• 제목/요약/키워드: Transgenic animal

검색결과 533건 처리시간 0.027초

Effect of a short-term in vitro exposure time on the production of in vitro produced piglets

  • Hwang, In-Sul;Kwon, Dae-Jin;Kwak, Tae-Uk;Lee, Joo-Young;Hyung, Nam-Woong;Yang, Hyeon;Oh, Keon Bong;Ock, Sun-A;Park, Eung-Woo;Im, Gi-Sun;Hwang, Seongsoo
    • 한국수정란이식학회지
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    • 제31권2호
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    • pp.117-121
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    • 2016
  • Although piglets have been delivered by embryo transfer (ET) with in vitro produced (IVP) embryos and blastocysts, a success rate has still remained lower level. Unlike mouse, human, and bovine, it is difficult to a production of piglets by in vitro fertilization (IVF) because of an inappropriate in vitro culture (IVC) system in pig. Therefore, the present study was conducted to investigate whether minimized exposure time in IVC can improve the pregnancy and delivery rates of piglets. Immediately after IVM, the oocytes were denuded and co-incubated with freshly ejaculated boar semen for 3.5 to 4 hours at $38.5^{\circ}C$ under 5% $CO_2$ in air. To avoid long-term exposure to in vitro state, we emitted IVC step after IVF. After that the presumptive zygotes were transferred into both oviducts of the surrogate on the same day or 1 day after the onset of estrus. Pregnancy was diagnosed on day 28 after ET and then was checked regularly every month by ultrasound examination. The 3 out of 4 surrogates were determined as pregnant (75%) and a total of 5 piglets (2 females and 3 males) were delivered at $118.3{\pm}2.5$ days of pregnancy period. In conclusion, a short-term exposure time may be an important factor in the production of IVP-derived piglets. It can be apply to the in vitro production system of transgenic pig by IVF, cloning, and pronuclear microinjection methods.

Industrial Applications of Rumen Microbes - Review -

  • Cheng, K.J.;Lee, S.S.;Bae, H.D.;Ha, J.K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제12권1호
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    • pp.84-92
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    • 1999
  • The rumen microbial ecosystem is coming to be recognized as a rich alternative source of genes for industrially useful enzymes. Recent advances in biotechnology are enabling development of novel strategies for effective delivery and enhancement of these gene products. One particularly promising avenue for industrial application of rumen enzymes is as feed supplements for nonruminant and ruminant animal diets. Increasing competition in the livestock industry has forced producers to cut costs by adopting new technologies aimed at increasing production efficiency. Cellulases, xylanases, ${\beta}$-glucanases, pectinases, and phytases have been shown to increase the efficiency of feedstuff utilization (e.g., degradation of cellulose, xylan and ${\beta}$-glucan) and to decrease pollutants (e.g., phytic acid). These enzymes enhance the availability of feed components to the animal and eliminate some of their naturally occurring antinutritional effects. In the past, the cost and inconvenience of enzyme production and delivery has hampered widespread application of this promising technology. Over the last decade, however, advances in recombinant DNA technology have significantly improved microbial production systems. Novel strategies for delivery and enhancement of genes and gene products from the rumen include expression of seed proteins, oleosin proteins in canola and transgenic animals secreting digestive enzymes from the pancreas. Thus, the biotechnological framework is in place to achieve substantial improvements in animal production through enzyme supplementation. On the other hand, the rumen ecosystem provides ongoing enrichment and natural selection of microbes adapted to specific conditions, and represents a virtually untapped resource of novel products such as enzymes, detoxificants and antibiotics.

The Investigation of Cell Culture Conditions to Maintain Chicken Embryonic Stem Cells as Totipotent Cells

  • Du, Lixin;An, Jing
    • Asian-Australasian Journal of Animal Sciences
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    • 제16권8호
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    • pp.1102-1107
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    • 2003
  • The ES cell can provide a useful system for studying differentiation and development in vitro and a powerful tool for producing transgenic animalds. To investigate the culture condition of chicken embryonic stem (CES) cells which can retain their multipotentiality or totipotency, three kinds of feeder layer cells, SNL cells, primary mice embryonic fibroblasts (PMEF) cells and primary chicken embryonic fibroblasts (PCEF) cells, were used as the feeder cells in media of DMEM supplemented with leukemia inhibitory factor (LIF), basic fibroblast growth factor (bFGF) and stem cell factor (SCF) for co-culture with blastoderm cells from stage X embryos of chicken. The alkaline phosphatase (AKP) test, differentiation experiment in vitro and chimeric chicken production were carried out. The results showed that culture on feeder layer of PMEF yielded high quality CES cell colonies. The typical CES cells clone shape revealed as follows: nested aggregation (clone) with clear edge and round surface as well as close arrangement within the clone. Strong alkaline phosphatase (AKP) reactive cells were observed in the fourth passage cells. On the other hand, the fourth passage CES cells could differentiate into various cells in the absence of feeder layer cells and LIF in vitro. The third and fourth passage cells were injected into the subgerminal cavity of recipient embryos at stage X. Of 269 Hailan embryos injected with CES cells of Shouguang Chickens, 8.2% (22/269) survived to hatching, 5 feather chimeras had been produced. This suggests that an effective culture system established in this study can promote the growth of CES cells and maintain them in the state of undifferentiated and development, which lays a solid foundation for the application of CES cells and may provide an alternative tool for genetic modification of chickens.

Study for the Production of Immunodeficiency Animal for Xenotransplantation

  • D. I. Jin;Lee, S. H;J. H. An;Y. G. Ko;Kim, H. J.;Lee, S. H.;Park, C. S.
    • 한국가축번식학회지
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    • 제26권4호
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    • pp.347-351
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    • 2002
  • Transgenes in HSY-TK gene driven by the lck promoter was tested for the expression in immune cells (Jurkat cells) to apply xenotransplantation of human cells into transgenic animals for the potential use of the proliferation or differentiation of human stem cells in the large animal such as an pig. Also, lck-CFP gene was used for transfection experiment into Jurkat cell to confirm the proper regulation of lck promoter for transgene expression in the T cells. Transfection of lck-GFP gene into Jurkat ceils induced CFP expression in transfected cells. The expression of Ick-TK and Ick-CFP genes was confirmed by RT-PCR using RNAs extracted from Jurkat cells, When Jurkat cells transfected with TK and CFP genes were selected against G418 or gancyclovir treatments, Jurkat cells transfected with TK gene were not proliferated in G4i8 and gancyclovir medium while intact cells or cells transfected with CFP gene could grow in gancyclovir medium. However, Jurkat cells transfected with TK or GFP gene were proliferated in G418 medium probably due to Neo$^{r}$ gene in the vector. Gancyclovir treatment destroyed Jurkat cells expressing TK gene indicating that T-cells expressing TK gene can be selectively eliminated by TK gene expression driven by lck promoter.

Human lactoferrin efficiently targeted into caprine beta-lactoglobulin locus with transcription activator-like effector nucleases

  • Yuan, Yu-Guo;Song, Shao-Zheng;Zhu, Meng-Ming;He, Zheng-Yi;Lu, Rui;Zhang, Ting;Mi, Fei;Wang, Jin-Yu;Cheng, Yong
    • Asian-Australasian Journal of Animal Sciences
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    • 제30권8호
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    • pp.1175-1182
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    • 2017
  • Objective: To create genetically modified goat as a biopharming source of recombinant human lacotoferrin (hLF) with transcription activator-like effector nucleases. Methods: TALENs and targeting vector were transferred into cultured fibroblasts to insert hLF cDNA in the goat beta-lactoglobulin (BLG) locus with homology-directed repair. The gene targeted efficiency was checked using sequencing and TE7I assay. The bi-allelic gene targeted colonies were isolated and confirmed with polymerase chain reaction, and used as donor cells for somatic cell nuclear transfer (SCNT). Results: The targeted efficiency for BLG gene was approximately 10%. Among 12 Bi-allelic gene targeted colonies, five were used in first round SCNT and 4 recipients (23%) were confirmed pregnant at 30 d. In second round SCNT, 7 (53%), 4 (31%), and 3 (23%) recipients were confirmed to be pregnant by ultrasound on 30 d, 60 d, and 90 d. Conclusion: This finding signifies the combined use of TALENs and SCNT can generate biallelic knock-in fibroblasts that can be cloned in a fetus. Therefore, it might lay the foundation for transgenic hLF goat generation and possible use of their mammary gland as a bioreactor for large-scale production of recombinant hLF.

돼지 혈관내피세포 특이적 CD73 발현 벡터가 도입된 돼지 섬유아세포 생산 (Production of porcine fibroblasts carrying a vector enforced specific expression of CD73 to endothelial cells)

  • 오건봉;이해선;황성수;옥선아;정학재;변승준;이풍연;임기순
    • 한국수정란이식학회지
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    • 제31권3호
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    • pp.161-168
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    • 2016
  • Nucleotide metabolism in endothelium is variable between different species. Recent studies demonstrated that this variability could contribute coagulation dysfunction, even though organs of the alpha 1,3-galactosyltransferase gene knockout pig were transplanted into the primate. CD73 (ecto-5'-nucelotidase) is an enzyme at cell surface catalyzing the hydrolysis of adenosine triphosphate to adenosine, which plays role on a substance for anti-inflammatory and anti-coagulant. Thus, overexpression of CD73 in endothelial cells of the pig is considered as an approach to reduce coagulopathy. In this study, we constructed a human CD73 expression vector under control of porcine Icam2 promoter (pIcam2-hCD73), which is expressed specifically at endothelial cells, and of CMV promoter as a control (CMV-CD73). First, we transfected the CMV-CD73 vector into HEK293 cells, and then confirmed CD73 expression at cell surface by flow cytometry analysis. Next, we transfected the pIcma2-CD73 and CMV-CD73 vectors into primary porcine fibroblasts and endothelial cells. Consequence was that the pIcma2-CD73 vector was expressed only at the porcine endothelial cells, meaning that the pIcam2 promoter lead to endothelial cell-specific expression of CD73 in vitro. Finally, we nucleofected the pIcam2-hCD73 vector into passage 3 fibroblasts, and enforced hygromycin selection of 400mg/ml. We were able to obtain forty three colonies harboring pIcam2-CD73 to provide donor cells for transgenic cloned porcine production.

체세포배발생에 의한 IbOr 유전자 형질전환 카사바 개발 (Development of transgenic cassava plants expressing IbOr gene by somatic embryogenesis)

  • 김선하;김명덕;박성철;정재철;이행순;곽상수
    • Journal of Plant Biotechnology
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    • 제42권2호
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    • pp.88-92
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    • 2015
  • 카사바는 열대와 아열대지역 뿌리작물로서 중요한 식량자원일 뿐만 아니라 동물 사료, 전분, 바이오에탄올 등 다양한 산업소재로서 이용이 가능하다. 그러나 카사바의 산업적 중요성에 비해 형질전환기술을 이용한 신품종 개발은 아직까지 제한적이다. 본 연구에서는 인도네시아 IDB사가 개발한 다수확 카사바 품종을 이용하여 영양강화 및 환경스트레스에 저항성을 향상시킨 카사바를 개발하기 위하여 체세포배를 이용한 식물체 재분화시스템을 확립하였다. 카로티노이드 축적에 관련된 IbOr 유전자를 체세포배를 이용한 Agrobacterium 매개방법으로 카사바에 형질전환하였다. gDNA PCR과 RT-PCR을 통해 19개의 형질전환식물체를 성공적으로 확보하였다. 향후 카로티노이드 함량분석, 환경스트레스 내성분석 등을 통하여 IbOr 카사바 식물체의 농업적 유용성을 검정할 예정이다.

재조합 hTPO를 생산하는 형질전환 닭의 개발 (Generation of Transgenic Chickens that Produce Bioactive Human Thrombopoietin)

  • 권모선;구본철;노지열;이현아;김태완
    • Reproductive and Developmental Biology
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    • 제32권3호
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    • pp.159-166
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    • 2008
  • 본 연구는 vesicular stomatitis virus G glycoprotein (VSV-G)으로 피막이 형성되는 replication-defective MoMLV-based vector를 이용한 hTPO 헝질전환 닭의 생산에 관한 연구이다. 실험에 사용한 retrovirus vector의 구조는 hTPO 유전자의 발현 조절을 위해 internal promoter인 hCMV promoter를 이용하였으며 외래 유전자의 발현을 증가시키기 위해 woodchurk hepatitis virus posttranascriptional regulatory element (WPRE) 서열을 도입하였다. 재조합한 vector는 GP2 293 포장세포에 도입하여 virus를 생산하였으며 이 virus를 이용하여 감염시킨 여러 표적세포에서 hTPO의 발현과 생물학적 활성을 확인하였다. 재조합 hTPO의 생물학적 활성은 시판되고 있는 재조합 hTPO에 비해 우월한 것으로 확인되었다. hTPO 형질전환 닭의 생산을 위하여 1,000배 이상 고농도로 농축된 virus를 stage X 단계의 계란의 배반엽 층에 미세주입하여 대리난각 방법으로 배양하였다. 미세주입한 132개의 계란 중 21일 후에 11개의 계란에서 병아리가 부화하였으며 그중 4마리가 형질전환 개체로 확인되었다. 그러나 생산된 4마리 중 3마리가 부화 후 1개월 이내에 원인불명으로 사망하였다. 본 연구의 의의는 상업적 이용 가능성이 있는 생물학적 활성을 가진 사람의 cytokine 단백질의 대량 생산을 위한 생체 반응기로서의 형질전환 닭 개발의 시례를 제공하는데 있다.

Characterization of the Nanog 5'-flanking Region in Bovine

  • Choi, Don-Ho;Kim, Duk-Jung;Song, Ki-Duk;Park, Hwan-Hee;Ko, Tae Hyun;Pyao, Yuliya;Chung, Ku-Min;Cha, Seok Ho;Sin, Young-Su;Kim, Nam-Hyung;Lee, Woon-Kyu
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권10호
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    • pp.1383-1391
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    • 2016
  • Bovine embryonic stem cells have potential for use in research, such as transgenic cattle generation and the study of developmental gene regulation. The Nanog may play a critical role in maintenance of the undifferentiated state of embryonic stem cells in the bovine, as in murine and human. Nevertheless, efforts to study the bovine Nanog for pluripotency-maintaining factors have been insufficient. In this study, in order to understand the mechanisms of transcriptional regulation of the bovine Nanog, the 5'-flanking region of the Nanog was isolated from ear cells of Hanwoo. Results of transient transfection using a luciferase reporter gene under the control of serially deleted 5'-flanking sequences revealed that the -134 to -19 region contained the positive regulatory sequences for the transcription of the bovine Nanog. Results from mutagenesis studies demonstrated that the Sp1-binding site that is located in the proximal promoter region plays an important role in transcriptional activity of the bovine Nanog promoter. The electrophoretic mobility shift assay with the Sp1 specific antibody confirmed the specific binding of Sp1 transcription factor to this site. In addition, significant inhibition of Nanog promoter activity by the Sp1 mutant was observed in murine embryonic stem cells. Furthermore, chromatin-immunoprecipitation assay with the Sp1 specific antibody confirmed the specific binding of Sp1 transcription factor to this site. These results suggest that Sp1 is an essential regulatory factor for bovine Nanog transcriptional activity.

Characterizations of Cell Lineage Markers in the Bone Marrow Cells of Recloned GFP Pigs for Possible Use of Stem Cell Population

  • Park, Kwang-Wook;Choi, Sung-Sik;Lee, Dong-Ho;Lee, Hwang;Choi, Seung-Kyu;Park, Chang-Sik;Lee, Sang-Ho
    • Reproductive and Developmental Biology
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    • 제35권1호
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    • pp.23-31
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    • 2011
  • Two piglets and one juvenile pig were used to investigate closely what types of cells express green fluorescent protein (GFP) and if any, whether the GFP-tagged cells could be used for stem cell transplantation research as a middle-sized animal model in bone marrow cells of recloned GFP pigs. Bone marrow cells were recovered from the tibia, and further analyzed with various cell lineage markers to determine which cell lineage is concurrently expressing visible GFP in each individual animal. In the three animals, visible GFP were observed only in proportions of the plated cells immediately after collection, showing 41, 2 and 91% of bone marrow cells in clones #1, 2 and 3, respectively. The intensity of the visible GFP expression was variable even in an individual clone depending on cell sizes and types. The overall intensities of GFP expression were also different among the individual clones from very weak, weak to strong. Upon culture for 14 days in vitro (14DIV), some cell types showed intensive GFP expression throughout the cells; in particular, in cytoskeletons and the nucleus, on the other hand. Others are shown to be diffused GFP expression patterns only in the cytoplasm. Finally, characterization of stem cell lineage markers was carried out only in the clone #3 who showed intensive GFP expression. SSEA-1, SSEA-3, CD34, nestin and GFAP were expressed in proportions of the GFP expressing cells, but not all of them, suggesting that GFP expression occur in various cell lineages. These results indicate that targeted insertion of GFP gene should be pursued as in mouse approach to be useful for stem cell research. Furthermore, cell- or tissue-specific promoter should also be used if GFP pig is going to be meaningful for a model for stem cell transplantation.