent fetal viability are required. Area where technical improvements are needed include donor cell treatments, starvation and passage numbers. This study was carried out to investigate the effect of serum-starvation and passage on the development of ear skin fibroblast cells cloned embryos. A skin biopsy was obtained from the ear of a 2-year-old Korean Hanwoo female. The cells were cultured in 10% FBS+DMEM up to 2-3 months(up to 10 passages) and then used. In Experiment 1, the Korean bovine Ear Skin Fibroblast cells (KbESF) were either serum starved (culture in 0.05% FBS+DMEM) or serum fed (10% FBS+DMEM) for 4-7 days Prior to NT In Experiment 2, the KbESF cells used for nuclear transfer in these experiments were from passages 2 to 10. The development of 208 nuclear transfer (NT) embryos reconstructed from either serum starved or serum fed ear skin fibroblast was assessed. NT embryos reconstructed from serum starved and serum fed cells showed the same developmental rate (cleavage 80.16 vs. 85.37%; blastocyst 20.63 vs. 19,51%). The development of 590 nuclear transfer (NT) embryos reconstructed from passage 2 to 10 was assessed. We observed the same developmental rates for embryos derived from later Passages as compared with those embryos from early passages(blastocyst from 16.69 to 27.91%, average 20.17%). There was no significant difference between serum-fed and serum-starved donor cells. We observed no difference in developmental rates for embryos derived from 2 to 10 passages. These data show that prolonged culture and serum starvation does not affects the cloning competence of adult somatic cells.

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Establishment of bovine Fetal Fibroblasts Line for Production of Cloned Calves in Korean Native Cattle: The Effects of Culture Period and Various Cell Size on the Efficiency of Nuclear Transfer (복제 한우 생산을 위한 Bovine Fetal Fibroblasts의 이용에 관한 연구: 공여핵원의 배양기간 및 세포 크기가 핵이식의 효율에 미치는 영향)

  • 황우석;박종임;조종기;김기연;신수정;용환율;이병천
    • Journal of Embryo Transfer
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    • v.14 no.2
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    • pp.93-97
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    • 1999
  • The development potential of bovine somatic cells was evaluated using nuclear transfer. A single donor cell derived from fetus of HanWoo(Korean Native Cattle) was selected and deposited into perivitelline space of each enucleated oocyte before electrical fusion and activation. Nuclei of donor cells starved for 7 days (37%) tended to support the development of reconstitute embryo the blastocyst stage better than those of donor cells starved 3, 14 and 30 days. The cleavage rate was significantly lower(P<0.05) in reconstitute embryos derived from large size donor cells(51.2%), than those from small medium size donor cells(76.6 and 73.5, respectively). The developmental rate to blastocyst of reconstructed embryos from medium size donor cells was higher than those from small and medium size donor cells. This study demonstrates that an appropriate culture period for induction into quiescent stage and the size of donor cells effect on the efficiency of nuclear transfer using cultured bovine cells.

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Cloning, Expression, and Regulation of Bovine Cellular Retinoic Acid-binding Protein-II (CRABP-II) during Adipogenesis

  • Jeong, Young Hee;Lee, Sang Mi;Kim, Hye-Min;Park, Hyo Young;Yoon, Duhak;Moon, Seung Ju;Hosoda, Akemi;Kim, Dong-Ho;Saeki, Shigeru;Kang, Man-Jong
    • Asian-Australasian Journal of Animal Sciences
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    • v.21 no.11
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    • pp.1551-1558
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    • 2008
  • The mammalian cellular retinoic acid-binding proteins, CRABP-I and CRABP-II, bind retinoic acid which acts as an inducer of differentiation in several biological systems. To investigate a possible role for CRABP-II in bovine adipogenesis, we have cloned bovine CRABP-II cDNA and the coding region for CRABP-I. The predicted amino acid sequences of CRABP-II were highly conserved among several animal species (human, mouse, and rat at 97%, 93%, and 93%, respectively). The expression pattern of bovine CRABP-II was examined in greater details by applying RT-PCR to various bovine tissues. CRABP-II mRNA was expressed in most adipose-containing tissues. Moreover, the expression of CRABP-I and -II mRNA dramatically increased during the differentiation of adipocytes from bovine intramuscular fibroblast-like cells. The effects of retinoic acid on adipocyte differentiation of bovine intramuscular fibroblast-like cells were concentration-dependent. Retinoic acid activated the formation of lipid droplets at a level of 1 nM, whereas inhibition was observed at a level of $1{\mu}M$. CRABP-I gene was up-regulated and CRABP-II gene down-regulated by retinoic acid during adipocyte differentiation. These results suggest that CRABPs may play an important role in the regulation of intracellular retinoic acid concentrations during adipogenesis.

Effect of Serum Media on Fibroblast Proliferation and Collagen Synthesis (배양 혈청이 섬유아세포의 증식 및 교원질합성에 미치는 영향)

  • Lee, Min Ah;Seo, Sung Ig;Han, Seung Kyu;Kim, Woo Kyung
    • Archives of Plastic Surgery
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    • v.32 no.4
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    • pp.529-532
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    • 2005
  • Expanding cells ex-vivo is very important in tissue-engineering. Culture medium is usually supplemented with fetal bovine serum(FBS) in most of the experiments. However, cells grown in bovine serum media may posses the possibilities of disseminating bovine diseases and/or stimulating the patient's immune reactions. To overcome these problems, autologous or homologous serum should be used instead of the FBS. The purpose of this study is to compare cell proliferation and collagen synthesis depending on the kind of sera mixed on media and to provide a guideline on applying established experimental data to clinical cases. Human dermal fibroblasts were obtained from four patients. Five thousand cells per well in 96-well plates were incubated DMEM/F-12 Nutrient with varying serum mixture; 10% autologous serum, 10% homologous serum, and 10% FBS. Five days after incubation fibroblast proliferation and collagen production were determined by MTT assay and CICP enzyme immunoassay. The mean cell number were; $3.95{\times}10^4/well$, $2.97{\times}10^4/well$ and $2.30{\times}10^4/well$, respectively. The average amounts of collagen synthesized were; 238.13 ng/ml, 204.88 ng/ml, and 163.88 ng/ml in each. These results show that the use of human serum mixture may contribute to, not only preventing disseminated infection of bovine diseases. but also increase cell proliferation and collagen synthesis without simulating the patient's immune reactions.

Developmental Potential of Interspecies Nuclear Transferred Embryos using Mouse Embryonic Fibroblast In Vitro

  • B.S.Koo;Yoon, J.I.;Son, H.Y.;Kim, M.G.;Park, C.H.;Lee, S.G.;Lee, Y.I.;Lee, C.K.
    • Proceedings of the Korean Society of Developmental Biology Conference
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    • 2003.10a
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    • pp.109-109
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    • 2003
  • Even though success in birth of live offspring from nuclear transfer(NT) using somatic cells in many species, detailed information on processes or mechanisms of development are not well known. Cytoplasm of bovine oocyte has been known to support the development of nuclear transferred embryos using nuclear donor cells from different species. Therefore, interspecies NT might be used to find answers of some questions in basic aspect of nuclear transfer In this study, we examined the developmental potential of reconstructed embryos when bovine oocyte as a cytoplasm recipient and mouse embryonic fibroblast as a nuclear donor were used. The nuclear transfer units were aliocated in Group 1 (murine block media and normal media) and Group 2. (bovine block media and normal media). NT units were not blocked at 2-cell stage regardless of types of medium. On mouse media, poor development of interspecies NT units was observed compared to bovine media. However, as NT units cultured in bovine normal medium, embryos developed over 8-cell stage. Further studies performed to increase the developmental rate in condition of antioxidant treatment. Despite low development, bovine-murine interspecies nuclear transferred embryos could develop to blastocysts and they showed that blastocyts rate of antioxidant group was superior to those of non-antioxidant group. Next, we investigated gene expression pattern which is carried out for zygotic activation. The Xist gene is expressed in female mouse embryo after zygotic activation of 4-cell stage. But interspecies nuclear transferred embryos do not express Xist gene at 4-cell stage. As a result, it is suggested that the bovine cytoplasm controls the early preimplantation development in interspecies NT However, the development of later stages might require genomic control from transferred donor nucleus. Therefore, even though the involvement of several other factors such as mitochondrial incompatibility, effective development of embryos produced by interspecies NT requires proper genomic activation of donor nucleus after overcoming the cytoplasmic control of recipient oocytes.

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