• 제목/요약/키워드: rabbit blastocyst

검색결과 51건 처리시간 0.03초

복수(腹水)에 의(依)한 가토난자(家兎卵子)의 체외배양(體外培養)에 관(關)한 연구(硏究) (Studies on in Vitro Culture of Rabbit Ova in Peritoneal Fluids)

  • 전창기;이시지마 요시로
    • 농업과학연구
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    • 제1권1호
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    • pp.35-39
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    • 1974
  • 본시험(本試驗)은 과배란처리가토(過排卵處理家兎)에서 많은 양(量)이 채취(採取)할수 있는 복수(腹水)(peritoneal fluid)가 가토수정난자(家兎水精卵子)의 in. Vitro 배양(培養)의 배양액(培養液)으로서 이용(利用)할수 있는지를 검토(檢討)하기 위하여 실시(實施)하였다. 그 결과(結果)를 요약(要約)하면 다음과 같다. 2) 2세포(細胞), 4세포(細胞), 8세포(細胞), 16세포기(細胞期)의 가토난자(家兎卵子)를 복수(腹水)를 써서 $37^{\circ}C$에서 48시간(時間) 배양(培養)한 결과 분할(分割)된 난자(卵子)의 정도(程度)는 각각(各各) 78.1%, 83.3%, 91.7% 및 93.6%로서 이들의 성적(成績)은 가토혈청(家兎血淸)으로 배양(培養)했을 경우보다도 어느 것이나 좋았다. 2) 2세포(細胞)의 난자(卵子)를 복수(腹水)로 96시간(時間) 배양(培養)했을 때 배양난자(培養卵子)의 88%가 상실기이상(桑實期以上)으로 발달(發達)되고 24%가 배반포(胚盤胞)에 이르고 있으며 가토혈청(家兎血淸)으로 배양(培養)한 성적(成績)과 거의 같은 경향(傾向)을 보였다. 이상(以上)과 같은 점(點)에서 가토난자(家兎卵子)의 배양액(培養液)으로서 가토(家兎)의 복수(腹水)가 유효(有效)하라는 것이 입증(立證) 되었다.

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Deposition of Mucin Coat on Rabbit Embryos Cultured In Vitro Following Oviductal Transfer

  • Joung S. Y;Yang J. H;Im K S;Lee S. H;Park C. S;Jin D. I
    • Reproductive and Developmental Biology
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    • 제28권3호
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    • pp.141-145
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    • 2004
  • Mucin coat is deposited on the embryos during passage through the oviduct in rabbit. When in vitro cultured blastocysts were transferred to the recipients, the lack of mucin coat might account in part for failure of pregnancy after transfer. The present study were carried out to investigate whether deposition of mucin coat were induced when in vitro cultured blastocysts were transferred to recipients. At 19 ~20 hours post-coitus one-cell embryos were collected by flushing oviducts. These embryos cultured for 72 hours were reached to blastocyst stage. And these blastocysts were transferred to the oviduct of asynchronized (one day later than the donors) and synchronized recipient. To confirm deposition of the mucin coat, blastocysts transferred to the oviduct were recovered at 24 and 48 hours after the transfer. Fifty eight percent of blastocysts recovered from uterus of asynchronous recipient at 24 hours after transfer and 92.9% of blastocysts recovered from uterus of synchronous recipient were 0~10 ㎛ of mucin coat thickness. And 11.8% of blastocysts of asynchronized recipients and 7.1% of blastocysts from asynchronized recipients were in 11~20 ㎛ of mucin coat thickness. When blastocysts were recovered from uterus at 48 hours after transfer, 87.0% of blastocysts from asynchronized recipients and 5.9% of blastocyst from synchronized recipients were in 0~10 ㎛ of mucin coat thickness. And 76.5% of blastocysts of synchronized recipients and 4.4% of blastocysts from asynchronized recipients were in 11~20 ㎛ of mucin coat thickness. From these results it is speculated that the low implantation rate of in vitro cultured rabbit blastocysts transferred to oviduct of recipient was caused by high degeneration of the embryo after transfer and inappropriate deposition of mucin coat.

Differential Influences in Sizes and Cell Cycle Stages of Donor Blastomeres on the Development of Cloned Rabbit Embryos

  • Ju, Jyh-Cherng;Yang, Jyh-Shyu;Liu, Chien-Tsung;Chen, Chien-Hong;Tseng, Jung-Kai;Chou, Po-Chien;Cheng, San-Pao
    • Asian-Australasian Journal of Animal Sciences
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    • 제16권1호
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    • pp.15-22
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    • 2003
  • Experiments were conducted to evaluate the effect of blastomere diameters and cell cycle stages on the subsequent development of nuclear transplant rabbit embryos (NT-embryos) using nuclei derived from the 16- or 32-cell stage embryos. All blastomeres and NT-embryos were cultured individually in modified Ham's F-10 medium supplemented with 10% rabbit serum (RS) at $38^{\circ}C$ and 5% $CO_2$ in air. The diameter of blastomeres from 16-cell stage embryos was found twice of those from 32-cell stage (51 vs 27 ${\mu}m$). Significant differences were observed in cleavage rates ($\geq$3 divisions) in the isolated single blastomeres (54 vs 48 for 16-cell; 28 vs 14 for 32-cell, p<0.05), but the fusion rates of oocytes with transferred nuclei were similar between small and large single blastomeres derived from either 16-cell or 32-cell stage embryos. When 16-cell stage blastomeres were used as nuclear donors, cleavage rates ($\geq$3 divisions) of the NT-embryos were greater in the small nuclear donors than in the large donors (73 vs 55%, p<0.05). On the contrary, significantly higher cleavage (43 vs 6%, p<0.05) and developmental rates (14 vs 0%, p<0.05) were observed in the large blastomere nuclear donor group of the 32-cell stage embryos. When the cell cycle stages were controlled by a microtubule polymerization inhibitor (Demicolcine, DEM) or the combined treatment of DEM and Aphidicolin (APH), a DNA polymerase inhibitor, fusion rates were 88-96% for the 16-cell donor group (without DEM treatment), which were greater than the 32-cell donor group (54-58%). Cleavage rates were also greater in the transplants derived from G1 nuclear donor group (93-95%) than those from the DEM and APH combined treatment (73%) for the 16-cell donor group (p<0.05). No significant difference was detected in the morula/blastocyst rates in either donor cell stage (p>0.05). In conclusion, it appeared that no difference in the developmental competence between large and small isolated blastomeres was observed. When smaller 16-cell stage blastomeres were used as nuclear donor, the cleavage rate or development of NT-embryos was improved and was compromised when 32-cell stage blastomeres were used. Therefore, control nuclear stage of the donor cell at $G_1$ phase in preactivated nuclear recipients seemed to be beneficial for the cleavage rate of the reconstructed embryo in the 16-cell transplant, but not for subsequent morula or blastocyst development.

Green Fluorescent Protein 발현 토끼 수정란의 핵이식에 의한 복제 (Cloning of Transgenic Rabbit Embryos Expressing Green Fluorescent Protein Gene by nuclear Transplantation)

  • 강태영;윤희준;노규진;이항;채영진;이효종
    • 한국수정란이식학회지
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    • 제15권2호
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    • pp.167-173
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    • 2000
  • The principal objective of this study was to clone transgenic embryos in order to improve the efficiency of transgenic animal production by the combination of microinjection and nuclear transplantation techniques. Mature female New Zealand White rabbits were superovulated by eCG and hCG treatments, fllowed by natural mating. Zygotes were collected from the oviducts at 18∼22 h after hCG injection by flushing with D-PBS containing 5% fetal calf serum(FCS). Two to three picoliters of green fluorescent protein(GFP) gene wa microinjected into male pronucleus. The foreign gene-injected zygotes were cultured in TCM-199 or RD medium containing 10% FCS with a monolayer of rabbit oviductal epithelial cells in a 5% CO2 incubator. The morulae expressing GFP gene were selected and their blastomeres were separated for the use of nuclear donor. Following nuclear transplantation of fluorescence-positive morula stage blastomeres, 13 (21.3%) out of 61 fused oocytes developed to blastocyst stage and all of the cloned blastocysts expressed GFP. The results indicate that the screening of transgene in rabbit embryos by GFP detection could be a promisible method for the preselection of transgenic embryos. Also the cloning of preselected transgenic embryos by nuclear transplantatin could be efficiently applied to the multiple production of transgenic animals.

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Effects of Levels and Sources of Follicular Fluid on the In Vitro Maturation and Development of Porcine Oocytes

  • Huang, W.T.;Tang, P.C.;Wu, S.C.;Cheng, S.P.;Ju, J.C.
    • Asian-Australasian Journal of Animal Sciences
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    • 제14권10호
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    • pp.1360-1366
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    • 2001
  • The aims of this study were first to evaluate the effects of different levels (20, 40 and 100%) and sources (follicular size: large, >7 mm; medium, >5-7 mm; small, 3-5 mm) of porcine follicular fluid (pFF) on the in vitro maturation (IVM) of porcine oocytes, and the effects of fertilization treatments and different culture conditions on development of fertilized oocytes were also investigated. No differences in the maturation (63.6-76.6%) and cleavage (24.8-34.3%) rates were observed among the 20,40 and 100% pFF groups (p>0.05). The cleavage rates of oocytes cultured and fertilized in 40% and 100% pFF maturation media were significantly higher than those fertilized in m199-NBCS (51.0-61.2% vs. 12.8-31.8%. p<0.05), regardless of sources of the pFF. When oocytes were fertilized in m199-NBCS followed by culture in rabbit oviducts for 4 days, the cleavage rate in 40% pFF group was better than that in 100% pFF group (46.9% vs. 32.5%, p<0.05). Two oocytes recovered from the oviducts in the 40% pFF group developed to blastocysts after IVC. However, none developed to blastocysts when fertilized in the IVM medium after being transferred to rabbit oviducts. In conclusion, addition of pFF accompanied with gonadotropins (FSH, LH) in IVM medium enhanced maturation and cleavage rates of porcine oocytes. Direct addition of sperm suspension to IVM medium may be an alternative to simplify the fertilization procedures and to reduce the mechanical lesion during manipulation. Furthermore, rabbit oviducts provide a better environment for the in vitro fertilized oocyte developing to the morula and blastocyst stages.

토끼의 체외배양 난자를 이용한 핵이식으로 복제수정란 및 복제산자의 생산 (Production of cloned Rabbits Embryos and Offsprings by Nuclear Transplantation using In Vitro Matured Oocytes in Rabbits)

  • 박충생;전병균;이경미;윤희준;이효종;곽대오;최상용
    • 한국수정란이식학회지
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    • 제10권1호
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    • pp.65-72
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    • 1995
  • The purposes of this study were to produce cloned rabbit embryos and offsprings by nuclear transplantation(NT) using in vitro matured oocytes as nuclear recipient cytoplasm and to determine the effect of frozen nuclei donor embryos on the production efficiency of cloned embryos. The 8cell embryos were collected from the mated does by flushing oviducts with Dulbecco's phosphate buffered saline containing 10% fetal calf serum(FCS) at 40 hours after hGG injection. A portion of collected embryos were preserved at 4$^{\circ}C$ for 24 hours and a portion of them were frozen by vitrification method. The embryos used for donor nuclei were synchronized in the phase of Gi /S transition. The in vitro matured oocytes were used as recipient cytoplasm following removing the nucleus and the first polar body. The synchronized blastomeres from fresh, cooled or frozen embryos were injected into the enucleated oocytes by micromanipulation and were electrofused by electrical stimulation of three pulses for 60 $\mu$sec at 1.0 W /cm in 0.28 M mannitol solution. The fused oocytes were co-cultured with a monolayer of rabbit oviductal epithelial cells in M-199 solution containing 10% FCS for 120 hours at 39$^{\circ}C$ in a 5% $CO_2$incubator. Following in vitro culture of the NT embryos to blastocyst stage, they were stained with Hoechst 33342 dye for counting the number of blastomeres by fluorescence microscopy. The nuclear transplant embryos developed in vitro to 2- to 4-cell stage were transferred into the oviducts of synchronized recipient does. The results obtained were summarized as follows: 1. The fusion rates of the blastomeres from fresh, cooled and frozen embryos with the in vitro matured and enucleated oocytes were 100, 95.8 and 64, 3%, respectively. 2. Development in vitro to blastocyst was significantly(p<0.05) different between the cloned embryos with the blastomeres from fresh, cooled or frozen embryos as 39.0, 20. 9 and 15.7%, respectively. 3. The mean numbers of cell cycle per day during in vitro culture of cloned embryos blastomeres from fresh, cooled or frozen embryos was 1.31, 1.29 and 1.16, respectively. 4. A total of 77 nuclear transplant embryos were transferred into 6 recipient does, of which two offsprings were produced from a foster mother 31 days after embryo transfer.

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반복핵이식에 의한 복제동물 생산에 관한 연구 III. 토끼에서 제3세대 복제수정란의 생산 (Study on Production of Cloned Animals by Recycling Nuclear Transplantation III. Production of Third Generation Cloned Embryos in Rabbits)

  • 이효종;전병균;윤희준;박충생;최상용;윤창현;강대진
    • 한국임상수의학회지
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    • 제12권1호
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    • pp.877-886
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    • 1995
  • The recycling nuclear transplantation(NT) technique has the powerful potential of producing a large number of genetically identical embryos and offsprings from one embryo. Multiple generational cloning by this technique utilizes the NT embryo itself as the donor for the next generation of cloning. In this experiment, we have produced the third generational cloned embryos by recycling NT. Further we examined comparatively the electrofusion rate and in vitro developmental potential in the cloned embryos of the first second and third generations. The embryos of 16-cell stage were collected from the mated does by flushing oviducts with Dulberco's phosphate buffered saline containing 10 % fetal calf serum(FCS) at 47 hours after hCG injection. In the first generation NT, the nuclear donor embryos were synchronized in the phase of Gl/S transition of 32-cell stage. The first and second generation NT embryos developed to 16-cell were used as donor nuclei for second and third generation. The recipient cytoplasms were utilized the oocytes collected at 14 hours after hCG injection, following revoming the nucleus and the first polar body by micromanipulation. The separated blastomeres were injected into the enucleated recipient oocytes by micromanipulation and were fused by electrical stimulation. The electrofusion rate was seen to be 78.0, 88.0 and 90.3 % in the first second and third generation NT rabbit embryos, respectively. The fused oocytes were co-cultured with a monolayer of rabbit oviductal epithelial cells in M-199 solution containing 10 % FCS for 120 hours at 39$^{\circ}C$ in a 5% $CO_2$ incubator. The in vitro developmental potential to blastocyst stage was significantly(P<0.05) decreased in the third(7.2 %) generation NT embryos compared to the first(53.1 %) and second(16.1 %) generation NT embryos. Following in vitro development to blastocyst stage, they were stained with Hoechst 33342 dye for counting the number of blastomeres by fluorescence microscopy. The mean blastomere numbers and cell cycle numbers of NT embryos during the culture period were significantly(p<0.05) decreased in the second(93.9 cells and 6.55 cylces) and third(81.5 cells and 1.35 cylces) generation, compared to the first(189.9 cells and 7.55 cylces) generation.

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다배란처리와 발정동기화가 난소반응, 수태율 및 산자수에 미치는 영향 (Effect of Superovulation and Synchronization on Ovarian Response, Pregnancy Rate and Number of Newborn in Rabbit)

  • 최화식;임경순;이용빈
    • 한국가축번식학회지
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    • 제11권3호
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    • pp.223-229
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    • 1987
  • This study was carried out to investigate effects of superovulation and time of embryo recovery on ovarian response, recovery rate and developmental stage of embryo in donor and effects of methods of synchronization, number of corpus luteum (CL), stage of embryo and time of embryo transfer on ovarian response, conception rate and number of newborn in recipients which were transferred on 2.5, 3.5 and 4.5 days after synchronization. The results obtained are as follows; 1. The ovulation point of superovulated donor on 2.5, 3.5 and 4.5 days after copulation was 23.3, 35.3 and 23.3, respectively. The number of embryos recovered from the donors on 2.5, 3.5 and 4.5 days after copulation was 23.3, 25.8 and 19.8, respectively. The ovulation point and number of embryos recovered on 3.5 days were greater than those of 2.5 and 4.5 days. Among 232 embryos recovered on 3.5 days after copulation, 84 were blastocyst and 62 were hatching blastocyst. 2. The number of CL in recipients on 2.5, 3.5 and 4.5 days after synchronization was 3.2, 2.9 and 3.8 and showed no difference among the days. 3. When the number of CL was 0, 2-3, 4-6 and more than 7 the pregnancy raet of recipients was 0, 37.5, 66.7 and 75%, respectively. The pregnancy rate of recipients increased as the number of CL increased. 4. The pregnancy rate of transferred morula, blastocyst and hatching blastocyst was 32.0, 37.2 and 24.7%, respectively. The blastocyst nhowed highest pregnancy rate. 5. When the recipients were synchronized by HCG, the number of CL, unruptured follicle, hemorrhage, pregnancy rate and number of young were 5.5, 6.4, 3.3, 72.7% and 3.3, whereas that of GnRH were 2.3, 4.4, 2.8, 25.0% and 1.2, respectively. Recipients synchronized by HCG showed better results than GnRH. 6. When the embryos were collected on 2.5 days after copulation and transferred to the synchromized recipients, the pregnancy rate and the number of young born was 62.58% and 3.1, respectively. Those of 3.5 and 4.5 days after copulation was 57.1% and 1.3, and 37.5% and 1.6. The 2.5 days showed higher pregnancy rate and number of young born than 3.5 and 4.5 days.

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체외성숙 및 체외수정유래 소 수정란의 토끼난관내 배양에 관한 연구 (The culture of in vitro matured and fertilized bovine oocytes in rabbit oviduct)

  • 정혜옥;황우석;조충호;이병천
    • 대한수의학회지
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    • 제33권1호
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    • pp.179-188
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    • 1993
  • The developmental capacity of bovine oocytes under three different culture systems was investigated in this experiment ; One was culture in TCM199 with bovine oviductal epithelial cells(BOEC) for in vitro culture, another was culture in TCM199 with BOEC for 2 days and then transfer of 4~8cell embryos to rabbit oviduct(RO) and the other was transfer of 1 or 2cell embryos to RO for in vivo culture. And the other concern of this experiment was to investigate the effect of culture period and transfer site on recovery. Immature bovine oocytes were cultured in TCM199 with granulosa cells for 22-24hrs and then fertilized in vitro using frozen-thawed semen treated with BO-caffine and BO-BSA. Fifteen to 18hrs after in vitro fertilization oocytes were cultured in TCM199 with BOEC or transferred to RO for 5 days. The rate of development to the morula or blastocyst was higher in transfer of 1 or 2cell embryos to RO(23.1%) than culture in TCM199 with BOEC(11.7%). But, there was no difference between transfer of 1 or 2cell embryos and transfer of 4~8cell embryos to RO(12.8%). Recovery under different culture periods in RO was significantly higher in 90~95hrs(70.1%) than 122~125hrs(50.9%, p<0.05) and recovery significantly increased when oocytes were transferred deeper in RO(2.5cm>, 47.7% ; 2.5~4.5cm, 63.9% ; 4.5cm<, 77.3%, p<0.05). The results show that transfer of 1 or 2cell embryos to RO is an effective means of supporting the further development of in vitro matured and fertilized bovine oocytes than culture in TCM199 with BOEC or transfer of 4~8cell embryos to RO, and recovery from RO increases when oocytes are transferred deeper and incubated shorter in RO.

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토끼 전핵배의 동결보존 후 배발달률 (Post-thaw Development of Rabbits Pronuclear Embryos by Cryopreservation)

  • 강다원;조성근;한재희;곽대오;이효종;최상용;박충생
    • 한국가축번식학회지
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    • 제23권1호
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    • pp.75-84
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    • 1999
  • 본 연구는 토끼 전핵배의 효율적인 생산을 위한 동결방법과 조건 등을 찾고자 유리화 동결 및 완만동결법으로 동결ㆍ융해 후 체외배양하여 생존율 및 발달률을 조사하였다. 과배란시킨 토끼의 난관으로부터 채란된 전핵배를 동결에 공시하였다. 유리화 동결은 동결보호제로 EFS 와 EPG-I을 완만동결시는 EPG-II를 사용하였다. 동결ㆍ융해 후 5%, 39$^{\circ}C$ $CO_2$incubator 에서 소 난관상피세포와 공배양하였다. 본 실험의 결과는 다음과 같다. 동결보존을 위하여 동결보호제에 적절한 평형시간과 독성 여부를 판단하기 위하여 전핵배를 EFS 용액에 0~5분간 평형시킨 후 부화배반포로의 발달률은 1 분 군에서 72.0%로 동결보호제에 노출시키지 않은 대조구 (84.1%)에 비하여 무해한 결과를 얻었으나, 그 이상에서는 유해한 결과를 보여 주었다. EFS 노출 후 희석제로 sucrose와 D-PBS를, sucrose 사용 없이 D-PBS 만으로 희석하였을 때 유의적인 (P<0.05) 차이를 보이지 않았다. 동결보호제에 있어서는 독성검사 및 동결ㆍ융해 후 발달률을 보아 EFS, EPG-. EPG-II는 동결보존에 있어서 동결보호제로서의 가능성을 보여주었으며 서로간의 유의적인 (P<0.05) 차이는 찾아볼 수 없었다. 유리화동결에 의한 전핵배의 부화배반포로 발달률은 6.1%를 나타내었고, 완만동결에 의한 부화배반포 발달률은 11.5%로서 동결방법간에는 유의적인 (P<0.05) 차이가 없었다. 완만동결시 동결속도가 전핵배의 투명대 파열에 미치는 영향을 규명하기 위하여 동결속도 및 침지온도를 달리하여 조사하였을 때 -35$^{\circ}C$ (25%) 보다는 -85$^{\circ}C$ 0.9%) 에서 액체질소에 침지하였을 때가 투명대 파열률에 있어 유의적인 (P<0.05) 차이를 보였다. 이상의 결과로부터 전핵배는 현 배양상태에서 유리화동결 및 완만동결에 의하여 동결보존이 가능하다고 사료되나 전핵배의 배반포로의 발달률은 다소 저조하였다. 유리화동결 및 완만동결에 의한 전핵배는 후기 단계의 수정란보다 물리적, 화학적 손상에 더욱 민감하여 생존율 및 발달률에 영향을 미친다고 사료된다.

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