• 제목/요약/키워드: chemical-biological protection

검색결과 119건 처리시간 0.026초

경사기능재료의 굽힘강도 평가에 관한 연구 (A Study on Evaluation of Bending Strength in FGM)

  • 송준희;김홍건
    • 한국생산제조학회지
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    • 제18권6호
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    • pp.658-663
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    • 2009
  • Metal/ceramic composites structures have many attractive properties with great potential for applications that demand high stiffness as well as chemical and biological stability, thermal and electrical insulation. They are currently in use for mechanical and thermal protection in cutting tool and engine parts. Thus, determination of adhesive properties for coating part is one of the most important problems for the extension of the use of coated materials. In this work, bending strength of Functionally Graded Materials(FGM) are evaluated by means of bending strength tester. The graded layer according to the load condition showed the change of the bend strength.

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화생방보호의 설계 개념 연구 (A Study on the Design Concept for NBC Clothing)

  • 강재성;서현관;박현배;류삼곤;박상훈
    • 한국군사과학기술학회지
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    • 제15권2호
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    • pp.193-200
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    • 2012
  • The selection factors of the protective clothing against the NBC agents are the protection(chemical, biological, TIMs), duration, weight/comfort, dexterity/mobility, size, visibility, cleaning and unit cost, etc. To develop the NBC protective clothing, we should need to review about the design concepts of the protective materials(shell and liner fabric) and form. This paper identify an important factors for the protective materials and form, and presents design strategies for important factors based on the evaluation results of the materials and the form.

Characterization of Antibiotic Substance Produced by Serratia plymuthica A21-4 and the Biological Control Activity against Pepper Phytophthora Blight

  • Shen, Shun-Shan;Piao, Feng-Zhi;Lee, Byong-Won;Park, Chang-Seuk
    • The Plant Pathology Journal
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    • 제23권3호
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    • pp.180-186
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    • 2007
  • The biocontrol agent, Serratia plymuthica A21-4, has been developed for controlling pepper Phytophthora blight. Serratia plymuthica A21-4 strongly inhibits the mycelial growth, zoospore formation, and cyst germination of Phytophthora capsici in vitro. The application of a cell suspension of strain A21-4 to pepper plants in pot experiments and in greenhouse successfully controlled the disease. The bacteria produced a potent antifungal substance which was a key factor in the suppression of Phytophthora capsici. The most active chemical com-pound was isolated and purified by antifungal activity-guided fractionation. The chemical structure was identified as a chlorinated macrolide $(C_{23}H_{31}O_8Cl)$ by spectroscopic (UV, IR, MS, and NMR) data, and was named macrocyclic lactone A21-4. The active compound significantly inhibited the formation of zoosporangia and zoospore and germination of cyst of P. capsici at concentrations lower than $0.0625{\mu}g/ml$. The effective concentrations of the macrocyclic lactone A21-4 for $ED_{50}$ of mycelial growth inhibition were $0.25{\mu}g/ml,\;0.25{\mu}g/ml,\;0.30{\mu}g/ml \;and\;0.75{\mu}g/ml$ against P. capsici, Pythium ultimum, Sclerotinia sclerotiorum and Botrytis cinerea, respectively.

고려인삼의 화학성분에 관한 고찰 (Recent Studies on the Chemical Constituents of Korean Ginseng (Panax ginseng C. A. Meyer))

  • 박종대
    • Journal of Ginseng Research
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    • 제20권4호
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    • pp.389-415
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    • 1996
  • Panax ginseng C.A. Meyer(Araliaceae) has been traditionally used as an expensive and precious medicine in oriental countries for more than 5, 000 years. Ginseng saponin isolated from the root of Panax ginseng have been regarded as the main effective components responsible for the pharmacological and biological activities. Such as antiaging effects. antidiabetic effects anticancer effects. Protection against physical and chemical stress. Analgesic and antipyretic effects. Effects on the central nervous system, tranquilizing action and others. Thirty kinds of ginsenosides have been so far isolated from ginseng saponin and their chemical structures have been elucidated since 1960's. Among which protopanaxadiol type is 19 kinds. protopanaxatriol type. 10 kinds and oleanane type, one. Since ginsenosides are generally labile under acidic conditions ordinary acid hydrolysis is always accompanied by many side reactions, such as epimerization. hydroxylation and cyclization of side chain of the sapogenins Especially. it is well known that C-20 glycosyl linkage of ginsenoside was hydrolysed on heating with acetic acid to give an equilibrated mixture of 20(S) and 20(R) epimers. And also, the chemical transformations of the secondary metabolites have appeared during the steaming process to prepare red ginseng. Indicating demalonylation of malonyl ginsenosides, elimination of glycosyl residue at C-20 and isomerization of hydroxyl configuration at C-20. But these studies have not provided a comprehensive picture in explaning how these ginsenosides showed val'iotas pharmacological activities of ginseng. Though some of them have been involved in the mechanism of pharmacological actions. Recently, non-saponin components have received a great deal of attention for their antioxidant, anticancer antidiabetic, immunomodulating. anticomplementary activities and so on. To meet the demand for such wide applications, studies on the non-saponin components play an important role in providing a good evidence of pharmacological and biol ogical activities. Among the non-saponin constituents of Korean ginseng, polyacetylenes, phenols. Sesquiterpenes, alkaloids. polysaccharides oligosaccharides, oligopeptides and aminoglycosides together with ginsenosides of terrestrial part are mainly described.

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PET분해효소(PETase) 과발현 전세포 촉매의 해양미세플라스틱 생분해 활성 연구 (Biodegradation of marine microplastics by the whole-cell catalyst overexpressing recombinant PETase)

  • 김현지;박종하;박애란;이대희;전준호;권혁택;임성인
    • 한국해양바이오학회지
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    • 제14권2호
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    • pp.133-142
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    • 2022
  • The increased production and consumption of polyethylene terephthalate (PET)-based products over the past several decades has resulted in the discharge of countless tons of PET waste into the marine environment. PET microparticles resulting from the physical erosion of general PET wastes end up in the ocean and pose a threat to the marine biosphere and human health, necessitating the development of new technologies for recycling and upcycling. Notably, enzyme-mediated PET degradation is an appealing option due to its eco-friendly and energy-saving characteristics. PETase, a PET-hydrolyzing enzyme originating from Ideonella sakaiensis, is one of the most thoroughly researched biological catalysts. However, the industrial application of PETase-mediated PET recycling is limited due to the low stability and poor reusability of the enzyme. Here we developed the whole-cell catalyst (WCC) in which functional PETase is attached to the outer membrane of Escherichia coli. Immunoassays are used to identify the surface-expressed PETase, and we demonstrated that the WCC degraded PET microparticles most efficiently at 30℃ and pH 9 without agitation. Furthermore, the WCC increased the PET-degrading activity in a concentration-dependent manner, surpassing the limited activity of soluble PETase above 100 nM. Finally, we demonstrated that the WCC could be recycled up to three times.

지황(地黃)과 발효(醱酵) 지황(地黃)의 생리활성 비교 연구 (Comparison of Biological Activities on Rehmanniae Radix and Fermented Rehmanniae Radix)

  • 김은혜;김경신;채순기;김병수;강정수
    • 동의생리병리학회지
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    • 제26권3호
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    • pp.306-313
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    • 2012
  • Herbal medicines are medicinal products containing a single or a mixture of two or more different herbal substances or herbal preparations as active principles. Recently, much attention has been paid to developing various kinds of fermented herbal extracts, a new type of traditional herbal medicine in the field of Korean traditional medicine. The fermentation of medicinal herbs is intended to exert a favorable influence on bioestability, bioavaliablilty and pharmacological activity of herbal extract in the gastrointestinal tract as well as intensifying the nutritional and pharmacological aspects of the medicinal herbs. The purpose of this study was to investigate biological activities of fermented Rehmanniae Radix by lactic acid bacteria at $30^{\circ}C$ for 3 days in comparison with those for Rehmanniae Radix The fermented Rehmanniae Radix exhibited different chemical profile to Rehmanniae Radix generated with HPLC, indicating production of new ingredients during fermentation. Rehmanniae Radix served as good nutritional sources for the growth of lactic acid bacteria showing increased number of bacteria during fermentation. Toxic effect of the fermented Rehmanniae Radix to cells were not seen judged by the MTT assay. The fermented Rehmanniae Radix exhibited better antioxidant effect than non-fermented Rehmanniae Radix analyzed by a SOD-likely assay. Both hypoglycemic and hypotensive effects of the fermented Rehmanniae Radix were also detected and better than those for Rehmanniae Radix in showing dose-dependent inhibitory effects on alpha-glucosidase and ACE, respectively. In conclusion, fermented Rehmanniae Radix appears to have more biological activities than non-feremented Rehmanniae Radix showing not only antioxidant effect but also cardiovascular protection.

In vitro Screening of Jeju Medicinal Plants for Cosmeceutical Materials

  • Kim, Sang-Suk;Hyun, Chang-Gu;Lee, Jong-Sung;Lim, Ji-Hee;Kim, Ji-Young;Park, Deok-Hoon
    • Journal of Applied Biological Chemistry
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    • 제50권4호
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    • pp.215-220
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    • 2007
  • One of the important functions of skin is protection from harmful environments. Many studies have explored how to prevent skin from wrinkling and the occurrence of pigmentation changes. Skin wrinkling and pigmentation changes could be caused by unusual disruption of connective tissue, the formation of free radicals and ultraviolet radiation. In this study, extracts obtained from 254 different kinds of Jeju medicinal plants were screened for inhibitory effects on tyrosinase and elastase, and for free radical scavenging effects. Four herbs, Phormium tenax, Morus bombycis, Morus alba, and Cudrania tricuspidata, were potent inhibitors of tyrosinase ($IC_{50}$ values 4.62, 5.46, 8.17, and 64.17 ${\mu}g$/mL, respectively). Aleurites fordii [$IC_{50}$: 5.29 ${\mu}g$/mL, 1,1-diphenyl-2-picrylhydrazyl (DPPH)], Distylium racemosum ($IC_{50}$: 6.14 ${\mu}g$/mL), Acer palmatum ($IC_{50}$: 5.44 ${\mu}g$/mL), and Spiraea salicifolia ($IC_{50}$: 5.25 ${\mu}g$/mL) showed good antioxidative effects. Furthermore, Distylium racemosum ($IC_{50}$: 7.51 ${\mu}g$/mL), Diospyros kaki ($IC_{50}$: 15.1 ${\mu}g$/mL), Cornus macrophylla ($IC_{50}:$ 16.59 ${\mu}g$/mL), and Psidium guajava ($IC_{50}$: 40.25 ${\mu}g$/mL) exhibited potent inhibitory effects on elastase. These results suggest that medicinal plants possessing several biological activities may be potent inhibitors of the processes involved in pigmentation increases and aging. Further investigations will focus on in vivo assays and on the chemical identification of the major active components responsible for whitening and anti-aging activity in the screened efficacious extracts.

Major ginsenosides from Panax ginseng promote aerobic cellular respiration and SIRT1-mediated mitochondrial biosynthesis in cardiomyocytes and neurons

  • Huang, Qingxia;Lou, Tingting;Lu, Jing;Wang, Manying;Chen, Xuenan;Xue, Linyuan;Tang, Xiaolei;Qi, Wenxiu;Zhang, Zepeng;Su, Hang;Jin, Wenqi;Jing, Chenxu;Zhao, Daqing;Sun, Liwei;Li, Xiangyan
    • Journal of Ginseng Research
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    • 제46권6호
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    • pp.759-770
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    • 2022
  • Background: Aerobic cellular respiration provides chemical energy, adenosine triphosphate (ATP), to maintain multiple cellular functions. Sirtuin 1 (SIRT1) can deacetylate peroxisome proliferator-activated receptor gamma coactivator 1 alpha (PGC-1α) to promote mitochondrial biosynthesis. Targeting energy metabolism is a potential strategy for the prevention and treatment of various diseases, such as cardiac and neurological disorders. Ginsenosides, one of the major bioactive constituents of Panax ginseng, have been extensively used due to their diverse beneficial effects on healthy subjects and patients with different diseases. However, the underlying molecular mechanisms of total ginsenosides (GS) on energy metabolism remain unclear. Methods: In this study, oxygen consumption rate, ATP production, mitochondrial biosynthesis, glucose metabolism, and SIRT1-PGC-1α pathways in untreated and GS-treated different cells, fly, and mouse models were investigated. Results: GS pretreatment enhanced mitochondrial respiration capacity and ATP production in aerobic respiration-dominated cardiomyocytes and neurons, and promoted tricarboxylic acid metabolism in cardiomyocytes. Moreover, GS clearly enhanced NAD+-dependent SIRT1 activation to increase mitochondrial biosynthesis in cardiomyocytes and neurons, which was completely abrogated by nicotinamide. Importantly, ginsenoside monomers, such as Rg1, Re, Rf, Rb1, Rc, Rh1, Rb2, and Rb3, were found to activate SIRT1 and promote energy metabolism. Conclusion: This study may provide new insights into the extensive application of ginseng for cardiac and neurological protection in healthy subjects and patients.

Breakthrough behaviour of NBC canister against carbon tetrachloride: a simulant for chemical warfare agents

  • Srivastava, Avanish Kumar;Shah, D.;Mahato, T.H.;Singh, Beer;Saxena, A.;Verma, A.K.;Shrivastava, S.;Roy, A.;Yadav, S.S.;Shrivastava, A.R.
    • Carbon letters
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    • 제13권2호
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    • pp.109-114
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    • 2012
  • A nuclear, biological, chemical (NBC) canister was indigenously developed using active carbon impregnated with ammoniacal salts of copper (II), chromium (VI) and silver (I), and high efficiency particulate aerosol filter media. The NBC canister was evaluated against carbon tetra chloride ($CCl_4$) vapours, which were used as a simulant for persistent chemical warfare agents under dynamic conditions for testing breakthrough times of canisters of gas masks in the National Approval Test of Respirators. The effects of $CCl_4$ concentration, test flow rate, temperature, and relative humidity (RH) on the breakthrough time of the NBC canister against $CCl_4$ vapour were also studied. The impregnated carbon that filled the NBC canister was characterized for surface area and pore volume by $N_2$ adsorption-desorption isotherm at liquid nitrogen temperature. The study clearly indicated that the NBC canister provides adequate protection against $CCl_4$ vapours. The breakthrough time decreased with the increase of the $CCl_4$ concentration and flow rate. The variation in temperature and RH did not significantly affect the breakthrough behaviour of the NBC canister at high vapour concentration of $CCl_4$, whereas the breakthrough time of the NBC canister was reduced by an increase of RH at low $CCl_4$ vapour concentration.

2019년 국내 사과와 배 화상병 대발생과 그 특징 (Outbreak of Fire Blight of Apple and Pear and Its Characteristics in Korea in 2019)

  • 함현희;이경재;홍성준;공현기;이미현;김현란;이용환
    • 식물병연구
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    • 제26권4호
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    • pp.239-249
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    • 2020
  • 2019년 국내의 사과와 배에 화상병이 크게 발생한 원인을 파악하기 위하여 화상병 발생한 30개 과원을 대상으로 각각의 발생 상황과 농가 면담을 통해 경종적 특징 등을 조사하였다. 화상병은 이미 감염된 지 2년 이상 오래 된 과원에서 대부분 발생하였는데, 이런 원인은 (1) 농가가 병 증상을 정확히 알지 못하여 농작업과 방화곤충 등을 통해 과원 내에서 퍼지게 되고, (2) 방화곤충이나 농작업자 등에 의해 처음 발생 과원에서 주변 과수원으로 확산되었고, (3) 동일 경작자 또는 공동 농작업자에 의해 근거리 또는 원거리로 확산된 것이라고 추정할 수 있다. (4) 이런 일련의 과정이 새롭게 확산된 지역에서 반복되다가 농가들이 화상병을 알게 되면서 신고가 증가한 것이 2019년 화상병 대발생의 일련의 원인이라고 추정할 수 있었다. 국내에서 화상병 확산을 최소화하기 위해서는 조기진단을 위한 철저한 농업인 교육과 무병징 식물체에서도 화상병균 진단이 가능한 정량적 검출기술이 요구되고 있다. 또한 큰 열매를 주로 생산하는 국내 재배법에 적합한 약제방제 체계 개발이 필요하다. 화상병 방제에서 가장 중요한 가지의 궤양 증상, 묘목, 양봉장 등의 전염원 관리를 위해서 과원별 병원균의 분자역학연구를 통해 정확한 확산경로를 구명할 것을 제안한다.