• Title/Summary/Keyword: 분자소개

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키토산 및 키토산올리고당 의생리 활성 기능

  • 박헌국
    • Proceedings of the Korean Journal of Food and Nutrition Conference
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    • 1999.06a
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    • pp.39-57
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    • 1999
  • Chitin은 새우나 게 등을 비롯한 해산 갑각류의 가공 폐기물로 버려지는 부패, 악취발생 등의 환경공해를 일으키며 처리비용 등 여러 가지 문제를 야기하던 물질이지만 최근에는 부가가치가 높은 chitosan 및 chitooligosaccarides로 가공되기 때문에 폐기물의 자원화와 미이용 자원의 개발 등 여러 가지 측면에서 기대가 모아지고 있는 다당류이다. 더욱이 chitin의 탈아세틸화로 얻어지는 chitosan은 polycation의 성질을 가지고 있어서 현재 응집제로서 각종 공업 분야에 널리 이용되고 있으며 최근에는 그 외에도 다양한 생리적 기능성을 가지고 있다는 사실이 밝혀지면서 의료, 생호학, 화장품, 식품, 화학 공업 및 농업용 등 다양한 분야에 응용 가능한 신소재로서 기대가 높아지고 있다. 그런, chitosan은 생리적 기능은 우수하지만 물에 용해되지 않고 점도가 높으며 떫은맛이 나기 때문에 식품을 비롯한 기타 응용분야에 이용이 제한되고 있다. 따라서 많은 연구자들은 이와 같은 물리적인 장애를 개선함으로써 chitosan 자체가 갖는 우수한 생리적 기능을 이용할 뿐만 아니라 항종양성을 비롯한 새로운 생리적 기능을 갖는 chitosan 유도체의 개발을 시도하고 있다. Chitosan 유도체 중에서도 chitooligosaccharides는 chitosan의 가수분해로 얻어지는 저분자 화합물이므로 물에 잘 용해도며 점도가 낮고 용액이 단맛을 낼뿐만 아니라 chitosan이 갖지 않는 새로운 생리적 기능성을 갖는 것으로 알려지면서 관심이 집중되기 시작하였다. 본고에서는 chitosan과 chitooligosaccarides의 생리 활성 기능에 대한 지금까지의 연구결과를 소개하고자 한다.에 대한 면밀한 사안이 밝혀지는 경우가 많지 않다. 또한 그 발생 경위나 원인요소에 대해서는 일반에게 공개되지 않고 있어, 우리가 실천하여 식중독을 예방할 수 있는 정보가 함께 제시되지 못하는 형편이다. 따라서 본 고에서는 최근 수년간 외국에서 학교급식을 비롯한 집단급식 등에서 발생한 식중독 사례를 중심으로 고찰, 분석하였다. 이로부터 식중독 발생에 기여한 주요 원인을 찾아내고 여기서 얻어지는 교훈을 토대로 식중독 발생을 예방 및 최소화할 수 있는 실천적 대처 방안을 모색해 보고자 한다.중의 E. coli O157:H7이 연관되어있다는 보고도 있다. 목장 방문시 원유를 마신 어린이에서 HUS가 유발하였고, 균분리 결과, 농장의 소와 어린이에서 유사한 E. coli O157:H7이 분리된 바 있다. 본 연자들은 베로톡신 유형, plasmid profiles, RFLP 분석, phage type을 기초로하여 소에서 분리된 E. coli O157:H7이 사람유래주와 매우 유사함을 확인하였다.mm 및 2-6mm 난포에서의 101개(67.8%) 및 47개(50.0%) 보다 매우 낮게 나타났다. 전체 회수 난포란수도 4등급이 59.1%(149/252)로써 1, 2, 3등급의 0.4% (1/252), 7.6%(19/252) 및 32.9%(83/252)보다 높게 나타났다. 1회 평균 회수 난포란은 $\leq$2mm 난포에서 4.8$\pm$3.7개로써 2-6mm(3.0$\pm$3.4개) 및 $\geq$6mm (0.3$\pm$0.6개)보다 높았으며, 1회당 평균 8.1$\pm$5.1개의 난포란을 회수하였다. in

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Liquid Crystalline Technology of Cosmetic Industry and Moisturizing Effect of Skin (화장품 산업의 액정기술과 피부보습효과)

  • 김인영;조춘구;유희창
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.30 no.2
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    • pp.279-294
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    • 2004
  • This study described about a liquid crystalline technology that is used in cosmetics industry. Various intermediate phases may exist between solid and liquid. At high surfactant concentration, several liquid crystalline phases can be made to have formed. Although molecular arrangement with crystallization is not regular, it is known that more relative regular state is liquid crystalline or meso-phase than liquid phase. Usually, it described in detail about manufacturing method that explained about a kind of liquid crystalline technology in cosmetics, a new liquid crystalline technology, and makes liquid crystalline. Specialty, it introduced about kind of special an emulsifier to form liquid crystalline. There were hydrogenated lecithin, ceramide, dipalmitoylhydroxyproline, DEA-cetyl phosphate, Gemini-surfactant in representative raw material to form liquid crystalline. Liquid crystalline extent that used polarization microscope to observe formation, and appears best from 400times, 600times, 1,000times well appeared. Also, droplet particle size that liquid crystal is made best 1.0-10.0$\mu\textrm{m}$ be. General emulsion more than superior result that measures the skin moisturizing effect to take advantage of liquid crystalline technology of vitamin was seen. As presence at a clinical result, wave and general emulsion more than superior result (more than 20%) that measures skin moisturizing effect about liquid crystalline of vitamin B$\_$5/ were seen (ANOMA t-test, p<0.05)

The Potential 'O-GlcNAc-P'om' ('O-GlcNAc-P'om'의 존재 가능성)

  • Moon, Il Soo;Lee, HyunSook;Lee, Hyung Jong
    • Journal of Life Science
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    • v.23 no.2
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    • pp.324-331
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    • 2013
  • The addition and removal of N-acetylglucosamine (GlcNAc) molecules on serine or threonine residues of a protein is called O-GlcNAcylation. This post-translational modification occurs on both cytoplasmic and nuclear protein, and is fast and reversible as comparable to phosphorylation. In contrast to the phospho-signaling cycles, this emerging moon-lightening signaling is cycled by only two enzymes, O-GlcNAc transferase (OGT) and O-GlcNAcase (OGA). The simple machinery is a good evolutionary adaptation of a cell for quick accommodation to continuously fluctuating intra- and extracellular microenvironments. Rather than "switching" on or off a specific proteins - this would be done by phosphorylation where numerous specific kinases and phosphatases are involved - O-GlcNAcylation would play a "rheostat" which would be much more delicately increase or decrease the efficacy of signal transductions in response to cellular nutrient and stress conditions. Interestingly, recent evidence indicates that O-GlcNAc is further modified by phosphorylation. The O-GlcNAc-P will upgrade the modulation efficiency of cellular processes to continuous 'analogue' level. So far, only one protein AP180 was reported to have O-GlcNAc-P on Thr310. But, proteomic data from our laboratory indicate that there are multiple O-GlcNAc-P proteins, constituting "O-GlcNAc-P'om". This will focus on the possibility of existence of "O-GlcNAc-P'om".

Research status of transcription factors involved in controlling gene expression by nitrate signaling in higher plants (고등식물의 질산시그널에 의한 유전자 발현제어 관련 전사인자의 연구현황)

  • Jung, Yu Jin;Park, Joung Soon;Go, Ji Yun;Lee, Hyo Ju;Kim, Jin Young;Lee, Ye Ji;Nam, Ki Hong;Cho, Yong-Gu;Kang, Kwon Kyoo
    • Journal of Plant Biotechnology
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    • v.48 no.3
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    • pp.124-130
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    • 2021
  • Nitrate is an important nutrient and signaling molecule in plants that modulates the expression of many genes and regulates plant growth. In this study, we cover the research status of transcription factors related to the control of gene expression by nitrate signaling in higher plants. Nitrate reductase is a key enzyme in nitrogen assimilation, as it catalyzes the nitrate-to-nitrite reduction process in plants. A variety of factors, including nitrate, light, metabolites, phytohormones, low temperature, and drought, modulate the expression levels of nitrate reductase genes and nitrate reductase activity, which is consistent with the physiological role if. Recently, several transcription factors controlling the expression of nitrate reductase genes have been identified in higher plants. NODULE-INCEPTION-Like Proteins (NLPs) are transcription factors responsible for the nitrate-inducible expression of nitrate reductase genes. Since NLPs also control the nitrate-inducible expression of genes encoding the nitrate transporter, nitrite transporter, and nitrite reductase, the expression levels of nitrate reduction pathway-associated genes are coordinately modulated by NLPs in response to nitrate. Understanding the function of nitrate in plants will be useful to create crops with low nitrogen use.

Layered Double Hydroxide Nanoparticles for Bio-Imaging Applications (LDH 나노입자 기반의 바이오 이미징 소재)

  • Jin, Wenji;Ha, Seongjin;Lee, Dongki;Park, Dae-Hwan
    • Korean Chemical Engineering Research
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    • v.57 no.4
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    • pp.445-454
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    • 2019
  • Layered double hydroxides (LDHs) nanoparticles have emerged as novel nanomaterials for bio-imaging applications due to its unique layered structure, physicochemical properties, and good biocompatibility. Bio-imaging is one of the most important fields for medical applications in clinical diagnostics and therapeutics of various diseases. Enhanced diagnostic techniques are needed to realize new paradigm for next-generation personalized medicine through nanoscale materials. When nanotechnology is introduced into bio-imaging system, nanoparticle probes can endow imaging techniques with enhanced ability to obtain information about biological system at the molecular level. In this review, we summarize structural features of LDH nanoparticles with current issues of bio-imaging system. LDH nanoparticle probes are also discussed through in vitro as well as in vivo studies in various bio-imaging techniques including fluorescence imaging, magnetic resonance imaging (MRI), positron emission tomography (PET), and computed X-ray tomography (CT), which will have the potential in the development of the advanced nanoparticles with high sensitivity and selectivity.

Clinical Microscopy: Performance, Maintenance and Laser Safety (임상에서의 현미경: 작동, 유지보수 및 레이저 안전)

  • Lee, Tae Bok
    • Korean Journal of Clinical Laboratory Science
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    • v.51 no.2
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    • pp.125-133
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    • 2019
  • A microscope is the fundamental research and diagnostic apparatus for clinical investigation of signaling transduction, morphological changes and physiological tracking of cells and intact tissues from patients in the biomedical laboratory science. Proper use, care and maintenance of microscope with comprehensive understanding in mechanism are fully requested for reliable image data and accurate interpretation for diagnosis in the clinical laboratory. The standard operating procedure (SOP) for light microscopes includes performance procedure, brief information of all mechanical parts of microscopes with systematic troubleshooting mechanism depending on the laboratory capacity. Maintenance program encompasses cleaning objective, ocular lenses and inner optics; replacement and calibration of light source; XY sample stage management; point spread function (PSF) measurement for confocal laser scanning microscope (CLSM); quality control (QC) program in fluorescent microscopy; and systematic troubleshooting. Laser safety is one of the concern for medical technologists engaged in CLSM laboratory. Laser safety guideline based on the laser classification and risk level, and advisory lab wear for CLSM users are also expatiated in this overview. Since acquired image data presents a wide range of information at the moment of acquisition, well-maintained microscopes with proper microscopic maintenance program are impulsive for its interpretation and diagnosis in the clinical laboratory.

Current Perspectives on the Effects of Plant Growth-promoting Rhizobacteria (식물생장촉진 근권미생물의 영향에 대한 연구 현황 및 전망)

  • Le, Thien Tu Huynh;Jun, Sang Eun;Kim, Gyung-Tae
    • Journal of Life Science
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    • v.29 no.11
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    • pp.1281-1293
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    • 2019
  • The rhizosphere is the active zone where plant roots communicate with the soil microbiome, each responding to the other's signals. The soil microbiome within the rhizosphere that is beneficial to plant growth and productivity is known as plant growth-promoting rhizobacteria (PGPR). PGPR take part in many pivotal plant processes, including plant growth, development, immunity, and productivity, by influencing acquisition and utilization of nutrient molecules, regulation of phytohormone biosynthesis, signaling, and response, and resistance to biotic- and abiotic-stresses. PGPR also produce secondary compounds and volatile organic compounds (VOCs) that elicit plant growth. Moreover, plant roots exude attractants that cause PGPR to aggregate in the rhizosphere zone for colonization, improving soil properties and protecting plants against pathogenic factors. The interactions between PGPR and plant roots in rhizosphere are essential and interdependent. Many studies have reported that PGPR function in multiple ways under the same or diverse conditions, directly and indirectly. This review focuses on the roles and strategies of PGPR in enhancing nutrient acquisition by nutrient fixation/solubilization/mineralization, inducing plant growth regulators/phytohormones, and promoting growth and development of root and shoot by affecting cell division, elongation, and differentiation. We also summarize the current knowledge of the effects of PGPR and the soil microbiota on plants.

Agricultural application of natural polymers chitin and chitosan (천연고분자 키틴·키토산의 농업적 활용)

  • Jung, Woo-Jin
    • Food Science and Industry
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    • v.53 no.1
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    • pp.33-42
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    • 2020
  • In accordance with the recent trend of environmentally friendly agricultural policy, product registration of agricultural chitosan among the organic materials has been displayed in various forms such as soil improving agent, crop growth, and pest control. Chitin production industry is expected to bring competitiveness by producing low-quality and low-cost chitin for agriculture, rather than high-quality and high-cost for food, medical products. Since there are various soil microorganisms that can decompose chitin and chitosan in farm soil where crops are produced, it can be applied usefully to agricultural sites suitably for crop growth and pest control using chitin and chitosan as substrates. The purpose of this study is to compare and analyze the registration status of organic materials companies using chitin and chitosan raw materials in the organic materials information system of the NAQS, and to provide an opportunity to further expand the agricultural use of domestic chitin and chitosan.

Mechanism of Human Endogenous Retrovirus (HERV) in Inflammatory Response (인간 내생 레트로바이러스(Human Endogenous Retrovirus, HERV)의 염증반응 조절 기작)

  • Ko, Eun-Ji;Cha, Hee-Jae
    • Journal of Life Science
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    • v.31 no.8
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    • pp.771-777
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    • 2021
  • Human endogenous retroviruses (HERVs) were inserted into the human genome millions of years ago but they are currently inactive and non-infectious due to recombinations, deletions, and mutations after insertion into the host genome. Nonetheless, recent studies have shown that HERV-derived elements are actually involved in physiological phenomena and certain diseases including cancers. Among the various physiological phenomena related to HERV-derived elements, it is necessary to focus on inflammatory response. HERV-derived elements have been reported to be directly involved in various inflammatory diseases, including autoimmune diseases such as rheumatoid arthritis, multiple sclerosis, amyotrophic lateral sclerosis, and Sjogren's syndrome. As a mechanism for regulating inflammation through HERV-derived elements, the possibility that HERV-derived elements may cause nonspecific innate immune processes and that HERV-derived RNA or proteins may cause selective signaling mechanisms through specific receptors can be considered. However, the mechanism through which HERV-derived elements regulate inflammatory response, such as how silent HERV elements are activated in inflammatory response and what factors and signaling mechanisms are involved in HERV-derived elements, have not been identified to date, making it difficult to study the onset of HERV-related inflammatory disease. In this review, we introduce HERV-related autoimmune diseases and propose the mechanisms of HERV-derived elements at the molecular level of HERV in inflammatory response.

Molecular Action of Prostaglandin to Mediate Insect Immunity and Its Application to Develop Novel Insect Control Techniques (곤충 면역반응을 중개하는 프로스타글란딘의 분자적 기작과 해충방제 응용)

  • Kim, Yonggyun
    • Korean journal of applied entomology
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    • v.61 no.1
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    • pp.173-195
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    • 2022
  • Like vertebrates, insects synthesize various eicosanoids after the committed catalytic step of phospholipase A2 (PLA2). However, the subsequent biosynthetic steps exhibit some deviation from those of vertebrates. Due to little composition of arachidonic acid in insect phospholipids, PLA2 releases linoleic acid, which is another polyunsaturated fatty acid and relatively rich in insect phospholipids, to synthesize arachidonic acid via chain extension and desaturation. Resulting arachidonic acid is then oxygenated into a prostaglandin (PG), PGH2, by a specific peroxidase called peroxynectin, but not by cyclooxygenase. PGH2 is then isomerized to various PGs such as PGA2, PGD2, PGE2, PGI2, and a thromboxane (TXB2). All four epoxyeicosatrienoic acids such as 5,6-EET, 8,9-EET, 11,12-EET, and 14,15-EET are also synthesized from arachidonic acid by oxygenation of vertebrate types of monooxygenases. However, the other type of eicosanoids called leukotrienes are found in insect tissues but their synthetic pathway is unclear. Eicosanoids mediate various insect physiological processes such as metabolism, excretion, immunity, and reproduction. Thus, identification of novel compounds interrupting eicosanoid biosynthesis would be a novel approach to develop insecticides. This review focuses on PGs and their immune mediation.