• Title/Summary/Keyword: Butanol

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Antioxidant Activities of the Mycelium and Culture Broth of Phellinus igniarius and Agrocybe cylindracea (말똥진흙버섯 및 버들송이버섯의 균사체 및 배양액의 항산화활성)

  • Lee, Hang-Woo;Lee, Dong-Woo;Ha, Hyo-Cheol;Jung, In-Change;Lee, Jae-Sung
    • The Korean Journal of Mycology
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    • v.30 no.1
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    • pp.37-43
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    • 2002
  • The fractions obtained from the mycelia and their culture broth of Agrocybe cylindracea and Phellinus igniarius were tested for the antioxidation activities. In electron donating ability test, strong activities more than 70% were observed in ethyl acetate and butanol fractions of A. cylindracea mycelium, butanol fraction of A. cylindracea culture broth, diethyl ether fraction of P. igniarius mycelium, and diethyl ether and ethyl acetate fractions of P. igniarius culture broth. Lipid peroxidation inhibition was observed in diethyl ether, butanol and water fractions of A. cylindracea mycelium, and water fraction of A. cylindracea induced the decrease in uric acid production. Activities of $50{\sim}60\;%$ of nitrite scavenging ability were observed in diethyl ether fraction of A. cylindracea mycelium, ethyl acetate and water fractions of A. cylindracea culture broth, diethyl ether fraction of P. igniarius mycelium, and diethyl ether, chloroform, butanol and water fractions of P. igniarius culture broth. In melanin biosynthesis inhibition activity measurement, water fraction of A. cylindracea mycelium and butanol fraction of P. igniarius mycelium showed twice higher activities than control. From these results, the fungi of P. igniarius and A. cylindracea had strong antioxidant activities.

Anti-oxidant, Anti-coagulation, and Anti-platelet Aggregation Activities of Black Currant (Ribes nigrum L.) (블랙커런트의 항산화, 항응고 및 혈소판 응집저해 활성)

  • Kim, Mi-Sun;Sohn, Ho-Yong
    • Journal of Life Science
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    • v.26 no.12
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    • pp.1400-1408
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    • 2016
  • The black currant (Ribes nigrum L.) is belong to the Grossulariaceae family, and has piquant berries, which can be eaten as raw or as processed foods, such as jams, jelly, juice and syrups. In this study, the fresh juice of black currant (FJBC) from Austria and its subsequent organic solvent fractions, such as hexane fraction, ethylacetate (EA) fraction, butanol fraction and water residue, were prepared and their in-vitro anti-oxidant, anti-coagulation and anti-platelet aggregation activities were evaluated. The FJBC and EA fraction, which has concentrated polyphenol and flavonoid, showed strong radical scavenging activities and reducing power. The $RC_{50}s$ of EA fraction against DPPH anion, ABTS cation, nitrite were 136.3, 66.2 and $115.5{\mu}g/ml$, respectively, those are 1/10, 1/16, and 1/7.7 of $RC_{50}s$ of vitamin C. In anti-coagulation assay, the FJBC, EA and butanol fraction showed significant inhibitory activities against thrombin, prothrombin and coagulation factors. Furthermore, the anti-platelet aggregation activities of EA and butanol fraction were the stronger than that of aspirin. The concentrations required for 50% platelet aggregation inhibition of aspirin, EA and butanol fraction were 0.395, 0.192 and 0.261 mg/ml, respectively. The EA and butanol fraction have no hemolysis activities up to 0.5 mg/ml against human red blood cells. The results suggest that the FJBC and its EA and butanol fraction have high potentials as novel anti-thrombosis agents. This report provides the first evidence of anti-thrombosis activity of black currant.

Changes of Volatile Flavor Compounds in Traditional Kochujang during Fermentation (재래식고추장 숙성과정 중의 휘발성 향기성분의 특성)

  • Choi, Jin-Young;Lee, Taik-Soo;Park, Sung-Oh;Noh, Bong-Soo
    • Korean Journal of Food Science and Technology
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    • v.29 no.4
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    • pp.745-751
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    • 1997
  • Volatile flavor components of kochujang made from a glutinuous rice by traditional method were analyzed by using purge and trap method during fermentation, and identified with GC-MSD. Fifty-one volatile components including 19 alcohols, 13 esters, 7 acids, 3 aldehydes, 1 alkanes, 2 ketones, 2 amines, 1 benzene, 1 alkene, 1 phenol and others were found in kochujang made by traditional method. The number of volatile components detected immediately after making kochujang were 22 and increased to 41 components after 30 day of fermentation. The most number 51 of volatile components were found after 120 day of fermentation. Twenty-two volatile components were commonly found through the fermentation period such as acetic acid ethyl ester, ethanol, butanoic acid ethyl ester, 1-butanol, 2-methyl-1-propanol, 3-methyl-1-butanol, butanoic acid and ethenone. Peak area(%) of 1-butanol was the highest one among the volatile components at immediately after mashing while ethanol showed the highest peak area after 30 day of fermentation. Although the various types of peak areas of volatile components were shown in kochujang during the fermentation days, acetic acid-ethyl ester, ethanol, butanoic acid-ethyl ester, 1-butanol, 3-methyl-1-butanol and 2-methyl-1-propanol were mainly detected during fermentation. Those might be the major volatile components in kochujang made by traditional method.

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Biological Activities of Various Solvent Extracts of Seomaeyakssuk (Artemisia argyi H.) (섬애약쑥 용매별 추출물의 생리활성)

  • Kim, Dong-Gyu;Kang, Jae Ran;Shin, Jung-Hye;Kang, Min-Jung
    • Journal of Life Science
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    • v.29 no.11
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    • pp.1241-1250
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    • 2019
  • Artemisia argyi H. has been used for centuries as a traditional medicine and food supplement in Asian countries. The objective of this study was to investigate the physiological activities of Artemisia argyi H. extracts prepared by butanol, chloroform, ethyl acetate, ethyl ether, hexane, and methanol extraction. We evaluated total phenol and flavonoid content, antioxidant activity, nitric oxide (NO) and reactive oxygen species (ROS) release, and osteoclastogenesis inhibition. The total phenolic and flavonoid contents were highest in the methanol extract (49.46 mg GAE/g and 24.32 mg QE/g, respectively). The methanol extracts also had the highest antioxidant activity (DPPH and ABTS radical scavenging ability and ferric reducing antioxidant power), while the hexane extract had the lowest. The release of NO and ROS was dose-dependently decreased by pre-treatment with all solvent extracts. At the same concentrations, the ethyl acetate and butanol extracts showed higher inhibition of NO and ROS production when compared with the other extracts. The butanol extract, at a concentration of $20{\mu}g/ml$, inhibited about 89% of the activity of the osteoclast marker, tartrate resistant acid phosphatase (TRAP). These results suggest that butanol extracts of Artemisia argyi H. may be effective natural medications for the prevention and treatment of osteoporosis.

Purification and Characterization of NAD-Dependent n-Butanol Dehydrogenase from Solvent-Tolerant n-Butanol-Degrading Enterobacter sp. VKGH12

  • Veeranagouda, Y.;Benndorf, Dirk;Heipieper, Hermann J.;Karegoudar, T.B.
    • Journal of Microbiology and Biotechnology
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    • v.18 no.4
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    • pp.663-669
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    • 2008
  • The solvent-tolerant bacterium Enterobacter sp. VKGH12 is capable of utilizing n-butanol and contains an $NAD^+$-dependent n-butanol dehydrogenase (BDH). The BDH from n-butanol-grown Enterobacter sp. was purified from a cell-free extract (soluble fraction) to near homogeneity using a 3-step procedure. The BDH was purified 15.37-fold with a recovery of only 10.51, and the molecular mass estimated to be 38 kDa. The apparent Michaelis-Menten constant ($K_m$) for the BDH was found to be 4 mM with respect to n-butanol. The BDH also had a broad range of substrate specificity, including primary alcohols, secondary alcohols, and aromatic alcohols, and exhibited an optimal activity at pH 9.0 and $40^{\circ}C$. Among the metal ions studied, $Mg^{2+}$ and $Mn^{2+}$ had no effect, whereas $Cu^{2+},\;Zn^{2+}$, and $Fe^{2+}$ at 1 mM completely inhibited the BDH activity. The BDH activity was not inhibited by PMSF, suggesting that serine is not involved in the catalytic site. The known metal ion chelator EDTA had no effect on the BDH activity. Thus, in addition to its physiological significance, some features of the enzyme, such as its activity at an alkaline pH and broad range of substrate specificity, including primary and secondary alcohols, are attractive for application to the enzymatic conversion of alcohols.

Effect of Ginseng on the Hepatic Alcohol Metabolizing Enzyme System Activity in Chronic Alcohol-Treated Mouse (만성(慢性) Acohol 섭취(攝取) mouse에서 alcohol 대사(代謝) 효소활성(酵素活性)에 미치는 인삼(人蔘)의 영향(影響))

  • Choi, Chong-Won;Lee, Sang-Ill;Huh, Keun
    • The Korean Journal of Pharmacology
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    • v.20 no.1 s.34
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    • pp.13-21
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    • 1984
  • The present study was undertaken to investigate an effect of ginseng butanol fraction(total saponin) on the hepatic ethanol metabolism, we used experimental animals for the subject of study. When, in case of ADH and MEOS, ginseng butanol fraction was added, enzyme activity was increased in a small dose, and on the contrary, in a large dose, showed inhibitory effect. in catalase, the activity showed no significant effect by adding ginseng butanol fraction. In the light of kinetic aspect, when, in reaction mixture, ethanol and ginseng butanol fraction were concurrently added and reacted, Km value of ADH and MEOS was decreased. After pretreated with ginseng butanol fraction and inducement of acute toxic state by ethanol, the activities of ADH and MEOS were increased to an extent of about 25% compared to controls. But catalase activity was not significantly affected. In case that ginseng butanol fraction was given to mice fed with 5% ethanol instead of water for 60 days, the activities of ADH and MEOS were increased about 20% to 50% compared to ethanol-treated group. On the contrary, catalase activity was not affected. But blood concentrations of ethanol were decreased due to ginseng butanol fraction treatment. All these observations suggested that reduction of ethanol blood concentration should be dependent upon increased activities of ADH and MEOS. Thereby it suggests the recovery from alcohol intoxication can be prompted by treatment with ginseng.

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The effect of Aconiti tuber butanol fraction on the rabbit heart microsomal $Na^+-K^+$-activated ATPase activity (부자 Butanol Fraction이 가토 심장근 Microsomal $Na^+-K^+$-activated ATPase 활성도에 미치는 영향)

  • Shin, S.G.;Lim, J.K.;Park, C.W.;Kim, M.S.
    • The Korean Journal of Pharmacology
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    • v.12 no.1
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    • pp.7-14
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    • 1976
  • Aconiti tuber butanol fraction shows positive inotropic effect on the isolated atrium of rabbit heart. To investigate the mechanism, the effect on microsomal ATPase activity of rabbit heart is observed. The microsomal fraction which contains the $Na^+$- and $K^+$-activated ATPase in the presence of $Mg^{++}$ is isolated from the left ventricle of rabbit heart. The microsomal ATPase activity is maximally stimulated at $Na^+$ and $K^+$ concentration of 100 mM and 10 mM respectively. Microsomal $Na^+-K^+$-activated ATPase is inhibited by ouabain and Aconiti tuber butanol fraction. Ouabain and Aconiti tuber butanol fraction depress $Na^+$-stimulation on microsomal ATPase activity, and the inhibitory effects are not completely reversed at $Na^+$ concentration of 300 mM. Also, $K^+$-stimulation on microsomal ATPase activity is inhibited by ouabin and Aconiti tuber butanol fraction and the inhibitions are not compeletely reversed at $K^+$ concentration of 30 mM. It is, therefore, suggested that the inhibitory effect of Aconiti tuber butanol fraction on the microsomal ATPase activity may contribute to leading to the positive inotropic effect.

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Effect of Si/Al2 Ratio on 2-butanol Dehydration over HY Zeolite Catalysts (HY zeolite 촉매 상에서 Si/Al2 비가 2-Butanol 탈수반응에 미치는 영향)

  • Jung, Euna;Choi, Hyeonhee;Jeon, Jong-Ki
    • Korean Chemical Engineering Research
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    • v.53 no.1
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    • pp.116-120
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    • 2015
  • Synthesis of butenes through dehydration of 2-butanol was investigated over HY zeolite catalysts. 2-Butanol dehydration reaction was carried out in a fixed bed catalytic reactor. 2-Butanol conversion was increased with increase of $Si/Al_2$ ratio of HY zeolite catalysts, which can be ascribed to increase of acid strength with increase of $Si/Al_2$ ratio. Selectivities to 1-butene, trans-2-butene, and cis-2-butene were not greatly influenced by the change of the $Si/Al_2$ ratio of HY zeolite. As a result, it was advantageous to use a HY zeolite catalyst with 60 $Si/Al_2$ ratio for maximizing the yield of 1-butene in the dehydration of 2-butanol. The optimal reaction temperature for maximizing the yield of 1-butene was $250^{\circ}C$ over HY (60) catalyst.

Development of Genome Engineering Tools for Metabolic Engineering of Butanol-producing Clostridium Species (Butanol 생합성 Clostridium 속 미생물 대사공학용 게놈 편집 도구 개발)

  • Woo, Ji Eun;Kim, Minji;Lee, Ji Won;Seo, Hyo Joo;Lee, Sang Yup;Jang, Yu-Sin
    • KSBB Journal
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    • v.31 no.4
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    • pp.193-199
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    • 2016
  • Global warming caused from the heavy consumption of fossil fuel is one of the biggest problems to be solved. Biofuel has been gained more attention as an alternative to reduce the consumption of fossil fuel. Recently, butanol produced from the genus Clostridium has been considered as one of the promising alternatives for gasoline, fossil based fuel. Nevertheless, the lack of the genome-engineering tools for the genus Clostridium is the major hurdle for the economic production of butanol. More recently, genome engineering tools have been developed for metabolic engineering of butanol-producing Clostridium species, which includes genome scale network model and genome editing tools on the basis of mobile group II introns and CRISPR/Cas system. In this study, the genome engineering tools for butanol-producing Clostridium species have been reviewed with a brief future perspective.

Comparative antidiabetic activity of different fractions of Enicostemma littorale Blume in streptozotocin induced NIDDM rats

  • Vishwakarma, Santosh L.;Rajani, M.;Goyal, Ramesh K.
    • Advances in Traditional Medicine
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    • v.3 no.4
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    • pp.196-204
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    • 2003
  • Aqueous extract of Enicostemma littorale is reported to have antidiabetic activity. In the present investigation, we studied the effect of aqueous extract of E. littorale and its different fractions i.e., toluene, chloroform, ethyl acetate, n-butanol fractions and remaining residual fraction in streptozotocin (STZ)-induced neonatal type 2 diabetic rats. Fasting glucose and insulin levels in NIDDM were significantly (P<0.05) higher than control rats and they were significantly decreased by treatment with aqueous extract of E. littorale and its n-butanol and ethyl acetate fractions. Results of oral glucose tolerance test (OGTT) showed that aqueous extract and its n-butanol and ethyl acetate fractions significantly (P<0.05) decrease both $AUC_{glucose}$ and $AUC_{insulin}$ values in NIDDM treated groups. Insulin sensitivity $(K_{ITT})$ index of NIDDM control was significantly lower as compared to normal control and this was significantly (P<0.05) increased after treatment with aqueous extract, its n-butanol and ethyl acetate fractions. Treatment with aqueous extract of E. littorale and its n-butanol and ethyl acetate fractions lowered the elevated cholesterol and triglyceride levels observed in NIDDM rats. Treatment with aqueous extract of E. littorale and its n-butanol fraction showed significant decrease in creatinine, urea, SGPT and SGOT levels as compared to NIDDM control rats. However ethyl acetate fraction showed significant changes only in creatinine and SGOT levels, and not in the levels of urea, and SGPT as compared to NIDDM control rats. Treatment with toluene, chloroform and residual fractions of E. littorale did not produce any effect on glucose, insulin, triglyceride, cholesterol, creatinine, urea, SGPT or SGOT levels as compared to NIDDM control rats. Our data suggest that n-butanol and ethyl acetate fractions contain the active compounds which may be responsible for the above activity and associated complications in NIDDM diabetes mellitus.