• Title/Summary/Keyword: 배아세포

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Effect of Maternal Age on Chromosome Aberrations and Telomere Quantity in Chick Embryos (닭의 모체 연령에 따른 생산 배아의 염색체 이상 빈도 및 텔로미어 함량 분석)

  • Lee, Soo-Hee;Subramani, Vinod K.;Sohn, Sea-Hwan
    • Korean Journal of Poultry Science
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    • v.36 no.4
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    • pp.293-300
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    • 2009
  • The rate of fetus with abnormal chromosomes increase with maternal age. Nondisjunction of aging oocyte chromosome is a major reason for the increased rate of abnormalities. Telomeres are the ends of eukaryotic chromosome, which are essential for chromosome stability and are related in cell senescence. This study was carried out to analyze the chromosome aberration rate and amount of telomeric DNA in chick embryo along with maternal age. Fertilized eggs and blood were sampled from White Leghorn layers starting at 20 weeks through to 70 weeks age at 10 weeks interval. Chromosome aberration rate was analyzed by karyotyping. The amounts of telomeric DNA in embryonic cells and lymphocytes were quantified by Quantitative Fluorescence in situ Hybridization method. The chromosome aberration rate in chick embryos significantly differed with maternal age. The chromosome aberration rate increased at early laying period and beyond 70 weeks of maternal age. Therefore, chromosome aberration rate was affected by maternal age due to ovulated oocytes state. However, the amount of telomeric DNA on embryonic cells did not differ significantly with maternal age. Thus, maternal age does not affects telomere quantity in their embryos due to cellular reprograming at early embryonic stage after fertilization.

DNA Methylation in Development (배아 발생에서의 DNA 메칠화)

  • Choe, Jin
    • Journal of Genetic Medicine
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    • v.5 no.2
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    • pp.100-104
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    • 2008
  • DNA methylation is one of many epigenetic mechanisms that regulate gene expression in the human body. From the view of epigenetics, there are two phases of development, one for germ cell development and another for embryo development. This review will discuss the basic mechanism of methylation, its role in gene expression, and the role of methylation in embryonic reprogramming. Methylation of genes is very critical to embryo development and should be explored further in order to increase our understanding of development.

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Myelination and Demyelination of Schwann cells and Neuron cells (슈반세포와 뉴런세포의 수초화와 탈수초화)

  • Kim, Hyun Joo;Kim, Ji-Young;Hong, Seong-Karp
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.10a
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    • pp.830-833
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    • 2015
  • Schwann cells and neuron cells from dorsal root ganglion (DRG) of rat embryos (E16) were isolated and purified in vitro system. The purified DRG cells with anti-mitotic agents and purified Schwann cells, respectively, were cocultured and then consummated myelination processing. This myelination system was treated by M. leprae-specific phenolic glycolipid-1 (PGL-1) and then accomplished demyelination system. We compared with myelination and demyelination using neurofilament of monoclonal antibody.

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A Study of Alkaline Phosphatase Activity on the Preimplantation Mouse Embryos (초기 흰쥐 배아의 발생단계에 있어서의 Alkaline Phosphatase의 활성에 관한 연구)

  • Cho, Wan-Kyoo;Lee, Chung-Choo;Kim, Hee-Kwon
    • The Korean Journal of Zoology
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    • v.27 no.1
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    • pp.1-12
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    • 1984
  • In order to investigate the alkaline phosphtase activities in the mouse oocytes in matuation and preimplantation embryos in developing in culture, the enzyme activities were measured by means of biochemical method. The in vitro effect of levamisole which is known as an inhibitor of the lakaline phosphatase was also observed on the oocyte in maturation and the embryos in early embryogenesis. The results obtained were as follows: The enzyme activity was not detected in the embryos unitl the stage of 4-cell, but it appeared first in the 4-cell embryos and the level of the activity was steady through up to the blastocyst. Levamisole inhibited the alkaline phosphatase activity in the blastocyst, and the activity decreased by almost 70% at 10 mM and 50% at 1 mM as compared with the control. In addition, levamisole inhibited completely the formation of polar body by the oocytes. and induced degeneration of the preimplantation embryos at the dose of 0.5 mM or higher.

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