• 제목/요약/키워드: developmental rates

검색결과 619건 처리시간 0.024초

Effects of Various Addition and Exclusion Time of Glucose on Development of Mouse Two-Cell Embryos

  • Park S. B.;Park K S.;Lee T. H.;Chun S. S.;Kim K S.;Song H. B.
    • Reproductive and Developmental Biology
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    • 제28권4호
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    • pp.227-233
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    • 2004
  • This study was conducted to investigate the effect of various addition and exclusion time of glucose (Control: no addition, A: 24~72 h, B: 24~48 h, C: 48~72 h, D: 0~72 h, E: 0~48 h, F: 0~24 h and 48~72 h, G: 0~24 h) on embryonic developmental capacity of 2-cell embryos in mice. Developed blastocysts were assessed for mean cell number by differential staining. The zona-intact blastocyst (ZiB) rates were higher (p<0.05) in group B than control. However, the zona-escape blastocyst (ZeB) rates were not significantly different in all groups. At 72 h, total blastocyst (ZiB + ZeB) formation rates were not significantly different in all groups. The mean cell number was not significantly different among all groups. The inner cell mass (ICM) cell number was higher (p<0.05) in group F than control, group A, B and G. The trophectoderm (TE) cell number was higher (p<0.05) in control than group A and D. The %ICM was higher (p<0.05) in group C, D and F than control. The ICM : TE ratio was not significantly different in all groups. Between control and glucose group, no significant difference was observed in the total blastocysts (ZiB + ZeB) formation rates. Also, no significant difference was observed in the mean cell number, ICM cell number and ICM : TE ratio. However the TE cell number was higher (p<0.05) in control than glucose group and %ICM was higher (p<0.05) in glucose group than control. In conclusion, glucose added in culture medium was not inhibitory on blastocyst formation but glucose added for 48 ~72 h in culture medium increases %ICM of blastocysts in mice.

소 체외성숙 난자의 세포질내 정자주입에 의한 수정율 향상에 관한 연구 (Studies on the Improvement of Fertilization Rates Using Intracytoplasmic Sperm Injection with In Vitro Matured Oocytes)

  • 유상식;김용섭;이봉구;김상근
    • 한국가축번식학회지
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    • 제22권3호
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    • pp.213-219
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    • 1998
  • This study was carried out to investigate on the improvement of fertilizing ability of in vitro matured oocytes from sperm density, motility and polyvinylpyrrolidine (PVP) concentration, by intracytoplasmic sperm injection(ICSI) into the bovine oocytes. 1. The in vitro fertilization and cleavage rates of oocytes from 1.0, 2.0, 3.0, 5.0 ($\times$106/ml) sperm concentration by IVF and ICSI of bovine oocytes were 45.0%~65.0%, 65.0%~90.0% and 10.0%~30.0%, 35.0%~70.0%, respectively. 2. The in vitro fertilization and cleavage rates of oocytes from 20, 40, 60, 80% of sperm motility by IVF and ICSI of bovine oocytes were 47.8%~75.0%, 78.3%~90.0% and 8.7%~25.0%, 34.8%~70.0%, respectively. 3. The in vitro fertilization and cleavage rates of oocytes from 0.01, 0.02, 0.03, 0.05% of PVP concentration by microinjection of single into the bovine oocytes were 72.7%, 90.9%, 83.3%, 76.9% and 45.5%, 72.7%, 58.3%, 61.5%, respectively and these values of 0.02% addition of PVP were higher than other concentrations of PVP. 4. The in vitro fertilization and developmental rates of oocytes by IVF and ICSI methods were 63.3%~64.6%, 26.7%~29.2% and 88.2%, 47.1%, respectively. This ICSI method was improved high fertilization rates of bovined oocytes.

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Various Expression Pattern of Beta-catenin in the Preimplantation Stage of Porcine Embryos

  • Han, Jee-Soo;Koo, Deog-Bon;Shin, Bo-Rami;Lee, Kyung-Kwang;Han, Yong-Mahn
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2003년도 학술발표대회 발표논문초록집
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    • pp.56-56
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    • 2003
  • Beta-catenin is very important in early development including involvement in cell adhesion, cell signaling, and developmental fate specification. Cell-cell interaction is an important process during mammalian embryonic development. In preimplantation embryos, embryonic compaction is the process of increased cellular flattening and adhesion of junctional complexes and results in a polarized distribution. Beta-catenin is associated with embryonic compaction in mammals. Here, we examined the relationship between beta-catenin expression and compaction in porcine embryos derived from in vitro fertilization. First of all, we investigated beta-catenin expression in each embryonic developmental stage and also focused on expression pattern according to full, partial and non-compaction at morula stage. We used the immunocyto-chemical method in this research. To confirm compaction affects on the embryonic development, we compared between compaction and developmental rates to the blastocyst. The result showed that compaction and non-compaction rates were 14.6% and 63.8% at 4 days after IVF, respectively The developmental rates to the blastocyst and their total cell number were 50.9% vs 36.4% and 41.4$\pm$11.5 vs 26.8$\pm$12.7 in compaction and non-compaction groups. Although no difference was detected in the ratio of ICM to total cells between two groups, total cell number of the blastocysts in compaction group was superior to that of the blastocysts in non-compaction group (P<0.05). Expression of beta-catenin appeared in the boundary of membrane surface between blastomeres in 2- and 4-cell stage, and observed irregular pattern from 8-cell to blastocyst stage. We also investigated beta-catenin expression pattern according to the degree of compaction in the 3 groups; full, partial (>50%) and non-compaction. The expression signal in fully compacted embryos was stronger than those of partial and non-compacted embryos. Especially, beta-catenin expression appeared various patterns in morula stage suggesting the aberrant distribution of beta-catenin is affected by compaction patterns. Our results suggest that abnormal beta-catenin expression was affected by embryo quality and further development in porcine embryos in vitro.

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Rapamycin Influences the Efficiency of In vitro Fertilization and Development in the Mouse: A Role for Autophagic Activation

  • Lee, Geun-Kyung;Shin, Hyejin;Lim, Hyunjung Jade
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권8호
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    • pp.1102-1110
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    • 2016
  • The mammalian target of rapamycin (mTOR) regulates cellular processes such as cell growth, metabolism, transcription, translation, and autophagy. Rapamycin is a selective inhibitor of mTOR, and induces autophagy in various systems. Autophagy contributes to clearance and recycling of macromolecules and organelles in response to stress. We previously reported that vitrified-warmed mouse oocytes show acute increases in autophagy during warming, and suggested that it is a natural response to cold stress. In this follow-up study, we examined whether the modulation of autophagy influences survival, fertilization, and developmental rates of vitrified-warmed mouse oocytes. We used rapamycin to enhance autophagy in metaphase II (MII) oocytes before and after vitrification. The oocytes were then subjected to in vitro fertilization (IVF). The fertilization and developmental rates of vitrified-warmed oocytes after rapamycin treatment were significantly lower than those for control groups. Modulation of autophagy with rapamycin treatment shows that rapamycin-induced autophagy exerts a negative influence on fertilization and development of vitrified-warmed oocytes.

진딧물천적인 진디혹파리(Aphidoletes aphidimyza)의 생물학적 특성 (Biological Characteristics of the Aphid-eating Gall-midge, Aphidoletes aphidimyza (Diptera: Cecidomyiidae) as a Biological Control Agents of Aphids)

  • 정영석;최용석;오인석;한규홍;서미자;윤영남
    • 한국응용곤충학회지
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    • 제42권3호
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    • pp.241-248
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    • 2003
  • 진딧물의 포식자인 진디혹파리(Aphidoleres aphidimyra)의 온도와 먹이에 따른 발육기간, 산란력, 부화율, 우화율, 포식능력, 번데기의 저온저장, 살충제에 대한 감수성 등의 생물학적 특징을 조사하였다. 복숭아혹진딧물을 먹이로 공급하였을 경우, 알에서 성충까지의 평균 발육기간은 15$^{\circ}C$에서 40일, 3$0^{\circ}C$에서 12일이 소요되었다. 또한 목화진딧물을 먹이로 공급하는 경우에는 이보다 짧아 각각 37일과 11일이 소요되었다. 번데기를 저장하는 경우에는 5$^{\circ}C$에서는 1주일, 1$0^{\circ}C$에서는 2주일 동안 보관하여도 90%이상의 우화율을 나타내었으나, 그 이상 저장하는 경우베는 우화율이 점차 떨어지는 경향을 나타내었다. 성충은 우화 2-3일 후에 교미를 하고 알을 낳기 시작하여 평균 10일동안 약 200여개의 알을 낳는다. 대부분의 성충은 오후 6시에서 8시 사이에 우화하고 주로 야간에 활동하였다.

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
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2001년도 춘계학술발표대회
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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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Effects of Pyruvate and Taurine for In Vitro Preservation in Boar Semen and the Developmental Rates of Embryos Fertilized by Semen Treated with Antioxidant

  • Jang H. Y.;Cheong H. T.;Kim C. I.;Park C. K.;Yang B. K.
    • Reproductive and Developmental Biology
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    • 제29권2호
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    • pp.133-139
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    • 2005
  • Oxidative stress is one of the major causes of failure in in vitro storage of boar semen. Reactive oxygen species (ROS) are known to be important mediators of such stress. The present study examined the effects of pyruvate and taurine on sperm motility and expression of BAD, Cytochrome c, Caspase-3 and Cox-2 protein in in vitro storage of boar semen, and tested the effect of semen treated with antioxidant with or without hydrogen peroxide on the development of IVM/IVF porcine embryos. Semen samples were transported to the laboratory at $17^{\circ}C$ within 2 hr after collection and were treated with different concentration of pyruvate $(1\~10mM)$ and taurine $(25\~100mM)$ with or without 250uM $H_2O_2$ respectively. The supplementation of pyruvate and taurine increased sperm motility in boar semen during in vitro incubation at $37^{\circ}C$. Expression of apoptosis protein (BAD, cytochrome c, caspase-3 and cox-2) were reduced in the group of boar semen treated with pyruvate and taurine when compared to the other groups. The developmental rates of IVM/IVF porcine embryos fertilized by semen treated with pyruvate and taurine were significantly increased when compared to control (P<0.005). These results indicate that supplementation of pyruvate and taurine as antioxidants in boar semen extender can improve the semen quality and increase in vitro development of porcine IVM/IVF embryos when boar semen treated with antioxidants was used for in vitro fertilization.

Chromosome Aberrations in Porcine Embryo Produced by Nuclear Transfer with Somatic Cell

  • Ah, Ko-Seung;Jin, Song-Sang;Tae, Do-Jeong;Chung, Kil-Saeng;Lee, Hoon-Taek
    • 한국수정란이식학회:학술대회논문집
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    • 한국수정란이식학회 2002년도 국제심포지엄
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    • pp.73-73
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    • 2002
  • Nuclear transfer (NT) techniques have advanced in the last years, and cloned animals have been produced by using somatic cells in several species including pig. However, it is difficult that the nuclear transfer porcine embryos development to blastocyst stage overcoming the cell block in vitro. Abnormal segregation of chromosomes in nuclear transferred embryos on genome activation stage bring about embryo degeneration, abnormal blastocyst, delayed and low embryo development. Thus, we are evaluated that the correlations of the frequency of embryo developmental rates and chromosome aberration in NT and In viかo fertilization (IVF) derived embryo. We are used for ear-skin-fibroblast cell in NT. If only karyotyping of embryonic cells are chromosomally abnormal, they may difficultly remain undetected. Then, we evaluate the chromosome aberrations, fluorescent in situ hybridization (FISH) with porcine chromosome 1 submetacentric specific DNA probe were excuted. In normal diploid cell nucleus, two hybridization signal was detected. In contrast, abnormal cell figured one or three over signals. The developmental rates of NT and IVF embryos were 55% vs 63%, 32% vs 33% and 13% vs 17% in 2 cell, 8 cell and blastocyst, respectively. When looking at the types of chromosome aberration, the detection of aneuploidy at Day 3 on the embryo culture. The percentage of chromosome aneuploidy of NT and IVF at 4-cell stage 40.0%, 31.3%, respectively. This result indicate that chromosomal abnormalities are associated with low developmental rate in porcine NT embryo. It is also suggest that abnormal porcine embryos produced by NT associated with lower implantation rate, increase abortion rate and production of abnormal fetuses.

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Chromosome Aberrations in Porcine Embryo Produced by Nuclear Transfer with Somatic Cell

  • K. S. Chung;Ko, S. A;S. J. Song;J. T. Do;Park, Y. S.;Lee, H. T.
    • 한국가축번식학회지
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    • 제26권4호
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    • pp.385-394
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    • 2002
  • This study was constructed the correlations of the embryonic developmental rates and the frequency of chromosome aberration using ear-skin-fibroblast cell in nuclear transfer (NT) derived embryos. Karyoplast-oocyte complexes were fused and activated simultaneously, then cultured for seven days to assess development. The developmental rates of NT and in vitro fertilization (IVF) embryos were 55.4% vs 63.5%, 31.7% vs 33% and 13.4% vs 16.8% in 2 cell, 8 cell and blastocyst, respectively. Firstly, the frequency of chromosome aberrations were evaluated using fluorescent in situ hybridization (FISH) technique with porcine chromosome 1 submetacentric specific probe. Chromosome aberration was detected at day 3 on the embryo culture, the percentages of chromosomal aneuploidy in NT and IVF embryos at 4-cell stage were 40%, 31.3%, respectively. Secondly, embryonic fragmentation was evaluated at 4-cell stage embryo. Frequency of embryonic fragmentations was in 51.3% of NT, 61.3% of IVF, 28.9% of parthenogenetic activation at 4-cell stage. The proportion of fragmentation in NT embryos was higher than activation embryos. This result indicates that chromosomal abnormalities and embryonic fragments are associated with low developmental rate in porcine NT embryo. It is also suggest that abnormal porcine embryos produced by NT related with lower implantation rate, increased abortion rate and production of abnormal fetuses.