• Title/Summary/Keyword: nocodazole

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Development of Mouse Embryos Reconstituted with 4-cell Nuclei at Metaphase with Nocodazole (Nocodazole로 분열기에 동조된 생쥐 4세포기 핵 유래 재구축란의 발생에 관한 연구)

  • 권오룡;하야우굉
    • Journal of Embryo Transfer
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    • v.11 no.2
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    • pp.95-101
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    • 1996
  • The present study investigated the effect of treatment with nocodazole on the efficiency of cell cycle synchronization and development of mouse 4-cefl embryos. In addition, developmental ability of reconstituted embryos that received nuclei from 4-cell embryos synchronized with nocodazole at M phase was examined in vitro and in vivo. (1) When 4-cell blastorneres exposed to culture medium containing l$\mu$g /ml nocodazole for 2, 4, 6 and 8 hrs, 40% (40/10l), 75% (l19/159), 85% (87/102) and 97% (155/160) of nuclei were synchronized at M phase, respectively. (2) Treated with nocodazole for 4 hrs, the proportion of 4-cell embryos developed to blastocysts (98%, 60/61) was not significanUy different from that of the control embryos (98%, 196/201). However, the developmental ability of 4-cell embryos treated for 8 (87%, P<0.05)and 12 hrs (76%, P

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Impaired Spindle Checkpoint Response of Brca1-deficient Mouse Embryonic Fibroblasts (MEFs) to Nocodazole Treatment (Brca1 결손 세포주에서 nocodazole 처리에 의한 spindle checkpoint 활성화 연구)

  • Kim Myoung-Ae;Kim Hyunju;Yun Jeanho
    • Journal of Life Science
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    • v.16 no.1
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    • pp.12-16
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    • 2006
  • Genetic alternation of Brca1 predispose of breast and ovarian cancer. Brca1 plays critical role in cell cycle regulation following DNA damage. Previous studies revealed that Brca1 plays an important role in S phase and G2/M checkpoint regulation. However, whether Brca1 involves in spindle checkpoint is unclear. In this study, the role of Brca1 in cell cycle response following nocodazole, which is a reagent that depolymerizes microtubules and activates the spindle checkpoint, has been examined using wild type $p53^{-/-}\;and\;p53^{-/-}Brca1^{-/-}$ mouse embryonic fibroblasts (MEFs). While wild type and Brca1-proficient MEFs showed an acute mitotic arrest, Brca1-deficient MEFs failed to arrest at mitotic phase in response to nocodazole treatment. In double-thymidine block and nocodazole treatment experiment, a portion of $p53^{-/-}\;Brca1^{-/-}$ MEFs were clearly by-passed nocodazole induced mitotic arrest. Consistent with this, in morphologic analysis, $p53^{-/-}\;Brca1^{-/-}$ MEFs showed growing cell morphology after nocodazole treatment. Taken together, these results suggest that Brca1 protein is an important component for normal induction of spindlecheckpoint and impairment of Brca1 function could induce dysregulation of mitotic cell cycle that ultimately results in genomic instability.

초기 배아의 분리할구에서 중기 염색체상 획득 방법에 대한 연구: 염색체 변이로 인한 착상전 유전자 진단에서 보인자와 정상 핵형 구분을 위한 연구

  • 임천규;전진현;민동미;변혜경;김진영;궁미경;강인수
    • Proceedings of the Korean Society of Embryo Transfer Conference
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    • 2002.11a
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    • pp.105-105
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    • 2002
  • 염색체의 구조적 이상으로 인한 습관성 유산과 기형아의 출산을 예방하기 위해 착상전 배아에서 할구를 분석하여 정상적인 핵형을 가진 배아만을 이식하는 착상전 유전자 진단 (preimplantation genetic diagnosis, PGD)의 성공적인 임상 적용이 보고되고 있으며, 그 적용 범위가 확대되고 있다. 그러나 일반적인 간기의 핵상을 이용한 PGD에서는 형광직접보합법 probe의 제약으로 보인자와 정상적인 핵형을 구분할 수 없는 단점이 있다. 따라서 본 연구에서는 보다 정확한 PGD를 위해 생쥐 배아를 이용하여 분리한 할구에서 중기 염색체상을 획득하기 위해 미세소관 (microtubule) 형성 저해제를 처리하였으며, 이를 통해 확립된 방법을 인간의 PGD에 적용하고자 하였다. 과배란이 유도된 ICR 생쥐에서 4- 또는 8-세포기 배아를 수획하여 colcemid, nocodazole, vinblastine을 각각 0.1, 0.5, 1.0, 5.0$\mu$M을 처리하고, hoechst 33342로 염색하여 핵상을 관찰하여 최적의 농도를 결정하였다. 또한 각 미세소관 형성 저해제를 혼합 처리하여 가장 높은 중기 염색체상을 획득할 수 있는 혼합 처리를 결정하였다. 이렇게 결정된 혼합 처리 방법을 인간의 체외 수정 및 배아 이식술에서 획득된 3PN 배아에 처리하여 중기 염색체를 획득하였다. Colcemid, nocodazole, vinblastine 모두 1 $\mu$M이 최적 농도임을 확인할 수 있었다 (각각 96.3%, 92.0%, 98,4%). 미세소관 형성저해제를 혼합 처리하였을 경우 nocodazole과 vinblastine (각각 1$\mu$M)을 혼합 처리했을 때 중기 염색체 획득률(97.3%)이 가장 높았다. 인간의 3PN 배아에 1$\mu$M의 nocodazole과 vinblastine을 혼합 처리한 후, 113개의 할구를 분석하여 44개(38.9%)의 할구에서 중기 염색체를 확인할 수 있었다. 본 실험 결과를 통해 중기 염색체를 획득하기 위하여 미세소관 형성 저해제를 처리하는 방법은 생쥐의 배아에서는 효과적이지만, 인간의 배아에서는 그 효율이 다소 낮음을 알 수 있었다. 그러나 이 방법을 개선하여 인간의 할구에서 중기 염색체의 획득률을 높이고, 이를 염색체의 구조적 이상에 대한 착상전 유전자 진단에 적용한다면, 보인자와 정상의 핵상을 구분하여 정상의 핵상만을 갖는 배아의 이식을 통하여 더욱 정확한 착상전 유전자 진단을 시행할 수 있으리라 사료된다.

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Viability of Nuclear Transfer Bovine Embryos after Embryo Transfer (소 핵이식란의 이식 후 생존성에 관한 연구)

  • 정희태;임석기;박춘근;양부근;김정익
    • Korean Journal of Animal Reproduction
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    • v.22 no.2
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    • pp.153-161
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    • 1998
  • This study was conducted to examine the viability of nuclear transfer bovine embryos following embryo transfer. Donor embryos were treated with nocodazole to arrest their cell-cycle-stage at mitotic(M) phase. After releasing from nocodazole blastomeres were separated and transferred into the enucleated oocytes(BC), or cultured in medium with aphidicolin. Freshly cleaved blastomeres within 1.5h after cleavage(AC) and non-cleaved ones up to 3h after releasing from nocodazole(NC) were transferred into the enucleated oocytes. Blastocysts derived from nuclear transfer were transferred to Day 7~8 recipient cows. Some blastocysts were vitrified and thawed before embryo transfer. Developmental rates to the blastocyst stage were higher in AC(18.1%, P<0.05) than BC(8.6%) and NC(5.1%). Blastocyst development slightly enhanced with aphidicolin(1~2$\mu\textrm{g}$/ml) treatment(16.9~22.6%) compared to non treated control(11.1%). Survival rate fo vitrified nuclear transfer embryos after thawing was 75%(24/32). Twnety-three vitrified nuclear transfer embryos and 3 fresh ones were transferred to 23 recipients, 6 heads were pregnant and 1 male calf(24 kg) was born from a recipient cow recevied one vitrifiedthawed nuclear transfer embryo at 277 days after embryo transfer. This result suggests that the nuclear transfer embryos can developed to term after vitrification andembryo transfer.

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Development of an Efficient Method for Obtaining Metaphase Chromosomes in Individual Blastomeres of Mouse and Human Preimplantaion Embryos: Effect of Microtubule Depolymerizing Agents (착상전 배아의 분리된 할구에서 중기염색체 상을 획득하기 위한 효율적인 방법의 개발에 대한 연구: 미세소관 형성 저해제의 효과)

  • Lim, Chun-Kyu;Min, Dong-Mi;Lee, Hyoung-Song;Kim, Jin-Young;Koong, Mi-Kyoung;Kang, Inn-Soo;Jun, Jin-Hyun
    • Clinical and Experimental Reproductive Medicine
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    • v.30 no.2
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    • pp.111-118
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    • 2003
  • Objectives: The development of an useful method for obtaining metaphase chromosomes from a biopsied blastomere would allow differentiation between embryos with balanced and normal chromosome complements in the preimplantation genetic diagnosis for chromosomal translocations. This study was performed to evaluate the effects of microtubule depolymerizing agents (MTDAs) on the blastomeres of mouse and human preimplantation embryos, and to establish an effective method for obtaining metaphase chromosomes of biopsied blastomeres in human early embryos. Materials and Methods: Early embryos (2-4 cell stage) from superovulated mice (ICR strain) were collected and treated with single or mixture MTDAs, such as vinblastine, nocodazole and colcemid. After the treatment of MTDAs for 16 hours, the metaphase aquisition (MA) rates were evaluated by the observation of chromosome status with bis-benzimide or DAPI staining. The optimal condition from the above experiment was applied to human embryos, which were developed from abnormal fertilization (3-pronuclei). Fluorescence in-situ hybridization (FISH) with whole chromosome probes was conducted on the human metaphase chromosomes by the MTDAs. Results: In mouse embryos, the effective concentrations of each MTDAs for obtaining metaphase chromosomes were $1.0{\mu}M$ of vinblastine (20.3%), $5.0{\mu}M$ of nocodazole (28.1%) and $1.0{\mu}M$ colcemid (55.6%), respectively. The highest MA rate (91.2%) in the mouse embryos was obtained by a mixture of vinblastine ($1.0{\mu}M$) and nocodazole ($1.0{\mu}M$). In the human embryos, the metaphase chromosomes of blastomeres were obtained in 44 of 113 blastomeres (38.9%) by treatment of the mixture of vinblastine and nocodazole. FISH signals of the metaphase chromosomes were successfully observed in human individual blastomeres. Conclusions: The treatment of a mixture MTDAs for obtaining metaphase chromosomes was an efficient method, and the MA rate was above 90% in the mouse embryos. However, only a relatively small proportions of the blastomeres yielded metaphase chromosomes by the MTDAs in the human embryos. The inconsistent effects of MTDAs may be related to the variation of different species and the poor developmental potency of abnormally fertilized human embryos. We should develop more reliable and efficient methods for obtaining the metaphase chromosomes in the biopsied blastomeres of human preimplantation embryos.

Cytogenetic Properties of Bovine Reconstituted Embryos by Cell Cycle-Controlled Nuclear Transfer (소 수정란의 세포주기조절 핵이식에 의한 재구축배의 세포학적 특성)

  • Cheong, H.T.;Park, C.K.;Yang, B.K.;Kim, C.I.
    • Korean Journal of Animal Reproduction
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    • v.23 no.3
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    • pp.271-278
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    • 1999
  • This study was conducted to investigate the cytogenetic properties, in vitro development, and their relationship in the bovine reconstituted embryos following cell cycle-controlled nuclear transfer. Sixteen-cell stage embryos were treated by nocodazole, and after release from nocodazole treatment, their blastomeres were separated and allowed to subsequent cleavage. Blastomeres within 1.5 h post cleavage(hpc) and at 3hpc were transferred to enucleated oocytes at MII-phase or S-phase. Donor nuclei transferred into M II-phase recipients underwent various nuclear remodeling, such as extrusion of a polar body(PB)-like structure, premature chromosome condensation(PCC) and chromatin modifications. These nuclear remodeling patterns varied by the time post cleavage of donor blastomeres. Developmental rate to the blastocyst stage differed with time post cleavage of donor blastomeres and existence of a PB-like structure. Whereas do-nor nuclei transferred into S-phase oocytes did not undergo PCC and other major modifications, and their developmental potentials less depended on the nuclei types. This result confirms that the nuclear remodeling type differs with donor and recipient cell cycle stage, which affect the development of reconstituted bovine embryos.

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Studies on the Cloning of Calves by Nuclear Transplantation I. Effects of Cell Cycle, Fusion Media and Oxygen Concentration on the Developmental Competence (핵이식을 이용한 복제송아지 생산에 관한 연구 I. 세포주기, 융합배지 및 산소분압이 체외발육능에 미치는 영향)

  • 황우석;신태영;노상호;이병천
    • Journal of Embryo Transfer
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    • v.12 no.2
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    • pp.171-179
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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 transplant embryos. The oocytes collected from slaughterhouse ovaries were matured for 24 h and then enucleated and cultured to allow cytoplasmic maturation and gain activation competence. And then the donor embryos were treated for 12 h with 10 $\pi$g /ml nocodazole and 7.5 $\pi$g /ml cytochalasin B to synchronize the cell cycle stage at 26 h after the onset of culture. The blastomeres were transferred into the perivitelline space of the enucleated nocytes and blastomeres and oocytes were fused by electrofusion. The cloned embryos were then cultured in various conditions to allow further development. The age of the recipient(30 vs 40 h) had no significant effect on the fusion rates(82.4 vs 82.1%) and the developmental rates to morula /blastocyst(9.8 vs 11.0%). Effect of Nocodazole treatment on the donor cell cyle synchronization to improve the developmental rates of bovine nuclear transplant embryos was significantly higher than control group(21.4 vs 10.1%, p<0.05). Significant differences were in the percentage of fusion rates(72.9,77.1vs 61.9%) in three types of fusion medium(PBS(+), mannitol and sucrose, p<0.01). The developmental rates of bovine nuclear transplant embryos appeared to be highest in mSOF medium under 5% 0$_2$ condition, but no significant differences were found when compared with TCM199-BOEC and mSOF under two different oxygen ratio(5 and 20%).

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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 (핵이식을 이용한 복제송아지 생산에 관한 연구 II. 효율적인 복제수정란 생산을 위한 난자의 활성화, 공여핵의 세포주기조절 및 적정 배양조건)

  • Hwang, Woo-suk;Roh, Sang-ho;Lee, Byeong-chun
    • Korean Journal of Veterinary Research
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    • v.37 no.3
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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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RNA-sequencing Profiles of Cell Cycle-Related Genes Upregulated during the G2-Phase in Giardia lamblia

  • Kim, Juri;Shin, Mee Young;Park, Soon-Jung
    • Parasites, Hosts and Diseases
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    • v.57 no.2
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    • pp.185-189
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    • 2019
  • To identify the component(s) involved in cell cycle control in the protozoan Giardia lamblia, cells arrested at the G1/S- or G2-phase by treatment with nocodazole and aphidicolin were prepared from the synchronized cell cultures. RNA-sequencing analysis of the 2 stages of Giardia cell cycle identified several cell cycle genes that were up-regulated at the G2-phase. Transcriptome analysis of cells in 2 distinct cell cycle stages of G. lamblia confirmed previously reported components of cell cycle (PcnA, cyclin B, and CDK) and identified additional cell cycle components (NEKs, Mad2, spindle pole protein, and CDC14A). This result indicates that the cell cycle machinery operates in this protozoan, one of the earliest diverging eukaryotic lineages.

Effect of MLN8237, a Novel Aurora A Kinase Inhibitor, on the Spontaneous Fragmentation of Ovulated Mouse Oocytes

  • Park, Ji-Hun;Choi, Tae-Saeng
    • Reproductive and Developmental Biology
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    • v.35 no.4
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    • pp.499-502
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    • 2011
  • Aurora A kinase is a mitotic serine/threonine kinase whose proposed functions include the maturation of centrosomes, G2/M transition, alignment of chromosomes at metaphase, and cytokinesis. In this study, we investigated the effect of MLN8237, an aurora A kinase inhibitor, on the postovulatory aging of oocytes based on the frequency of oocyte fragmentation, cdk1 kinase activity, and cyclin B degradation. The fragmentation of ovulated oocytes during prolonged culture was inhibited by treatment with MLN8237 in a concentration-dependent manner. The frequency of fragmented oocytes was significantly lower in oocytes treated with 2 ${\mu}M$ MLN8237 (13%) than in control oocytes (64%) after two days of culture. Most of the control (non-fragmented) oocytes (91%) were activated after two days of culture. In comparison, only 22% of the MLN8237-treated oocytes were activated; the rest of the oocytes (78%) were still in metaphase with an abnormal spindle and dispersed chromosomes. Next, cdk1 activity and the level of cyclin B were examined. The level of cyclin B and cdk1 activity in MLN8237-treated oocytes were nearly equal to those in control oocytes. Our results indicate that MLN8237 inhibited the fragmentation of ovulated oocytes during prolonged culture, although it blocked the spontaneous decrease in activity of cdk1 and degradation of cyclin B. This mechanism of inhibition is different from that in oocytes treated with nocodazole, which have high levels of cdk1 activity and cyclin B.