• Title/Summary/Keyword: nuclear proliferation

Search Result 497, Processing Time 0.027 seconds

Effects of Baicalin on the Proliferation and Activity of Osteoblastic Cells (Baicalin이 조골세포의 생성 및 활성에 미치는 영향)

  • Ko, Seon-Yle
    • Journal of Oral Medicine and Pain
    • /
    • v.33 no.2
    • /
    • pp.105-110
    • /
    • 2008
  • Baicalin is a flavonoid compound isolated from the medicinal plant Scutellaria baicalensis. It is known to affect multiple biological functions, including of antibacterial, anti-viral, anti-inflammatory and analgesic effects. Baicalin can inhibit nuclear factor-kappaB activation. It has been reported that some flavonoids possess the effects of bone metabolism. The present study was undertaken to determine the possible cellular mechanism of action of baicalin in osteoblasts. The effects on the osteoblast were determined by measuring cell proliferation, cell viability, alkaline phosphatase activity, and osteoprotegerin secretion. Baicalin has no effect on the osteoblastic cell proliferation and cell viability. Baicalin treatment showed increase in alkaline phosphatase activity and osteoprotegerin secretion of osteoblasts. Thus, baicalin may be a regulatory protein within the bone.

THE STATUS AND PROSPECT OF DUPIC FUEL TECHNOLOGY

  • Yang Myung-Seung;Choi Hang-Bok;Jeong Chang-Joon;Song Kee-Chan;Lee Jung-Won;Park Geun-Il;Kim Ho-Dong;Ko Won-Il;Park Jang-Jin;Kim Ki-Ho;Lee Ho-Hee;Park Joo-Hwan
    • Nuclear Engineering and Technology
    • /
    • v.38 no.4
    • /
    • pp.359-374
    • /
    • 2006
  • Since 1991, Korea, Canada and United States have performed the direct use of spent pressurized water reactor (PWR) fuel in the Canada deuterium uranium (CANDU) reactors (DUPIC) fuel development project. Unlike the Tandem fuel cycle, which requires a wet reprocessing, the DUPIC fuel technology can directly refabricate CANDU fuels from the PWR spent fuel and, therefore, is recognized as a highly proliferation-resistant fuel cycle technology, which can be adopted even in non-proliferation treaty countries. The Korea Atomic Energy Research Institute (KAERI) has fabricated DUPIC fuel elements in a laboratory-scale remote fuel fabrication facility. KAERI has demonstrated the fuel performance in the research reactor, and has confirmed the operational feasibility and safety of a CANDU reactor loaded with the DUPIC fuel using conventional design and analysis tools, which will be the foundation of the future practical and commercial uses of DUPIC fuel.

An Analysis on the Trend of International Export control Regimes in Nuclear Industry (원자력산업에서 국제 수출통제 체제에 대한 동향 및 대응방안)

  • Ryu Jae-Su;Lee Byeong-Uk;Yang Maeng-Ho;Lee Han-Myeong
    • Proceedings of the Korea Technology Innovation Society Conference
    • /
    • 2004.05a
    • /
    • pp.203-212
    • /
    • 2004
  • International nuclear export control regimes have been continuously strengthening through revision of guidelines to prevent a horizontal nuclear proliferation. Recently, they have been trying to include sensitive technologies, information exchange on export permission and supply conditions to their guidelines. Therefore, this study analyzes current issues of the amended guidelines within international export control regimes and proposes a proper solution to effectively implement the national regulation.

  • PDF

Saturated fatty acid-inducible miR-103-3p impairs the myogenic differentiation of progenitor cells by enhancing cell proliferation through Twinfilin-1/F-actin/YAP1 axis

  • Mai Thi Nguyen;Wan Lee
    • The Korean Journal of Physiology and Pharmacology
    • /
    • v.27 no.3
    • /
    • pp.277-287
    • /
    • 2023
  • Actin dynamics play an essential role in myogenesis through multiple mechanisms, such as mechanotransduction, cell proliferation, and myogenic differentiation. Twinfilin-1 (TWF1), an actin-depolymerizing protein, is known to be required for the myogenic differentiation of progenitor cells. However, the mechanisms by which they epigenetically regulate TWF1 by microRNAs under muscle wasting conditions related to obesity are almost unknown. Here, we investigated the role of miR-103-3p in TWF1 expression, actin filament modulation, proliferation, and myogenic differentiation of progenitor cells. Palmitic acid, the most abundant saturated fatty acid (SFA) in the diet, reduced TWF1 expression and impeded myogenic differentiation of C2C12 myoblasts, while elevating miR-103-3p levels in myoblasts. Interestingly, miR-103-3p inhibited TWF1 expression by directly targeting its 3'UTR. Furthermore, ectopic expression of miR-103-3p reduced the expression of myogenic factors, i.e., MyoD and MyoG, and subsequently impaired myoblast differentiation. We demonstrated that miR-103-3p induction increased filamentous actin (F-actin) and facilitated the nuclear translocation of Yes-associated protein 1 (YAP1), thereby stimulating cell cycle progression and cell proliferation. Hence, this study suggests that epigenetic suppression of TWF1 by SFA-inducible miR-103-3p impairs myogenesis by enhancing the cell proliferation triggered by F-actin/YAP1.

원자력 이용개발에서의 기술혁신의 정책방향 고찰

  • 양맹호
    • Proceedings of the Korea Technology Innovation Society Conference
    • /
    • 2001.05a
    • /
    • pp.531-544
    • /
    • 2001
  • The use and development of nuclear energy has a long history more than 5o years and is facing a rapid changing environment in technological innovations in order to meet the requirements of energy supply, environmental conservation and social and political demands. The innovation of nuclear technologies are also necessary continuously in order to contribute for the progress of national economy and industry development, improvement of public health, progress of nation science and technology and furthermore is very important for the survival of nuclear industry and strengthening of competition of nuclear technologies. Major directions of the innovation of nuclear technologies would be the enhance ment of safety and economy of the use of nuclear energy, securing od nuclear proliferation-resistance, safe management of radioactive wastes, technology development for newly emerging markets and improvement of public health.

  • PDF

Imaging of Tumor Cell Proliferation using Radiofluorinated Ethyluracil and Deoxyadenosine (Radiofluorinated Ethyluracil과 Deoxyadenosine을 이용한 종양세포 증식의 영상화에 대한 연구)

  • Kim, Chang-Guhn;Yang, David J.;Kim, E. Edmund
    • The Korean Journal of Nuclear Medicine
    • /
    • v.30 no.4
    • /
    • pp.532-540
    • /
    • 1996
  • 목적 : 종양세포의 증식을 평가하기 위해 radiofluorinated ethyluracil (FEU)과 deoxyadenosine analogue(FAD)를 합성하여 종양의 영상화를 시도하였다. 대상 및 방법 : 5-(2-Fluoroethyl)uracil ([$^{18}F$]FEU)은 2, 4-dimethoxy-5-(2-hydroxyethyl) pyrimidine을 $K^{18}F$와 처리한 후 HBr로 가수분해하여 얻었으며 Fluorodeoxyadenosine은 adenosine의 triacetylated analogue를 $K^{18}F$와 처리하여 얻었다. 생물학적 조직분포는 유방암 세포(13762 NF, 100,000 cells per rat, im)를 쥐에 접종한 후 0.5, 1, 2 및 4시간에 주요장기를 적출하여 %ID/g을 측정하고 자가방사영상은 방사성의약품 투여 45분 후에 얻었다. PET 영상은 VX-2 종양을 접종한 가토를 이용하여 얻었다. In vitro cell proliferation assay는 사람의 말초단핵구를 이용하였다. 결 과 : In vitro assay상 ([$^{18}F$]FEU는 세포증식시 DNA/RNA에 결합함을 시사하였다. ([$^{18}F$]FAD와 ([$^{18}F$]FEU의 종양/비종양 방사능 섭취비는 시간경과에 따라 증가하였으며 ([$^{18}F$]FAD와 ([$^{18}F$]FEU를 이용한 자가방사영상과 ([$^{18}F$]FEU를 이용한 PET 영상에서 종양을 잘 관찰할 수 있었다. 결 론 : ([$^{18}F$]FAD 및 ([$^{18}F$]FEU를 이용하여 종양세포의 증식을 PET 영상에서 평가할 수 있으리라 사료된다.

  • PDF

NFI-C Is Required for Epiphyseal Chondrocyte Proliferation during Postnatal Cartilage Development

  • Lee, Dong-Seol;Roh, Song Yi;Choi, Hojae;Park, Joo-Cheol
    • Molecules and Cells
    • /
    • v.43 no.8
    • /
    • pp.739-748
    • /
    • 2020
  • Stringent regulation of the chondrocyte cell cycle is required for endochondral bone formation. During the longitudinal growth of long bones, mesenchymal stem cells condense and differentiate into chondrocytes. Epiphyseal chondrocytes sequentially differentiate to form growth-plate cartilage, which is subsequently replaced with bone. Although the importance of nuclear factor 1C (Nfic) in hard tissue formation has been extensively studied, knowledge regarding its biological roles and molecular mechanisms in this process remains insufficient. Herein, we demonstrated that Nfic deficiency affects femoral growth-plate formation. Chondrocyte proliferation was downregulated and the number of apoptotic cell was increased in the growth plates of Nfic-/- mice. Further, the expression of the cell cycle inhibitor p21 was upregulated in the primary chondrocytes of Nfic-/- mice, whereas that of cyclin D1 was downregulated. Our findings suggest that Nfic may contribute to postnatal chondrocyte proliferation by inhibiting p21 expression and by increasing the stability of cyclin D1 protein.