• Title/Summary/Keyword: N-(2-Hydroxyethyl)adenosine

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Antioxidant Activity of N-hydroxyethyl Adenosine from Isaria sinclairii

  • Ahn, Mi-Young;Heo, Jung-Eun;Ryu, Jae-Ha;Jeong, Hy-Kyoung;Ji, Sang-Deok;Park, Hae-Chul;Sim, Ha-Sik
    • International Journal of Industrial Entomology and Biomaterials
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    • v.17 no.2
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    • pp.197-200
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    • 2008
  • The antioxidant activity of Isaria (Paecilomyces) sinclairii was determined by measuring its radical scavenging effect on 1, 1-diphenyl-2-picrylhydrazyl (DPPH) radicals. The n- BuOH extract of P. sinclairii showed strong scavenging activity to DPPH. The anti-oxidant potential of the individual fraction was in the order of ethylacetate> n- BuOH>chloroform>n-hexane. The n-BuOH soluble fraction exhibiting strong anti-oxidant activity was further purified by repeated silica gel column chromatography. N-(2-Hydroxyethyl)adenosine (HEA) was isolated as one of the active principles from the n-BuOH layer. The n-BuOH layer, particularly HEA, did not increase the level of nitric oxide (NO) production in vascular endothelial cells that might be related to vasorelaxation such as the action of viagra. In addition, the vascular endothelial growth factor (VEGF) levels showed little or no increase compared with control group with the treatment of I. sinclairii.

Biological Activities and Artificial Cultivation of Cordyceps pruinosa Petch (붉은자루동충하초의 자실체 증식 특성)

  • Hong, In-Pyo;Nam, Sung-Hee;Jung, I-Yeon;Sung, Gyoo-Byung;Kim, Hyun-Bok;Jung, In-Mo;Cho, Soo-Muk;Lee, Min-Woong
    • Journal of Mushroom
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    • v.3 no.4
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    • pp.133-139
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    • 2005
  • Fruiting bodies of Cordyceps have been regarded as popular folk and effective medicines to treat human diseases such as asthma, bronchial and lung inflammation, and kidney disease. Cordyceps pruinosa (Clavicipitaceae; Hypocreales; Ascomycotina) has received special attention for medicinal purpose due to its various physiological activites. The nucleoside derivative N6-(2-hydroxyethyl) adenosine (HEA) isolated from it showed a $Ca^{2+}$ antagonistic effect and negative inotropic response. The artificial production of fruiting body of C. pruinosa has not been tried successfully yet by using living silkworm substrate. To develop techniques for the production of C. pruinosa stromata on a large scale, the infection of Bombyx mori with C. pruinosa and the growth characteristics of stroma of C. pruinosa were investigated. Also, studied about biological activities of fruiting body formed on silkworm. Infection rate of the silkworm pupae with C. pruinosa was the highest in injection inoculation. The formation of the fruiting body of C. pruinosa was quite good in the room controlled at $21{\sim}25^{\circ}C$, over 91% of relative humidity and over 1500 lx. Glucose concentration was high in the fruiting bodies of the silkworm pupae infected with C. pruinosa on a dry weight basis. The most abundant amino acid in the fruiting bodies was arginine and phenylalanine. The fruiting bodies of silkworm pupae infected with C. pruinosa was rich in oleic acid. The high amount of citric acid was found in the fruiting bodies of silkworm pupae infected with C. pruinosa.

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