• 제목/요약/키워드: electrofusion

검색결과 78건 처리시간 0.027초

토끼 핵이식 수정란의 체외 발달에 미치는 공핵란 세포주기의 효과 (Effect of Cell Cycle of Donor Nucleus on In Vitro Development in Nuclear Transplant Rabbit Embryos)

  • 박충생;전병균;윤희준;이효종;최상용
    • 한국가축번식학회지
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    • 제20권2호
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    • pp.143-153
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    • 1996
  • To improve the efficiency of nuclear transplantation in the rabbit, this study were evaluated the influence of celly cycle of donor nuclei on the in vitro developmental potential in the nuclear transplant embryos. The embryos of 16-cell stage were collected from the mated does at 48h post-hCG injection and they were synchronized to G1 phase of 32-cell stage. Synchronization of the cell cylce of blastomeres were induced, first, using an microtubules polymerization inhibitor, 0.5$\mu\textrm{g}$/ml colcemid for 10h to arrest blastomeres in metaphase, and secondly, using a DNA synthesis inhibitor, 0.1$\mu\textrm{g}$/ml aphidicolin for 1.5 to 2h to cleave to 32-cell stage and arrest them in G1 phase. The separated G1 phase blastomeres of 32-cell stage were injectied into enucleated recipient cytoplasms by micromanipulation. After culture until 20h post-hCG injection, the nuclear transplant oocytes were electrofused and activated by electrical stimulation. The nuclear transplant embryos were co-cultured for 120h. In vitro cultured embryos were monitored every 24h to assess for development rate. After in vitro cultue for 120h, the nuclear transplant embryos developed to blastocyst stage were stained with Hoechst 33342 dye for counting the number of blastomeres under a fluorescence microscopy. The cleavage rate of blastomeres from 16-cell stage stage rabbit embryos treated with colcemid for 10h or aphidicolin for 6h following colcemid for 10h were not significantly different. The electrofusion rate was similar by high in S and G1 phase donor nuclei as 80.6 and 79.1%, respectively. However, the nuclear transplant embryos using G1 phase donor nuclei were developed to blastocyst at high rate(60.3%) than those using S phase donor nuclei(26.0%). Moreover, the mean blastocyst stage were increased significantly(P<0.05) with the G1 phase donor nuclei(176.6 cells and 1.50 cycles), as compared with the S phase donor nuclei(136.6 cells and 1.42 cycles). These results show that the blastomeres of G1 phase were more successful as donor nuclei in the nuclear transplant procedure, compared with S phase.

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Production of Cloned Calves by the Transfer of Somatic Cells Derived from Frozen Tissues Using Simple Portable $CO_2$ Incubator

  • Dong, Y.J.;Bai, X.J.;Varisanga, M.D.;Mtango, N.R.;Otoi, T.;Rajamahendran, R.;Suzuki, T.
    • Asian-Australasian Journal of Animal Sciences
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    • 제17권2호
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    • pp.168-173
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    • 2004
  • The ability of frozen-thawed fetal skin was examined to generate viable cell lines for nuclear transfer. Fetal skin frozen at -20$-20^{\circ}C$, $-30^{\circ}C$ or $-80^{\circ}C$ in the presence of 5% DMSO used as tissue explants to generate somatic cells. The resultant confluent cells were then used as donors for nuclear transfer (NT). Of the bovine NT embryos reconstracted from the somatic cells, 62.3%, 76.6% to 65% showed cleavage 70.5%, 81.9% to 78.5% reached the stage of morula formation and 39.7%, 43.2% or 47.6% reached the blastocyst stage. There was no significant difference in development when the NT embryos were compared with those reconstracted from fresh somatic cell derieved skin tissues (72%, 75.3%, and 45.2%, for cleavage, and development to morula and blastocyst stage, respectively). NT embryos were then placed in a portable $CO_2$ incubator and carried to China from Japan by air. After reaching to farm, two NT embryos were transferred to each of 5 recipients. We obtained 2 NT calves which birth weights is 30kg and 36kg female, and gestation periods is 281 and 284 days, respectively. There were no observation any abnormality from those calves. The results indicated that cell lines derieved from bovine fetal skin cryopreserved by a simple method could be used as donors in nuclear transfer using the portable $CO_2$ incubator.

핵이식을 이용한 복제송아지 생산에 관한 연구 II. 효율적인 복제수정란 생산을 위한 난자의 활성화, 공여핵의 세포주기조절 및 적정 배양조건 (Studies on the cloning of calves by nuclear transplantation II. Efficient embryo cloning under oocyte activation, cell cycle regulation of donor nuclei and optimal culture conditions)

  • 황우석;노상호;이병천
    • 대한수의학회지
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    • 제37권3호
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    • pp.639-645
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    • 1997
  • The objectives of the present study were improvements in the efficiency of developmental rates to morula and blastocyst stages to produce a large number of genetically identical nuclear transplanted embryos. The oocytes collected from slaughterhouse ovaries were matured 24h in TCM199+10% FBS and exposed to $39^{\circ}C$ or room temperature to allow cytoplasmic maturation and gain activation competence. Donor embryos were treated for 12h with $10{\mu}g/ml$ nocodazole or $0.05{\mu}g/ml$ demicolcine to synchronize the cell cycle stage at 26h after the onset of culture. The blastomeres and recipient oocytes were fused by electrofusion. The cloned embryos were then cultured in various conditions to allow further development. In the treatment of oocyte activation and cell cycle regulation of donor nuclei, the room temperature exposure and nocodazole treatment group had significant effect on the developmental rates to morula/blastocyst(21.7% vs 12.1~16.7%), but had no significant effect on the fusion rates between donor blastomeres and recipient oocytes. The developmental rates of bovine nuclear transplanted embryos appeared to be higher significantly in mTALP medium under 5% $O_2$ condition and in TCM199 with bovine oviduct epithelial cell under 20% $O_2$ condition(22.2%) than other groups. In embryo transfer of nuclear transplanted embryos, there were no significant differences in calving rates between the use of excellent and good grade donor embryos.

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소 체내포 핵이식에 의한 핵-세포질 상호작용에 관한 연구 (Study on Nucleo-Cytoplasmic Interaction by Somatic Cell Nuclear Transfer in Bovine)

  • 정희태;최종엽;박춘근;김정익;민동미
    • 한국수정란이식학회지
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    • 제15권1호
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    • pp.23-31
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    • 2000
  • This study was conducted to investigate the effects of quiescent treatment of donor cells and activation treatment time of recipient cytoplasm on nuclear remodeling and in vitro development of somatic cell-cloned bovine embryos. Serum starved, confluent and nonquiescent cycling adult skin cells were teansferred into enucleated oocytes. Nuclear transfer oocytes were activated at 30 min, 1 and 2 hrs after electrofusion. Some nuclear transfer embryos(23% to 35%) extruded a polar body, which was not affected by quiescent treatment of donor cells and activiation time of recipient cytoplasm. About 68% of nuclear transfer embryos fused with a serum starved cells has a chromatin clump, but which was not different from embryos fused with confluent(51%) and nonquiescent(47%) cells. The proportion of embryos with a single chromatin clump was sightly increased when nuclear transfer embryos were activated within 30 min after fusion(69%) compared to those were activated at 1 and 2 hrs after fusion, but there was not significantly different. Development rates to the blastocyst stage were 8.6% and 15.9% when serum starved and confluent cells were transferred, which were higher than that of control group. Developmental rate to the blastocyst stage was higher in embryos were activated within 30 min after fusion (17.3%) compared to those of embryos were activated at 1 and 2 hrs after fusion (P<0.05). From the present result, it is suggested that quiescent treatment of donor cells and activation time of recipient cytoplasm can affect the in vitro development. Quiescent plasm activation within 30 min after fusion could increase the number of embryos with a normal chromation structure, which results in increased in vitro development.

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수핵란의 전활성화가 토끼 핵이식 수정란의 체외발달에 미치는 효과 (Effect of Electrical Preactivation of Recipient Cytoplasm on In Vitro Development in Nuclear Transplant Rabbit Embryos)

  • 전병균;송상현;정기화;곽대오;이효종;최상용;박충생
    • 한국가축번식학회지
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    • 제21권3호
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    • pp.219-228
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    • 1997
  • To examine the efficiency of nuclear transplantation the influence of electrical preactivation of recipient cytoplasm on the in vitro developmental potentyl in the nuclear transplant rabbit embryos were evaluated. The embryos of 16-cell stage were collected and synchronized to G1 phase of 32-cell stage. The recipient cytoplasms were obtained by removing the first polar body and chromosome mass by non-disruptive microsurgery procedure. The separated G1 phase blastomeres of 32-cell stage were put into the non-preactivated and/or the preactivated recipient cytoplasm by electrical stimulation. After culture until 20h post-hCG injection, the nuclear transplant oocytes were electrofused. The fused nuclear transplant embryos were co-cultured with rabbit oviduct epithelial cells and monitored every 24h to assess for developmental rate. After in vitro culture for 120h, the nuclear transplant embryos developed to blastocyst stage were stained with Hoechst 33342 and their blastomere were counted. The electrofusion rate was similar to the non-preactivated and preactivated recipient cytoplasm(81.8 and 85.7%, respectively). However, the in vitro developmental rate to blastocyst stage with the non-preactivated recipient cytoplasm (57.1%) was found significantly (P<0.05) higher, compared to the preactivated recipient cytoplasm(20.8%). The cell counts of nuclear transplant embryos developed to blastosyst stage were increased significantly (P<0.05) more in the non-preactivated recipient cytoplasm (163.7 cells), as compared with the preactivated recipient cytoplasm(85.4 cells). These results considered better that non-preactivated oocytes, MII phase oocytes, were used for recipient cytoplasms in the rabbit nuclear transplant procedure.

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Protoplast Culture by Electrofusion of Protoplasts from Solanum sisymbriifolium and Other Solanum Species

  • Kim Hag-Hyun;Jung Hye-Jin;Shin Un-Dong
    • 한국자원식물학회지
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    • 제19권3호
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    • pp.422-426
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    • 2006
  • This research was conducted to get the basic materials necessary to obtain the somatic hybrid plant between Solanum sisymbriifolium and other Solanum species (S. integrifolium and S. toxicarium). Regarding the formation of colony from the protoplast in S. sisymbriifolium, S. integrifolium and the fused protoplast mixture; for the S. sisymbriifolium, a colony was observed in F medium(Kao medium containing $5.0mg{\cdot}L^{-1}\;NAA,\;1.0mg{\cdot}L^{-1}$ 2,4-D and $1.0mg{\cdot}L^{-1}$ BA); and for the S. integrifolium, in G medium (a half strength MS medium containing 0.03 M sucrose, 0.4 M mannitol, $1.0mg{\cdot}L^{-1}\;NAA,\;1.0mg{\cdot}L^{-1}$ kinetin) respectively. In mixed cultured protoplast after electriofusion treatment, the cell division and colony formation were observed in both media F and G. For the shoot and root formation rate, there was no difference between the parent of each breed and mixed protoplast regardless of the medium. In the fused protoplast mixture of S. sisymbriifolium and S. toxicarium, a colony formation was also observed in both media F and H(a half strength MS medium containing 0.03 M sucrose, 0.4 M mannitol, $1.0mg{\cdot}L^{-1}\;NAA,\;1.0mg{\cdot}L^{-1}$ kinetin); and there was no difference in the shoot and root formation rate between the parent and the mixed protoplast.

토끼에서 난자의 성숙도가 전기융합 및 핵이식 수정란의 체외발달에 미치는 영향 (Effect of Oocyte Age on Electrofusion and In Vitro Development of Nuclear Transplant Embryos in Rabbits)

  • 이효종;정미경;전병균;최민철;최상용;박충생
    • 한국수정란이식학회지
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    • 제9권1호
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    • pp.23-29
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    • 1994
  • The long term goal of this research is to develop an efficient procedure for large scale production of genetically identical or cloned animals. To improve nuclear transpalntation efficiency in the rabbit, this study evaluated the age of nuclear recipient oocytes on the different steps of nuclear transplantation. The ovulated oocytes in different ages were collected from the superovulated does by flushing oviducts with Dulbecco's phosphate buffered saline(D-PBS) supplemented with 10% fetal calf serum(FCS) from 13 to 15, 17 to 20 and 23 to 26 hours after hCG injection. The denuded oocytes were used as nuclear recipient cytoplasm following enucleation by micromanipulation. The blastomeres separated from the 8-cell embryos were used as nuclear donor. The enucleated oocytes receiving a blastomere in the perivitteline space were fused in the 0.28 M mannitol solution at 1.5 kV/cm, 60 sec for three times. The fused oocytes were co-cultured with the monolayered rabbit oviductal epithelial cells in TGM-199 solution with 10% FCS for 72 hours at 37$^{\circ}C$ in a 5% $CO_2$ incubator. The cultured nuclear transplant embryos and in vivo developed embryos collected at 72 hours after hCG injection were stained with Hoechst 33342 dye. Their cell numbers were counted under a fluorescent microscope. The results obtained were summarized as follows ; 1. The aged oocytes(20 hrs. post hCG) showed significantly(P<0.05) higher fusionrates(70 ~ 90%) than the recently ovulated oocytes(30.8%) 2. The aged oocytes which were electrically activated and fused at 20 hours developed to blastocyst at significantly(P<0.05) high rate, while none of the recently ovulated oocytes developed to blastocyst. 3. Even though the aged oocytes at 23~26 hours showed higher fusion rate(85.7%), not only they were inadequate to manipulate but also their developmental potential to blastocyst was highly impaired. 4. The developmental potential in vitro of nuclear transplant embryos was significantly retarded than in vivo deveolped embryos.

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Production of Cloned Bovine Embryos Carrying with Human Thrombopoietin Gene

  • K.I. Wee;B.H. Son;Park, Y.H.;Park, J.S.;D.H. Ko;Lee, K.K.;Y.M. Han
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2001년도 춘계학술발표대회
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    • pp.60-60
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    • 2001
  • Human thrombopoietin (hTPO) is a cytokine that plays a central role in megakaryopoiesis by influencing on the development and maturation of megakaryocyte and platelet production. To induce hTPO production in the mammary gland, expression vector was constructed by combining the promoter of bovine beta-casein gene, cDNA of hTPO and neomycine resistance gene for transfection into fibroblasts. Bovine fibroblast cells derived from female ear skin were transfercted with the expression vector using Lipofectamine (Life Technology, NY). Transected cells resistant to G4l8 treatment (600 $\mu\textrm{g}$/$m\ell$) were recovered and colony formation was initiated at 13 days. The colonies with about 1 cm diameter were picked and analysed by PCR. Single transfected cells were individually transferred to enucleated oocytes. After electrofusion, the reconstructed embryos were exposed to calcium ionophore (5uM) for 5 min followed by treatment with 6-DMAP (2.5 mM) for 4h. The nuclear transfer embryos were cultured in CRlaa medium at 38.5C, 5% $CO_2$ for 7 days. Twenty three of 29 (79.3%) colonies were proved to be hTPO transfectants by PCR. The colonies were further passaged and used to produce transgenic embryos using nuclear transfer. Cleavage and developmental rates of reconstructed embryos to the blastocyst stage were 65.1% and 39.4%, respectively Of 22 blastocysts that developed from reconstructed embryos with the transfected cell, 20 embryos (90.9%) were positive for hTPO by using PCR analysis. The results suggest that somatic cell nuclear transfer is efficient for production of transgenic embryos.

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태아 섬유아세포로 재구성된 핵치환 소 수정란의 체외발달 (In Vitro Development of Bovine Nuclear Transfer Embryos Reconstructed with Fetal Fibroblasts)

  • 구덕본;최영희;박정선;김하나;강용국;이철상;한용만;박흠대;이경광
    • 한국가축번식학회지
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    • 제24권4호
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    • pp.407-417
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    • 2000
  • 본 연구는 태아 섬유아세포를 이용한 소 핵치환 난자의 융합에 있어서 여러 조건의 전기자극 처리 후 그에 따른 발달율을 조사하였다. 임선 45 일령 태아로부터 섬유아세포를 분리하여 3~4 차례 계대배양후, 이들 단일 섬유아 세포들을 미세조작기를 이용하여 제핵된 난자의 위란강 내에 주입하였다. 본 실험에서는 첫째로, 다른 전기자극 조건의 적용에 따른 융합율 및 발달율을 비교 조사하였다. 180 V/mm 의 조건하에서 다른 조건의 전기자극 시간 (15, 30, 45 $\mu$see)을 처리하였을 때, 15 (45.5%, 120/264)나 30 $\mu$see (43.9%, 106/241) 처리구가 45$\mu$see (23.2%, 58/250) 처리구 보다 높은 융합율을 나타내었다 (P>0.05). 그러나, 융합된 난자의 발달율에 있어서는 처리구 간에 차이가 나타나지 않았다. 다음 실험으로, 핵치환 난자의 체외발달에 있어서 15 $\mu$see 의 전기자극 시간의 조건하에서 다른 전장 (1.5, 1.8, 2.1 kV/cm)에 따른 효과를 조사하였다. 핵치환 난자의 융합이나 발달율에 전장에 따른 차이는 나타나지 않았다 (P>0.05). 마지막으로, 체세포 핵치환과 체외수정에 의한 수정란의 체외 발달율을 비교 조사하였다. 태아 섬유아세포로 재구성된 수정란의 배반포로의 발달율은 27.4% (75/274) 로 나타났으며, 이는 체외수정에 의해 발달한 배반포의 비율(24.5%, 58/237)과 유사하다는 것을 알 수 있었다. 그러나, 핵치환에 의해 유도된 배반포의 평균 세포 수는 체외수정에 의해 유도된 배반포 보다 낮게 나타났다. 결론적으로, 본 실험에서는 체세포로 핵치환된 소 난자의 전기적 융합에 대한 조건 (1.8 kV/cm, 15 $\mu$see)을 확립하였다. 또한, 본 실험에서 나타난 결과들은 체세포로 재구성된 소 난자들이 비록 체외수정에 의해 생산된 배반포보다는 적은 세포수를 보여주었지만, 체외에서 정상적으로 배반포 단계까지 발달할 수 있다는 것을 제시하고 있다.

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소에서 핵이식 방법이 재구축배의 체외발달에 미치는 영향 II. 통전전압과 체내생산 공핵배의 질에 따른 융합과 체외발달 (Effect of Nuclear Transfer Methods on In Vitro Development of Reconstituted Bovine Embryos II. Effect of Electric Voltage and In Vitro Produced Donor Embryo Quality on Fusion and In Vitro Development)

  • 정영채;김창근;송학웅;정영호;윤종택;이종완;김흥률;김광식
    • 한국가축번식학회지
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    • 제20권4호
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    • pp.467-472
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    • 1997
  • 본 연구는 체내생산 공핵배 핵이식의 최적 통전전압을 결정하기 위하여 그리고 공핵배의 질이 핵이식난자의 융합과 체외발달에 미치는 영향을 조사하기 위하여 수행되었다. 수핵난자는 체외성숙후 25∼27시간에 제핵하였고 난자의 추가성숙을 위해서 융합전에 18∼20시간 더 배양하였다. 상실배시기의 공핵배는 다배란 처녀우에서 채란한 후 질에 따라 양질과 저질로 구분하여 공시하였다. 공핵배의 핵이식은 체외성숙후 42∼44시간에 행하였고, 융합은 0.75kV/cm 또는 1.0kV/cm DC 전압으로 체외성숙 후 43∼45시간에 실시하였다. 융합율은 두 전안갑에 차이가 없었으나 난할율과 M+B 발달율은 19.0%와 29.4%였다. 공핵배의 질은 융합율과 난할율에 크게 영향이 없었으나 저질공핵배의 핵이식으로 부터는 상실배의 발달이 없었다. 본 결과에서 체내생산 공핵배 핵이식의 최적전압은 1.0kV/cm DC이었으며 공핵배의 질은 핵이식배 발달에 영향하는 중요 요인 중에 하나이었다.

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