• 제목/요약/키워드: Mouse embryonic development

검색결과 231건 처리시간 0.027초

Developmental Potential of Interspecies Nuclear Transferred Embryos using Mouse Embryonic Fibroblast In Vitro

  • B.S.Koo;Yoon, J.I.;Son, H.Y.;Kim, M.G.;Park, C.H.;Lee, S.G.;Lee, Y.I.;Lee, C.K.
    • 한국발생생물학회:학술대회논문집
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    • 한국발생생물학회 2003년도 제3회 국제심포지움 및 학술대회
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    • pp.109-109
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    • 2003
  • Even though success in birth of live offspring from nuclear transfer(NT) using somatic cells in many species, detailed information on processes or mechanisms of development are not well known. Cytoplasm of bovine oocyte has been known to support the development of nuclear transferred embryos using nuclear donor cells from different species. Therefore, interspecies NT might be used to find answers of some questions in basic aspect of nuclear transfer In this study, we examined the developmental potential of reconstructed embryos when bovine oocyte as a cytoplasm recipient and mouse embryonic fibroblast as a nuclear donor were used. The nuclear transfer units were aliocated in Group 1 (murine block media and normal media) and Group 2. (bovine block media and normal media). NT units were not blocked at 2-cell stage regardless of types of medium. On mouse media, poor development of interspecies NT units was observed compared to bovine media. However, as NT units cultured in bovine normal medium, embryos developed over 8-cell stage. Further studies performed to increase the developmental rate in condition of antioxidant treatment. Despite low development, bovine-murine interspecies nuclear transferred embryos could develop to blastocysts and they showed that blastocyts rate of antioxidant group was superior to those of non-antioxidant group. Next, we investigated gene expression pattern which is carried out for zygotic activation. The Xist gene is expressed in female mouse embryo after zygotic activation of 4-cell stage. But interspecies nuclear transferred embryos do not express Xist gene at 4-cell stage. As a result, it is suggested that the bovine cytoplasm controls the early preimplantation development in interspecies NT However, the development of later stages might require genomic control from transferred donor nucleus. Therefore, even though the involvement of several other factors such as mitochondrial incompatibility, effective development of embryos produced by interspecies NT requires proper genomic activation of donor nucleus after overcoming the cytoplasmic control of recipient oocytes.

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Effects of various freezing containers for vitrification freezing on mouse oogenesis

  • Kim, Ji Chul;Kim, Jae Myeoung;Seo, Byoung Boo
    • Journal of Animal Science and Technology
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    • 제58권3호
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    • pp.13.1-13.7
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    • 2016
  • Background: In the present study, various freezing containers were tested for mouse embryos of respective developmental stages; embryos were vitrified and then their survival rate and developmental rate were monitored. Mouse two cell, 8 cell, and blastula stage embryos underwent vitrification freezing-thawing and then their recovery rate, survival rate, development rate, and hatching rate were investigated. Methods: EM-grid, OPS, and cryo-loop were utilized for vitrification freezing-thawing of mouse embryos. Results: It was found that recovery rate and survival rate were higher in the group of cryo-loop compared to those of EM-grid (p < 0.05). Embryonic development rate, two cell embryos to blastocyst, as well as hatching rate were higher in the control group compared to the EM-grid group and OPS group (p < 0.05), yet no difference was noted between the control group and cryo-loop group. Development rate and hatching rate of eight cell morulae and blastocysts were all lower in the treatment groups than the control group whilst hatching rate of blastocysts was higher in the control group compared to the groups of EM-grid and OPS (p < 0.05); although the cryo-loop group was shown to be slightly higher than other groups, it was not statistically significant. Conclusions: In the study, we investigate effects of freezing containers on vitrified embryos of respective developmental stages; it was demonstrated that higher developmental rate was shown in more progressed (or developed) embryos with more blastomeres. There was however, no difference in embryonic development rate was shown amongst containers. Taken together, further additional studies are warranted with regards to 1) manipulation techniques of embryos for various vitrification freezing containers and 2) preventive measures against contamination via liquid nitrogen.

소 난관 상피세포의 배양 상층액에서 생쥐 배의 체외발달 (In Vitro Development of Mouse Embryos in Culture Supernatant of Bovine Oviductal Epithelial Cell)

  • 김선구
    • 한국가축번식학회지
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    • 제22권2호
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    • pp.111-117
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    • 1998
  • This study was conducted to examine the effect of culture supernatant of bovine oviductal epithelial cell(BOEC) on in vitro development of mouse embryos. To obtain the culture supernatant, ampullary epithelial cell, ithmic epithelial cell and ciliated eptithelial cell of bovine oviduct were cultured in Ham's F-10 su, pp.emented with 10% FCS. The development rates of mouse embryos to blastocyst stage were significantly(P<0.05) higher in BOEC-culture supernatant(72.3∼82.3%) than in Ham's F-10(50.7%). The proportions of embryonic development into hatched blastocysts were significantly(P<0.05) higher in ampullary cell supernatant(43.2%), ithmic cell supernatant(48.4%) and ciliated cell supernatant (27.7%) than in Ham's F-10(14.4%). On the other hand, the effect of ciliated cell supernatant was lower than those of other cell supernatants(P<0.05). And there was no difference between ampullary cell supernatant and ithmic cell supernatnat.

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Fasudil Increases the Establishment of Somatic Cell Nuclear Transfer Embryonic Stem Cells in Mouse

  • So, Seongjun;Karagozlu, Mustafa Zafer;Lee, Yeonmi;Kang, Eunju
    • 한국동물생명공학회지
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    • 제35권1호
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    • pp.21-27
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    • 2020
  • Somatic cell nuclear transfer derived embryonic stem cells (NT-ESCs) have significant advantages in various fields such as genetics, embryology, stem cell science, and regenerative medicine. However, the poor establishment of NT-ESCs hinders various research. Here, we applied fasudil, a Rho-associated kinase (ROCK) inhibitor, to develop somatic cell nuclear transfer (SCNT) embryos and establish NT-ESCs. In the study, MII oocytes were isolated from female B6D2F1 mice and performed SCNT with mouse embryonic fibroblasts (MEFs). The reconstructed NT-oocytes were activated artificially, and cultured to blastocysts in KSOM supplemented with 10 μM fasudil. Further, the blastocysts were seeded on inactivated MEFs in embryonic stem cell medium supplemented with 10 μM fasudil. A total of 26% of embryos formed into blastocysts in the fasudil treated group, while this ratio was 44% in the fasudil free control group. On the other hand, 30% of blastocysts were established NT-ESCs after exposure of fasudil, which was significantly higher than the control group (10%). The results suggest that fasudil reduced blastocyst development after SCNT due to inhibition of 2 cell cleavage while improved the establishment of NT-ESCs through the anti-apoptotic pathway.

유전자 조작 마우스 개발의 최신 연구 동향 (Current Progress in Generation of Genetically Modified Mice)

  • 송기덕;조병욱
    • 생명과학회지
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    • 제17권4호
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    • pp.587-592
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    • 2007
  • 생쥐 유전자를 과발현 시키거나 제거하는 유전자 조작 기술의 발달은 배 발생 단계나 출생 후 특정한 세포에서의 특정 단계에서의 유전자 기능을 이해하는 많은 기여를 하고 있다. 특히, 높은 상동 재조합 활성을 가지는 생쥐 배 줄기세포를 이용한 유전자 적중 기법은 인간 질환을 이해하는데 필수적인 동물 모델 개발에 중요한 기여를 하였다. 최근에는 Cre과 Flp와 같은 염기서열 특이적 재조합 효소와 라이겐드에 의한 조절 시스템의 도입으로 좀 더 정확하고 정교한 유전자 발현 조절을 위해 개발되어 복잡한 생명현상을 지배하는 메카니즘과 시간과 공간에서 작동하는 유전자의 기능을 이해하는데 많은 기여를 하고 있다. 마우스 게놈을 세밀하게 조작할 수 있는 새로운 분자생물학적 도구의 적용으로 in vivo상에서 유전자의 다양한 기능을 좀 더 정확하게 이해할 수 있는 기회가 열릴 것으로 기대된다.

Gene Expression Analysis of Gα13-/- Knockout Mouse Embryos Reveals Perturbations in Gα13 Signaling Related to Angiogenesis and Hypoxia

  • Park, Ji-Hwan;Choi, Sang-Dun
    • Genomics & Informatics
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    • 제9권4호
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    • pp.161-172
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    • 2011
  • Angiogenesis is regulated by a large number of molecules and complex signaling mechanisms. The G protein $G{\alpha}_{13}$ is a part of this signaling mechanism as an endothelial cell movement regulator. Gene expression analysis of $G{\alpha}_{13}$ knockout mouse embryos was carried out to identify the role of $G{\alpha}_{13}$ in angiogenesis signaling during embryonic development. Hypoxia-inducible response factors including those acting as regulators of angiogenesis were over expressed, while genes related to the cell cycle, DNA replication, protein modification and cell-cell dissociation were under expressed. Functional annotation and network analysis indicate that $G{\alpha}_{13}{^{-/-}}$ embryonic mice were exposed to hypoxic conditions. The present analysis of the time course highlighted the significantly high levels of disorder in the development of the cardiovascular system. The data suggested that hypoxia-inducible factors including those associated with angiogenesis and abnormalities related to endothelial cell division contributed to the developmental failure of $G{\alpha}_{13}$ knockout mouse embryos.

생쥐 초기배아에서 Interleukin-$1\beta$ 유전자의 발현에 미치는 수란관과 자궁내막세포의 영향 (The Effects of Oviduct and Uterine Epithelial Cells on the Expression of Interleukin-$1\beta$ Gene in Preimplantation Mouse Embryos)

  • 홍석호;계명찬;김종월;이정복;오은정;조동제;최규완;김문규
    • 한국발생생물학회지:발생과생식
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    • 제3권1호
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    • pp.59-67
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    • 1999
  • 초기배아의 발생과정동안 배아와 모체에서 발현되는 여러 cytokine은 착상을 위한 신호물질로 중요한 역할을 한다. 그 중 interleukin-1$\beta$ (IL-1$\beta$)는 배아와 모체간의 상호 신호전달체로서 성공적인 착상을 위한 필수적인 요소로 작용한다고 알려져 있다. 따라서 본 연구에서는 초기배아의 발생과정에 있어서 IL-1$\beta$ 유전자의 역할을 규명하기 위해 생쥐 초기배아에서의 IL-l$\beta$ 유전자의 발현양상을 역전사중합효소연쇄반응을 통해 조사하였고, IL-l$\beta$ 유전자의 발현에 미치는 수란관과 자궁내막세포의 영향을 밝혀보기 위해 공배양방법을 이용하였다. 그 결과 IL-l$\beta$ in vivo 에서는 4-세포기부터 포배기까지, in vitro에서는 상실배부터 부화중 포배기까지 발현하는 양상을 보였다. 또한 수란관과 자궁내막세포와의 공배양시 대조군과 비교하였을 때 실험군에서 IL-l$\beta$ 유전자의 발현이 촉진되었다. 이러한 결과는 IL-l$\beta$ 의 존재가 착상전 초기배아의 발생에 중요한 역할을 한다는 것을 의미한다. 또한 수란관과 자궁내막세포와의 공배양을 통해 IL-1$\beta$ 유전자의 발현이 수란관과 자궁요소에 의해 조절됨을 확인하였다.

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Transcriptional Properties of the BMP, $TGF-\beta$, RTK, Wnt, Hh, Notch, and JAK/STAT Signaling Molecules in Mouse Embryonic Stem Cells

  • Rho Jeung-Yon;Bae Gab-Yong;Chae Jung-Il;Yu Kweon;Koo Deog-Bon;Lee Kyung-Kwang;Han Yong-Mahn
    • Reproductive and Developmental Biology
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    • 제30권2호
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    • pp.143-156
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    • 2006
  • Major characteristics of embryonic stem cells (ESCs) are sustaining of sternness and pluripotency by self-renewal. In this report, transcriptional profiles of the molecules in the developmentally important signaling pathways including Wnt, BMP4, $TGF-\beta$, RTK, Hh, Notch, and JAK/STAT signaling pathways were investigated to understand the self-renewal of mouse ESCs (mESCs), J1 line, and compared with the NIH3T3 cell line and mouse embryonic fibroblast (MEF) cells as controls. In the Wnt signaling pathway, the expression of Wnt3 was seen widely in mESCs, suggesting that the ligand may be an important regulator for self-renewal in mESCs. In the Hh signaling pathway, the expression of Gli and N-myc were observed extensively in mESCs, whereas the expression levels of in a Shh was low, suggesting that intracellular molecules may be essential for the self-renewal of mESCs. IGF-I, IGF-II, IGF-IR and IGF-IIR of RTK signaling showed a lower expression in mESCs, these molecules related to embryo development may be restrained in mESCs. The expression levels of the Delta and HESS in Notch signaling were enriched in mESCs. The expression of the molecules related to BMP and JAK-STAT signaling pathways were similar or at a slightly lower level in mESCs compared to those in MEF and NIH3T3 cells. It is suggested that the observed differences in gene expression profiles among the signaling pathways may contribute to the self-renewal and differentiation of mESCs in a signaling-specific manner.

Comparative Morphological Study on the Embryonic and Neonatal Development of the Filiform Papillae and Teeth in Mice

  • Jeong, Soon-Jeong
    • 치위생과학회지
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    • 제20권2호
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    • pp.74-81
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    • 2020
  • Background: In the early stages of development, teeth and lingual papillae are induced and developed through special and complex epithelial-mesenchymal interactions. Tooth completion indicates the beginning of the weaning phase, and accordingly, many oral tissues and organs are completed, and it is thought that their developmental completion times are related to each other. The purpose of this study was to clarify the embryonic and neonatal development of the filiform papillae and mandibular molar tooth, and discuss the developmental relationship between these organs by comparing the developmental completion times. Methods: Embryos at embryonic day 15 (EM15), 17 (EM17), and 21 (EM21) and mice at neonatal day 1 (NE1), 5 (NE5), 10 (NE10), and 21 (NE21) were used for experimentation. Tissues dissected from embryos and mice were fixed, and processed for histological analysis. Sections from the tissues were stained with hematoxylin and eosin for observation under a light microscope. Results: Based on the histological analysis results, the developmental process of the lingual epithelium covering the dorsal surface of the tongue was classified into three stages: initiation, morphogenesis, and functional. The development of the filiform papillae begins at EM17; undergoes rapid morphological changes in epithelial cells at EM21, PN1 and PN5, and reaches the functional stage at PN10, which is the sucking phase. Tooth development begins at EM13 or 15 and is completed at NE21 through prenatal and postnatal development. Conclusion: The development of the filiform papillae was initiated late and completed quickly through embryonic and neonatal development in comparison with the mandibular molar tooth. The filiform papillae are considered to play an important role in sucking rather than mastication as it is completed in the sucking phase.

Vero Cell과의 공동배양이 체외에서 생쥐 배아발생에 미치는 영향 (The Effects of Vero Cell Co-culture on Mouse Embryo Development)

  • 이윤;박준홍;강혜나;김용봉;이응수;박성관
    • Clinical and Experimental Reproductive Medicine
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    • 제24권2호
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    • pp.233-239
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    • 1997
  • Embryos of most mammalian species grown in vitro would undergo developmental arrest at the approximate time of genomic activation. Stage-specific cell block and the resulting rapid loss of embryo viability in conventional culture media have limited the duration for which embryos may be cultured prior to transfer. As a result, embryos are usually transferred to the uterus at the 4-to 8-cell stage to avoid the loss of viability associated with long-term in vitro culture. Early transfer has led to asynchrony of the endometrium-trophectoderm interaction at the time of implantation and a resultant reduction in the rate of implantation. To overcome these problems, a variety of co-culture systems has been devised in which embryos can develop for a longer period prior to embryo transfer. Vero cells, derived from African green monkey kidney, share a common embryologic origin with cells from the genital tract. In addition, they are potentially safe to use, since they are highly controlled for viruses and other contaminants. Therefore, co-culture using Vero cells has been widely utilized to enhance embryo viability and development, although not without controversies. We thus designed a series of experiments to demonstrate whether Vero cells do indeed enhance mouse embryo development as well as to compare the efficacy of co-culturing mouse 1-cell embryos on Vero cell monolayer in both Ham's F-10 and human tubal fluid (HTF) culture media. 1-cell stage ICR mouse embryos were cultured either in the presence of Vero cells (Group A) or in conventional culture medium alone (Group B). In Ham's F-10 significantly more 3-to-8cell embryos developed in group A than group B (59.8 versus 10.0%; p<0.01). In contrast, there was no significant difference in embryonic development both group A and group B in HTF. However, significant differences were noted only in later embryonic stage (13 and 0%; p<0.05 of group A and B respectively, hatching or hatched). In Ham's F-10, we also could observe the beneficial effect of Vero cell on hatching process (70.7 and 42.1%; p<0.05 of group A and group B respectively).

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