• Title/Summary/Keyword: Nuclear transplanted mouse

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Ultrarapid Freezing of DNA-Injected and Nuclear-transplanted Mouse Embryos (외래유전자 주입 및 핵치환된 생쥐 수정란의 초급속 동결)

  • 강만종;한용만;이철상;김선정;유대열;신상태;이경광
    • Korean Journal of Animal Reproduction
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    • v.17 no.3
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    • pp.201-207
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    • 1993
  • We determined whether the ultrarapid freezing method is applicable to micromanipulated mouse embryos. One-cell mouse embryos were microinjected with MThGH gene. Nuclei from one-cell embryos of F1(C57BL$\times$CBA) mice were transplanted into enucleated one-cell embryos of ICR mice. The injected and nucleated embryos that developed to 2-cell stage were cryopreserved by ultrarapidfreezing. The embryos equilibrated in freezing medium(3 M DMSO+0.25 M sucrose+2% FBS in PBS) were directly immersed into liquid nitrogen and then thawed in 37$^{\circ}C$ water. Development rates of the microinjected and nuclear-transplanted embryos to blastocyst stage after ultrarapidly freezing and thawing were 31% and 55%, respectively. The frozen-thawed embryos were transferred to pseudopregnant recipient, which then gave birth to 17 offsprings. Twelve(14% of the transferred embryos) and five(20%) offsprings were derived from microinjected and nuclear-transplanted embryos, respectively. The results indicate that the DNA injected and nuclear-transplanted mouse embryos are cryopreservable at 2-cell stage by ultrarapid freezing method.

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Studies on cryopreservation of nuclear transplanted mouse embryos (마우스 핵이식란의 동결에 관한 연구)

  • Lee, Byeong-chun;Jo, Choong-ho;Hwang, Woo-suk
    • Korean Journal of Veterinary Research
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    • v.33 no.1
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    • pp.171-178
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    • 1993
  • The present study was carried out to investigate the developmental potency to blastocyst after freezing and thawing of nuclear transplanted 2-cell embryos. The nuclei from 2-, 4- and 8-cell mouse embryos were transferred into enucleated 2-cell embryos, and the reconstituted embryos were submitted to direct current(DC) pulse at output voltage of 2.0 kV/cm for $100{\mu}$ sec to induce cell fusion. The recovery rate and developmental potency to blastocyst after freezing and thawing of nuclear transplanted 2-cell embryos was investigated. 1. The recovery rate of nuclear transplanted 2-cell embryos in normal morphology after freezing and thawing was significantly higher in rapid freezing(DMSO 4.5M) than in slow cooling(p<0.01). 2. When the recovered embryos in normal morphology were cultured in vitro, there were no significant differences in the developmental potency to blastocyst between the freezing methods and the concentrations of cryoprotectant. In summary, these experiments have proved that rapid freezing method(DMSO 4.5M) is effective in nuclear transplanted 2-cell mouse embryos. If improved micromanipulation techniques and freezing are combined, nuclear transplantation technique will contribute to the improvement of productivity in livestock animals.

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Studies on Nuclear Transplantation in Mouse Embryos III. Production of Nuclear Transplanted Mice (생쥐배의 핵치환에 관한 연구 III. 핵치환 생쥐의 생산)

  • 박용석;정형민;박세필;이상진;정병현;정길생
    • Korean Journal of Animal Reproduction
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    • v.13 no.2
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    • pp.93-97
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    • 1989
  • These experiments were carried out to develop the technique of nuclear transplantation necessary for elevating utilization efficiency of high quality embryos and the production of clone animals. Embryos of pronucleus stages were obtained from ICR mice. Removal of pronuclei and their transfer to recipient embryos were carried out by micromanipulation and virus mediation. The results obtained in these experiments were summarized as follows ; 1. Total 337 pairs of pronuclear stage embryos were subjected to nuclear transplantatin and 247 pairs(73.3%) of them were successfully transplanted and the number of fused embryos between transplanted nucleus and cytoplasm was 188 pairs(55.8%). 2. Of the 188 fused embryos cultured in vitro, 174(92.4%), 131(69.7%) and 117(62.2%) embryos were developed to 2-cell, morula and blastocyst stages, respectively. 3. When total 104 nuclear transplanted embryos were transferred to uteri of recipient mice on day 2-3 of pseudopregnancy, 4 of 12 recipient mice were pregnant and the number of embryos developed to young was 28(26.9%).

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Studies on production of nuclear transplanted mouse embryos (핵이식 마우스 생산에 관한 연구)

  • Lee, Byeong-chun;Jo, Choong-ho;Hwang, Woo-suk
    • Korean Journal of Veterinary Research
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    • v.33 no.1
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    • pp.151-169
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    • 1993
  • The present study was carried out to investigate the best condition for nuclear-cytoplasm fusion and in vitro culture of nuclear transplanted embryos and to investigate the production of nuclear transplanted offsprings. The nuclei from 2-, 4- and 8-cell mouse embryos were transferred into enucleated 2-cell embryos, and the reconstituted embryos were submitted to direct current(DC) pulses at output voltage of 1.0, 1.5 and 2.0 kV/cm for 100, 150 and $200{\mu}$ sec to induce cell fusion. 1. The culture of intact or zona cut 2-cell embryos in the medium supplemented with cytochalasin B($5{\mu}g/m{\ell}$) and colcemide($0.1{\mu}g/m{\ell}$)for 30 and 60 minutes did not affect the development to later stage. 2. The in vitro developmental rates of group A(a nucleus from one of the blastomeres was removed) and B(electrofusion of group A) were significantly lower than that of control group(p<0.01). 3. When nuclear transplanted embryos were submitted to electrofusion, the significantly higher fusion rates of 2-cell donor nuclei were achieved at the electric field strength of DC 1.5kV/cm for 100 and $150{\mu}$ sec, DC 2.0 kV/cm for $100{\sim}200{\mu}$ sec than DC 1.0 kV/cm for 100 and $150{\mu}$ sec(p<0.01). The significantly higher fusion rates of 4-cell donor nuclei were achieved at DC 2.0 kV/cm for 100 and $150{\mu}$ sec than DC 1.0kV/cm for $100{\sim}200{\mu}$ sec(p<0.01). These fusion rates in 8-cell donor nuclei were 88.7~99.3%. 4. The developmental potency to blastocyst in 2- and 4-cell donor nuclei was significantly higher in DC 1.0 and 2.0 kV/cm for $100{\sim}200{\mu}$ sec treated group and DC 2.0 kV/cm for 150 and $200{\mu}$ sec treated group (p<0.01). The developmental potency to blastocyst in 8-cell donor nuclei was significantly higher in DC 2.0 kV/cm for $100{\mu}$ sec treated group than in DC 1.0 kV/cm for $100{\mu}$ sec treated group and DC 2.0 kV/cm for 150 and $200{\mu}$ sec treated group(p<001). 5. The developmental potency to blastocyst after nuclear transplantation was significantly higher in 2-cell donor nuclei than in 8-cell donor nuclei(p<0.01). 6. The success rate of nuclear injection into enucleated 2-cell embryos was significantly higher in 2-cell donor nuclei than in 4- or 8-cell donor nuclei(p<0.01). 7. The culture time taken for the nuclear transplanted 2-cell embryos to blastocyst stage was significantly longer in 2-cell donor nuclei than in 8-cell donor nuclei(p<0.01). 8. There was no significant difference in the developmental potency of nuclear transplanted embryos within the concentration of EGF at 0 to 15 ng per $m{\ell}$ of BMOC-3 solution. 9. The production rates of offspring after transfer of nuclear transplanted embryos to recipient mouse were significantly higher in 2-cell donor nuclei than in 8-cell donor nuclei(p<0.01).

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Study on In Vitro Development of Mouse Embryos (생쥐 수정란의 핵이식후 체외발달에 관한 연구)

  • 박희성;이효종;최상용;박충생
    • Korean Journal of Animal Reproduction
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    • v.14 no.3
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    • pp.205-211
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    • 1990
  • Single nuclei from two-, four- and eight-cell mouse embryos were transplanted into enucleated two-cell mouse embryos by micromanipulation and sendai virum mediated fusion. no significant difference in successful injectin rate and fusion rate was found between the cell stages of nuclear donor embryos. There nuclear transplant embryos receiving different cell stage nuclei were cultured in vitro for 96 hours. 75.3% of 255 embryos receiving 2-cell nuclei, 68.2% of 236 embryos reciving 4-cell nuceli and 46.9% of 228 embryos receiving 8-cell nuclei were developed to blastocyst, respectively. The number of blastomeres was significantly(P<0.05) reduced in the embryos receiving 8-cell nuclei, compared with the embryos receiving 2-cell, 4-cell nuclei or the intact embryos. Also the size of blastocysts was significantly(P<0.05) smaller in the embryos receiving 8-cell nuclei, compared with the intact or other nuclear transplant embryos. These results suggest that single nuclei introduced into the enucleated two-cell embryos are able to support the in vitro development of the reconstituted embryos to blastocysts. The prominant retardation of blastocoele formation and cell division was shown in nuclear transplant embryos receiving eight-cell nuclei when they were cultured in vitro.

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Production of cloned Mice by Nuclear Transplantation and Electrofusion Using 2- or 8-Cell Stage Mouse Embryo as Nuclear Donor (2- 및 8- 세포기 생쥐 수정란의 핵이식 및 전기융합법에 의한 복제산자의 생산)

  • 박준규;조성근;박희성;박충생
    • Journal of Embryo Transfer
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    • v.10 no.3
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    • pp.209-217
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    • 1995
  • The present study was carried out to develop a cloning technology of mouse embryos by nuclear transplantation with electrofusion and to produce cloned offsprings by transfer of reconstituted embryos. A single nucleus from two- and eight-cell embryos was transplanted into the enucleated two-cell embryos by rnicromanipulation. The fusion of nucleus with recipient cytoplasm and the subsequent development of reconstituted embryos in vitro as well as in vivo to term were examined to determine the optimal electrofusion parameters for nuclear transplantation in mouse embryos. The successful enucleation of donor embryos was 84.9 and 83.3% in two- and eight-cell stage, respectively, and the successful injection of nucleus from two- and eight-cell donor embryos into the perivitelline space of enucleated two-cell embryos were 85.1 and 84.7%, respectively. No significant differences were found in enucleation or injection rate between the cell stages of donor embryos. When the blastomeres of intact two-cell mouse embryos were electrofused in 0.3 M mannitol medium(100 $\mu$sec., 3 pulses), the fusion rate was similarly 93.2, 92.2 and 92.0% in 1.0, 1.5 and 2.0 kV /crn, respectively, but in vitro development to blastocyst of the fused two-cell embryos was significantly(P<0.05) lower in 2.0 kV/cm (63.4%) than in 1.0 kV/cm (91.7%) or 1.5 kV/cm (82.4%). The development in vitro to eight-cell stage of the reconstituted embryos with nucleus from two-cell stage(45.5%) was significantly(P<0.05) higher than that from eight-cell stage blastomeres (16.7%). The number of blastomeres of the intact embryos at blastocyst stage was 50i0.6 and 55$\pm$2.4 in in vitro and in vivo cultured mouse embryos, respectively, but significantly(P<0.05) decreased to 35$\pm$0.7 in nuclear transplanted blastocyst embryos. The conception rate of mice following embryo transfer was 32.1% in the reconstituted two-cell embryos using two-cell donor nuclei, which was comparable to the fresh two-cell embryos(40.6%). However, the rate of development in vivo to term following embryo transfer of the reconstituted two-cell embryos using two-cell donor nuclei (23.5%) was significantly(P<0.05) lower compared with the percentage of two-cell fresh embryos(31.5%).

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Studies on nuclear transplantation in mouse embryos II. Developmental potential of nuclei from embryos of different developmental stages (생쥐 수정란의 핵이식에 관한 연구 II. 발달단계별 수정란 핵의 이식후 생존성)

  • Park, Choong-saeng;Choe, Sang-yong;Lee, Hyo-jong;Park, Hee-sung
    • Korean Journal of Veterinary Research
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    • v.30 no.4
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    • pp.355-360
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    • 1990
  • Single nuclei from two-, four- and eight-cell mouse embryos were transplanted into enucleated two-cell embryos by micromanipulation and Sendai virus mediated fusion. The developmental potential of these reconstituted embryos in vitro and in vivo was examined. It was found that the single nuclei which were transplanted to enucleated two-cell embryos were not only able to develop to the blastocyst stage in vitro(two-cell nuclei, 76.5%; four-cell nuclei, 68.4%; eight-cell nuclei, 48.3%), but also able to develop to full term in vivo after transfer to recipient mice(two-cell nuclei, 37.1%; four-cell nuclei, 29.6%; eight-cell nuclei, 16.3%). Although the proportion of live young produced after transfer of nucler of nuclear transplant embryos which received eight-cell nuclei was significantly (p<0.05) reduced, it would be suggested that the overall efficiency in producing identical offspring is greater when eight-cell embryos were selected for nuclear donor than two- or four-cell embryos were selected.

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Synthesis and in vitro/vivo Evaluation of Iodine-123/124 Labelled Hypericin Derivatives

  • Kim, Sang-Wook;Park, Jeong-Hoon;Yang, Seung-Dae;Hur, Min-Goo;Choi, Chang-Woon;Yu, Kook-Hyun
    • Bulletin of the Korean Chemical Society
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    • v.29 no.10
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    • pp.2023-2025
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    • 2008
  • To evaluate the potential of radioiodine labelled hypericin as a malignant glioma imaging agent, U-251 MG, U-373 MG, C6 glioma and fibroblast were treated with a I-123 labelled hypericin derivative and C6 glioma transplanted nude mouse were injected with a I-124 labelled hypericin derivative for a micro PET imaging. 2- Iodohypericin was prepared as a reference compound. In this paper, we describe the syntheses of 2- iodohypericin and 2-[$^{123}I/^{124}I$]iodohypericin and the results of a corresponding biological evaluation. In all glioma cell lines, 2-[$^{123}I$]iodohypericin uptake was increased in a time dependant manner and an accumulation of 2-[$^{124}I$]iodohypericin was observed in C6 glioma bearing nude mouse. These results suggest that radioiodine labelled hypericin can visualize a PKC overexpressed malignant glioma.

Methylation Patterns of Imprinting Genes, H19, Igf2r, and Snrpn, in Mouse Embryonic Stem Cells and Nuclear Transferred Embryonic Stem Cells (생쥐의 수정란 배아줄기세포와 체세포핵이식 배아줄기세포에서 각인유전자, H19, Igf2r, Snrpn의 메틸화 경향)

  • Lee, Min-Ho;Ju, Jin-Young;Cho, Youl-Hee;Shim, Sung-Han
    • Development and Reproduction
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    • v.14 no.4
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    • pp.253-259
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    • 2010
  • DNA methylation is one of the major epigenetic regulations of gene expression. The DNA methylation patterns are dramatically changed during gametogenesis and embryogenesis, and especially, it has been known that embryonic stem cells show a distinct methylation pattern. In this study, we examined the methylation patterns of imprinting genes, H19, Igf2r, and Snrpn, in stem cells induced from fertilized embryo (fES) and somatic cell nuclear transferred embryo (ntES). The methylation pattern of H19 gene in both fES and ntES were similar. However, the methylation patterns of Igf2r and Snrpn in ntES (hypermethylated) were slightly different from fES cells.

Effects of Pre-conditioning dose on the Immune Kinetics and Cytokine Production in the Leukocytes Infiltrating GVHD Tissues after MHC-matched Transplantation

  • Choi, Jung-Hwa;Yoon, Hye-Won;Min, Chang-Ki;Choi, Eun-Young
    • IMMUNE NETWORK
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    • v.11 no.1
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    • pp.68-78
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    • 2011
  • Background: Graft-versus-host disease (GVHD) is a huddle for success of hematopoietic stem cell transplantation. In this study, effects of irradiation dose on immune kinetics of GVHD were investigated using B6 ${\rightarrow}$ BALB.B system, a mouse model for GVHD after MHC-matched allogeneic transplantation. Methods: BALB.B mice were transplanted with bone marrow and spleen cells from C57BL/6 mice after irradiation with different doses. Leukocytes residing in the peripheral blood and target organs were collected periodically from the GVHD hosts for analysis of chimerism formation and immune kinetics along the GVHD development via flow cytometry. Myeloid cells were tested for production of IL-17 via flow cytometry. Results: Pre-conditioning of BALB.B hosts with 900 cGy and 400 cGy resulted in different chimerism of leukocytes from the blood and affected survival of GVHD hosts. Profiles of leukocytes infiltrating GVHD target organs, rather than profiles of peripheral blood leukocytes (PBLs), were significantly influenced by irradiation dose. Proportions of IL-17 producing cells in the infiltrating $Gr-1^+$ or $Mac-1^+$ cells were higher in the GVHD hosts with high does irradiation than those with low dose irradiation. Conclusion: Pre-conditioning dose affected tissue infiltration of leukocytes and cytokine production by myeloid cells in the target organs.