• Title/Summary/Keyword: 2차 대사물질

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Brief Review on Microbial Enhanced Oil Recovery (미생물을 이용한 원유 회수증진법에 대한 동향연구)

  • Oh, Kyeongseok
    • Journal of the Korean Applied Science and Technology
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    • v.38 no.4
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    • pp.1010-1019
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    • 2021
  • Petroleum oil in reservoir has been acquired by primary, secondary and tertiary oil recoveries. Microbial enhanced oil recovery (MEOR) classified to tertiary oil recovery has been evaluated in two ways of in-situ and ex-situ options. In-situ MEOR injects microbes into a depleted oil reservoir and stimulates those to generate metabolites. Among metabolites, biosurfactants play an important role to make heavy residues flow. Ex-situ MEOR injects microbial metabolites instead of microbes into a reservoir to recover oil. Even though both in-situ MEOR and ex-situ MEOR are eco-friend processes, in-situ MEOR can be preferred because it is more economic. Even though MEOR have been evaluated for a long time, it is still in the state of evaluating in a pilot-scale. Among microbes, bacteria have been widely evaluated in MEOR purpose. In this paper, bacteria for MEOR were summarized and their metabolites were qualitatively evaluated.

Pathogen, Insect and Weed Control Effects of Secondary Metabolites from Plants (식물유래 2차 대사물질의 병충해 및 잡초 방제효과)

  • Kim, Jong-Bum
    • Applied Biological Chemistry
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    • v.48 no.1
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    • pp.1-15
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    • 2005
  • Pathogens, insects and weeds have significantly reduced agricultural productivity. Thus, to increase the productivity, synthetic agricultural chemicals have been overused. However, these synthetic compounds that are different from natural products cannot be broken down easily in natural systems, causing the destruction of soil quality and agricultural environments and the gradually difficulty in continuous agriculture. Now agriculture is faced with the various problems of minimizing the damage in agricultural environments, securing the safety of human health, while simultaneously increasing agricultural productivity. Meanwhile, plants produce secondary metabolites to protect themselves from external invaders and to secure their region for survival. Plants infected with pathogens produce antibiotics phytoalexin; monocotyledonous plants produce flavonoids and diterpenoids phytoalexins, and dicotylodoneous plant, despite of infected pathogens, produce family-specific phytoalexin such as flavonoids in Leguminosae, indole derivatives in Cruciferae, sesquitepenoids in Solanaceae, coumarins in Umbelliferae, making the plant resistant to specific pathogen. Growth inhibitor or antifeedant substances to insects are terpenoids pyrethrin, azadirachtin, limonin, cedrelanoid, toosendanin and fraxinellone/dictamnine, and terpenoid-alkaloid mixed compounds sesquiterpene pyridine and norditerpenoids, and azepine-, amide-, loline-, stemofoline-, pyrrolizidine-alkaloids and so on. Also plants produces the substances to inhibit other plant growths to secure the regions for plant itself, which is including terpenoids essential oil and sesquiterpene lactone, and additionally, benzoxazinoids, glucosinolate, quassinoid, cyanogenic glycoside, saponin, sorgolennone, juglone and lots of other different of secondary metabolites. Hence, phytoalexin, an antibiotic compound produced by plants infected with pathogens, can be employed for pathogen control. Terpenoids and alkaloids inhibiting insect growth can be utilized for insect control. Allelochemicals, a compound released from a certain plant to hinder the growth of other plants for their survival, can be also used directly as a herbicides for weed control as well. Therefore, the use of the natural secondary metabolites for pest control might be one of the alternatives for environmentally friendly agriculture. However, the natural substances are destroyed easily causing low the pest-control efficacy, and also there is the limitation to producing the substances using plant cell. In the future, effects should be made to try to find the secondary metabolites with good pest-control effect and no harmful to human health. Also the biosynthetic pathways of secondary metabolites have to be elucidated continuously, and the metabolic engineering should be applied to improve transgenics having the resistance to specific pest.

방선균을 이용한 항생물질 발효

  • 남두현
    • The Microorganisms and Industry
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    • v.18 no.3
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    • pp.63-68
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    • 1992
  • 방선균에서 항생물질을 발효 생산하기 위해서는 이와 관련된 방선균의 생리학적 및 생화학적 특성을 고찰해 볼 필요가 있다. 우선, 항생물질은 방선균의 2차 대사산물로써 이의 생산은 미생물의 성장과는 거의 연계되어 있지 않다. 즉, 방선균의 발효 과정을 살펴보면, 일반적으로 균체가 성장하는 증식 단계(trophophase)와 항생물질이 생산되는 발효 단계(idiophase)로 구분할 수 있다(2). 다시 말해서, 항생물질과 같은 2차 대사산물은 균체의 성장이 어느 정도 완료되어진 이후에 생합성되어지기 시작하며, 이는 방선균의 생활 주기상의 분화과정과도 밀접한 관계를 갖고 있는 것으로 알려져 있다. 또 하나의 특징은 한 종류의 방선균으로부터 유사한 화학적 골격을 지닌 여러 종의 항생물질들이 동시에 생산되어지는 경우가 많으며, 외부 환경에 따라 그 생산량이 크게 영향을 받는다는 사실이다. 따라서 방선균에서 목적하는 항생물질만을 과량생산하기 위해서는 배지의 조성을 비롯하여 pH, 발효온도, 통기, 점도 등 여러가지 발효 조건들을 잘 조절해 주어야 한다. 이러한 관점에서 방선균을 이용한 항생물질 발효에 있어서 그 생산량을 증대시키기 위해 고려해 주어야 할 사항들을 고찰해 보기로 한다.

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Galangin의 유전독성 억제효과

  • 허문영;정규찬
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1992.05a
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    • pp.53-53
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    • 1992
  • galangin은 1차 발암물질인 MNNG, EMS, 2차 발암물질인 B(a)P 및 DMBA에 의해 유도된 소핵생성에 대하여 억제효과를 나타내었으나 ADM에 대해서는 억제효과를 나타내지 않았다. 한편, S-9 mixture 존재하 benzo(a)pyrene에 의한 자매염색분체교환 빈도에 대해서도 억제효과를 나타내었다. 또한, radiomimetic agent인 BLM 유도 염색체 이상에 대해서도 억제효과를 나타내었다. 이같은 결과를 종합하면 galangin은 DNA alkylation이나 adduct를 형성하는 발암물질에 대하여 억제효과가 큰 것으로 보아 DNA alkylation 및 DNA adduct를 형성을 차단하거나 방향족 탄화수소의 대사 활성화를 방해하여 특정 발암물질들의 염색체 손상작용을 억제해주는 Anticlastogen으로서의 가능성을 보여주었다.

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Neurochemical Profile Quantification of Regional Adult Mice Brain Using: ex vivo $^1H$ High-Resolution Magic Angle Spinning NMR Spectroscopy (생체 외 조직 고 분해능 Magic Angle Spinning을 이용한 정상 Adult Mice에서의 뇌 부위별 뇌 신경화학 대사물질 정량분석)

  • Lee, Do-Wan;Woo, Dong-Cheol;Lee, Sung-Ho;Kim, Sang-Young;Kim, Goo-Young;Rhim, Hyang-Shuk;Choi, Chi-Bong;Kim, Hwi-Yool;Lee, Chang-Wook;Choe, Bo-Young
    • Progress in Medical Physics
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    • v.21 no.1
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    • pp.35-41
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    • 2010
  • The purpose of this study is to quantitate regional neurochemical profile of regional normal adult mice brain and assess regional metabolic differences by using ex vivo $^1H$ high-resolution magic angle spinning nuclear magnetic resonance spectroscopy ($^1H$ HR-MAS NMRS). The animals were matched in sex and age. The collected brain tissue included frontal cortex, temporal cortex, thalamus, and hippocampus. Quantitative 1D spectra were acquired on 40 samples with the CPMG pulse sequence (8 kHz spectral window, TR/TE = 5500/2.2 ms, NEX = 128, scan time: 17 min 20 sec). The mass of brain tissue and $D_2O$+TSP solvent were 8~14 mg and 7~13 mg. A total of 16 metabolites were quantified as follow: Acet, NAA, NAAG, tCr, Cr, tCho, Cho, GPC + PC, mIns, Lac, GABA, Glu, Gln, Tau and Ala. As a results, Acet, Cho, NAA, NAAG and mIns were showed significantly different aspects on frontal cortex, hippocampus, temporal cortex and thalamus respectively. The present study demonstrated that absolute metabolite concentrations were significantly different among four brain regions of adult mice. Our finding might be helpful to investigate brain metabolism of neuro-disease in animal model.

Determination of Urinary Metabolites of Methidathion after Oral Administration and Dermal Application to Rats (흰쥐를 이용한 Methidathion의 경구투여 및 피부도포 후 뇨 중 대사물질 측정)

  • Min, Kyung-Jin;Kim, Hwa-Sun;Cha, Chun-Geun
    • Journal of Food Hygiene and Safety
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    • v.18 no.3
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    • pp.153-160
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    • 2003
  • This study was performed to determine the urinary metabolites of methidathion in rats. Urine samples were collected for 24 hours in metabolic cages following after oral administration and dermal application of methidation to rats. The urinary metabolites were identified by GC/MS and the excretion time courses of urinary dialkyl phosphate metabolites were analyzed by CG/FPD. The results obtained are summarized as follows: Three dialkyl phosphate metabolites, DMP, DMTP. and DMDTP, were detected in the rat urine. Urinary dialkyl phosphate metabolites were identified on the basis of their mass spectra by GC/MS. The molecular ions of DMP, DMTP,and DMDTP, were identified at m/z 198, and m/z 158, respectively. A comparison of excretion time courses of urinary dialkyl phosphate metabolites between the orally administrated and dermally applicated rats were also established, After oral administration, 79.2% of DMP, 93.9% of DMTP, and 83.0% of DMDTP were excreted into the urine by 12, 24, and 12 hours, respectively. After dermal application, 71.1% of DMP, 82.8% of DMTP 87.7% of DMDTP were excreted into the urine by 24, 48, 48 hours, respectively. Consequently, almost all of the dialkyl phosphates in oral administration were excreted within 48 hours. However, the metabolites in dermal application were excreted up to 168 hours. In the study, three urinary metabolites of methidation, DMP, DMTP and DMDTP, were detected in the rat both after oral administraion and dermal application with methidathion. And the urinary excretion in dermal application was more delayed than that in oral administration. Based on the results, it tis suggested that three urinary dealkyl phosphates, DMP, DMTP, and DMDTP, could be used as the biomarkers of exposure for methidathion.

신물질의 간독성 평가방법 개발 및 기작에 관한 연구

  • 차영남
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1993.04a
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    • pp.97-97
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    • 1993
  • 본 연구과제에서는 적출판류간실험법 (isolated perfused liver technique)을 약물의 간독성 유발 및 보간작용에 관한 실험법으로 개발하고자 butylated hydroxyanisole (BHA) 을 이용하여 보간실험을 하였다. BHA를 식이투여한 흰쥐로부터 적출한 간에 간독성 모델물질로 2,6-dichlorophenolindophenol (DCPIP) 을 관류시켜 관류액내의 DCPIP의 유리형, 환원형, glucuronide, sulfate 포합체의 대사체를 측정하여 DCPIP 외 대사양상을 관찰하였으며, 동시에 간세포 손상으로 관류액내로 유출된 lactate dehydrogenase (LDH)의 활성도를 측정하여 DCPIP예 의할 간세포독성 유발정도를 간접적으로 측정하여 대조군과 비교하였다. 그리고 BHA에 의한 보간작용이 약물대사효소의 변와에 기인한 것인가를 관찰하기 위하여 모델약물로 7-ethoxycoumarin (EC) 이나 EC의 phase I 대사산물인 7-hydroxycoumarin (HC) 을 관류시켜 관류액내의 HC의 유리체, glucuronide 포합체, sulfate 포합체로의 대사량을 측정하여 약물대사시 약물의 활성화에 관계하는 phase I mixed function oxidase (MFO) 효소와 약물의 해독화에 관계하는 phase II 포합효소 (UDP-glucuronyltranesferase(UDPGT)와 sulfotransferase (ST))의 활성도 변화를 측정하여 대조군과 비교하였다. 간독성 모델물질인 DCPIP를 적출한 흰쥐의 간에 관규시켰을때 BHA 전처리군이 LDH가 유출되기 시작하는 시간이 대조군에 비하여 유의적으로 늦었으며, LCH가 유출량도 유의적으로 감소되어 DCPIP에 의한 간독성 유발능력이 BHA에 의하여 감소됨을 관찰하였다. 아울러 DCPIP의 대사체중 환원체와 glucuronide 포합체의 생성량이 증가되어 BHA에 의하여 quinone reductase와 UDPGT 활성도가 증가되었음을 알 수 있었다. 그리고 BHA 전처리에 의하여 MFO효소계와 ST의 활성도에는 변화가 없었으나 UDOGT 의 활성도는 약 2.2배 증가되었다. 이상의 결과로 BHA에 의한 보간작용은 간독성 물질을 활성화시키는 phase I MFO 효소의 활성도에는 변화없이 해독작용에 관여하는 phase II효소들의 활성도 증가에 기인된 것을 알 수 있었다. 그리고 이러한 결과는 적출한 관류간실험법은 여러 약물의 보간효과를 관찰하는 실험법으로 적합할 것으로 사료되었다.

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Studies on the Effect of Glyoxylate on the Biosynthesis of Prodigiosin in Serratia marcescens (Serratia marcescens에서 글리옥실산이 Prodigiosin 생합성에 미치는 연구)

  • 최병범;방선권
    • The Korean Journal of Food And Nutrition
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    • v.10 no.4
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    • pp.475-479
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    • 1997
  • The effects of amino acids and metabolites in growth media on the biosynthesis of prodigiosin from Serratia marcescens ATCC 25419 were examined. The prodigiosin synthesis was decreased approximately by 50 to 80% by several amino acids and metabolites tested. The prodigiosin synthesis was increased approximately by 20 to 40% by a low concentration of glyoxylate(1 to 3mM) and outstandingly increased by 122% at 5mM concentration under anaerobic condition. However, the prodigiosin synthesis was decreased approximately by 50 to 90% at a high concentration(20 to 30mM) under anaerobic condition. The prodigiosin was not synthesized by pyruvate and $\alpha$-ketobutyrate under aerobic and anaerobic condition, with addition to glyoxylate under aerobic condition, among the range from 0.5 to 30mM, while the cell growth under anaerobic condition was decreased distinctly by a high concentration(20mM above) of glyoxylate. These data suggest that the growth and prodigiosin of S. marcescens is positively regulated by a low concentration of glyoxylate (1-5mM), but repressed by a high concentration of glyoxylate(20mM above) unlike pyruvate and $\alpha$-ketobutyrate.

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Capsaicin Intake Estimated by Urinary Metabolites as Biomarkers (뇨중 대사체 정량에 의한 capsaicinoid의 생화학적 섭취지표 개발 연구)

  • Choo, Yeon-Soo;Kwon, Hoon-Jeong
    • Korean Journal of Food Science and Technology
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    • v.33 no.6
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    • pp.784-788
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    • 2001
  • Reliable data on the exposure of capsaicin, which evokes hot sensation in hot red pepper, are important prerequisites for studying biological functions of capsaicin in human body since its roles are controversial according to animal and epidemiological studies. To get accurate data, the use of urinary biomarkers was considered as a measure of internal exposure of capsaicin. After 2-day-capsaicin depletion five to six women in their 20's were instructed to eat 60 or 80 g/day hot red pepper soybean paste as a capsaicin source with meal which did not contain capsaicinoid, and to collect their urine separately. HPLC conditions were set to detect capsaicinoid and urinary metabolites at the same time. Most of capsaicinoid were excreted in the form of 4-hydroxy-3-methoxybenzoic acid in three subjects at the highest dose. This result suggests the oxidation of the 4-hydroxy3-methoxybenzaldehyde, the hydrolysis product of capsaicin, is the major metabolic pathway in the human body, whereas the reduction of the aldehyde is the major route in rats. However, neither any metabolite nor the parent compound was ever shown in two of the subjects reflecting large individual differences of capsaicin absorption and/or biotransformation.

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On the Study of Useful Secondary Metabolites Using Plant Hairy Root Cultures -Effects of Antimicrobial and Disinfectant Activity of Allylisothiocyanate- (식물 모상근 배양을 이용한 유용2차 대사산물에 관한 연구[I] - Allylisothiocyanate의 항균.살균 효과 -)

  • Park, Don-Hee;Jeong, Gwi-Taek;Yang, Song-Won;Hwang, Baik;Woo, Hee-Gweon;Rhee, Joon-Haeng;Joe, Yung-Il
    • KSBB Journal
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    • v.16 no.4
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    • pp.360-364
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    • 2001
  • It is known as the allylisothiocyanate which is extracted from Wasabia koreana\\\\\\\\`s root. It contains 80% of the oil refining material. The allylisothiocyanate as secondary metabolites of Wasabia koreana plant is a possibility of having the high value which is useful. The research observed the allylisothiocyanate material as the basic study for industrializing to make its mass product. Finally, it shows that the antimicrobial and disinfectant effect against the microbe incubated adding 50 ppm allylisothiocyanate for 15 hours.

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