• Title/Summary/Keyword: rhamnose

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Studies on the change of chemical composition of Poncirus trifoiata ("탱자"의 화학성분변화에 관한 연구)

  • 박명삼
    • Journal of Plant Biology
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    • v.12 no.1
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    • pp.31-34
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    • 1969
  • This experimental was undertaken for the purpose to investigate the different chemical composition in developing fruit of Poncirus trifoiata. In the first place, the differences among the content of tannin and qualitative analysis of free sugars and organic acids in the fruit of Poncirus trifoiata fron Kwang-ju are to be investigated and chemical components are analyzed. 1) The differences of the content of tannin are investigated at the four periods of time and gradual decrease in the sample 2 (July 15) take place. 2) In sample 1 (June 20), xylose, mannose and rhamnose are not identified and later, as the fruit age, otehr three sorts of sugars with the former are founded and there is a conspicuous tendency to increase in the content and especially the increase in glucose and rhamnose seems to be related with the decomposition of tannin, while the decrease in the former from sample 2 to sample 4 with the formation of the latter. 3) Tartaric acid, succinic acid and citric acid are appeared and then in sample 1 (June 20( these are not founded and later all of them are identified and gradual increase in the content take place and especially citric acid and succinic acid seems to be increased in the content. These are related with the synthesis of organic materials in plant body.

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Radical Scavenging Activity and Cytotoxicity of Maysin(C-glycosylflavone) isolated from Silks of Zea mays L.

  • Kim, Sun-Lim;Snook, Maurice-E;Lee, Jong-Ock
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.48 no.5
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    • pp.392-396
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    • 2003
  • Maysin, a C-glycosylflavone, was isolated from the silks of maize, Zea mays L. The ESI mass spectrum indicates that molecular weight of maysin is $577\textrm{M}^+$m/z, and the ether-linked sugar is rhamnose, $431\textrm{M}^+$m/z (MW$^{+}$-146). The DPPH (1,1-Diphenyl-2-picrylhydrazyl) radical scavenging activity of maysin was higher than that of rutin. However, as compared with its aglycon luteolin, maysin showed the relatively moderate DPPH scavenging activity mainly due to the glycosylation of two sugars moieties, keto-fucose and rhamnose. In the in vitro cytotoxicity test against the five human tumor cell lines such as lung (A549), ovarian (SK-OV-3), melanoma (SK-MEL-2), central nerve system (XF-489), and colon (HCT-15), maysin exhibited the relatively weaker activities than cisplatin. The $\textrm{ED}_{50}$ values of maysin were 62.24, 43.18, 16.83, 37.22, and 32.09/$m\ell$, respectively. Result suggests that maysin is a potential cytotoxicity compound, particularly for human colon, central nerve system, and melanoma tumors.s.

Revisit to the Commercial-scale Production of Rhamnolipids (재조명되는 람노리피드 양산화 동향연구)

  • Oh, Kyeongseok
    • Journal of the Korean Applied Science and Technology
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    • v.38 no.5
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    • pp.1219-1228
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    • 2021
  • Rhamnolipids are recognized as eco-friendly biosurfactants and produced by the bio-process employing bacteria. Pseudomons aeruginosa is well-known to produce rhamnolipids in high yield during fermentation process. Rhamnose and 𝛽-hydroxylated fatty acid are main chemicals for rhamnolipids, which are produced in the form of congener mixtures. In this paper, the synthetic mechanism of rhamnolipids within bacteria cells was presented in part and foam control technologies were qualitatively described. Foam control during fermentation process was important to regulate a continuous process. During last decade, the technologies are developed enough to challenge to a commercial-scale production. In particular, rhamnolipids will be more valuable if these can be applicable to value-added chemicals, such as medicines.

Isolation of Polyphenol from Green Tea by HPLC and Its Physiological Activities (HPLC에 의한 녹차의 polyphenol 화합물의 분리 및 polyphenol의 생리활성)

  • Woo, Hee-Seob;Choi, Hee-Jin;Han, Ho-Suk;Park, Jung-Hye;Son, Jun-Ho;An, Bong-Jeun;Son, Gyu-Mok;Choi, Cheong
    • Korean Journal of Food Science and Technology
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    • v.35 no.6
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    • pp.1199-1203
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    • 2003
  • Polyphenols were isolated from Korean green tea using Sephadex LH-20 and HPLC. The isolated polyphenols were procyanidin B-4, procyanidin B-2-3,3'-digallate, prodelphinidin C-2-3,3'-di-O-digallate, (+)-catechin-3-O-rhamnose, procyandin B-5, procyanidin B-7-3-0-gallate, gallate, epiafzelechin-$(4{\beta}{\rightarrow}8)$-epiafzelechin, procyanidin B-3-3-O-rhamnose, afzelechin-$(4{\alpha}{\rightarrow}8)$-catechin, prodelphinidin B-5-3,3'-di-O-digallate and (+)-taxifolin-3-O-D-xyloside. The inhibitory effects of prodelphinidin C-2-3,3'-di-O-gallate and procyanidin B-2-3,3'-digallate $(at\;100{\mu}M)$ on angiotensin.converting enzyme were 68.8 and 54.6%, respectively, while the inhibitory effects of prodelphinidin C-2-3,3'-di-O-gallated and procyanidin B-2-3,3'-digallate $(at\;100{\mu}m)$ on xanthine oxidase were 54.5 and 38.2%, respectively. Lastly, the inhibitory activities of prodelphinidin C-2-3,3'-di-O-gallate $(at\;100{\mu}m)$ on tyrosinase was 42.1%.

Characterization of the Immunologically Active Components of Glycyrrhiza uralensis Prepared as Herbal Kimchi

  • Hwang, Jong-Hyun;Lee, Kyong-Haeng;Yu, Kwang-Won
    • Preventive Nutrition and Food Science
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    • v.8 no.1
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    • pp.29-35
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    • 2003
  • A crude polysaccharide fraction (GU-3) from the roots of Glycyrrhiza uralensis (licorice root), a screened herbal plant used in the preparation of herbal kimchi, enhanced Peyer's patch mediated bone marrow cell proliferation and NK cell-mediated tumor cytotoxicity against Yac-1 cells. GU-3 was further purified by DEAE-Sepharose CL-6B yielding fractions designated as GU-3I, and 3IIa∼3IIe. GU-3IIa is mainly composed of arabinose, galactose and galacturonic acid, and showed the highest bone marrow cell proliferation activity. In addition, GU-3IIb had arabinose, galactose, rhamnose and galacturonic acid as the component sugars with a small quantity of protein; GU-3IIb also enhanced activity of NK cell-mediated tumor cytotoxicity. After these fractions were further fractionated via gel filtration on Sepharose CL-6B or Sephacryl S-300, two immunological active polysaccharides, GU-3IIa-2 and 3IIb-1 were purified from the respective fractions. GU-3IIa-2 mostly contained neutral sugars (75%) such as arabinose and galactose (molar ratio; 1.0 : 0.7) in addition to a considerable amount of galacturonic acid (20%), whereas GU-3IIb-1 was composed of arabinose, galactose, rhamnose and galacturonic acid (molar ratio; 0.3 : 0.5 : 0.1 : 1.0). Methylation analysis indicated that GU-3IIa-2 was composed mainly of terminal, 4- or 5-linked and 3,4- or 3,5-branched arabinose, 3-linked, 4-linked and 3,6-branched galactose, and terminal and 4-linked galacturonic acid whereas GU-3IIb-1 contained various glycosidic linkages such as terminal and 4- or 5-linked arabinose, 2,4-branched rhamnose, terminal and 4-linked galactose, and terminal and 4-galacturonic arid. Single radial gel diffusion indicated that only GU-3IIa-2 strongly reacted with β-D-glucosyl-Yariv antigen. These results suggest that bone marrow cell proliferating activity and enhancement of NK cell-mediated tumor cytotoxicity of GU-3 are caused by polysaccharides containing a pectic arabinogalactan (GU-3IIa-2) and pectic polysaccharide (GU-3IIb-1).

Studies on the Anti-coagulant Component of Artemisiae Herba (애엽의 혈액 응고 억제 성분에 관한 연구)

  • 한용남;양현옥;한병훈
    • YAKHAK HOEJI
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    • v.28 no.2
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    • pp.69-77
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    • 1984
  • Anti-coagulant activities of 25 species of medicinal plants which have been related to "blood" in ethnobotany, were evaluated by plasma recalcification time test. Among these, Artemisiae Herba showed the strongest activity. Its anti-clotting component was purified by using DEAE-cellulose, Sephadex G-75, and Sephadex LH-20 column chromatography. Its active compound has an average molecular weight of approximately $10^{4}$ and it was turned to be an acidic polysaccharide composed of galacturonic acid and rhamnose (7 : 2) by chemical analysis and spectral data.

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Antioxidants Isolated from Kalopanax pictus (엄나무 유래 신규 항산화 활성물질)

  • 김영희
    • Korean Journal of Plant Resources
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    • v.11
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    • pp.89-109
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    • 1998
  • Screening of new antioxidants form oriental medicines resulted in the isolation of a new antioxidative compound and eight known compounds from the stem bark of Kalopanax pictus. On the basis of various spectrosopic studies, the structure of the new compound was determined to be 4-rhamnose-3,5-dimethoxybenzoic acid methly ester. Other known compounds were identified as ferulic acid, 4,5,6,-trihydroxyflavanone, 2', 4',4' -trihydroxychalcone, caffeic acid, coniferyl alcohol, syringin, 1,3-di-O-caffeoylquinic acid. These compounds showed lipid peroxidation inhibitory acitivity in rat liver microsomes and free radical scavenging acitivity.

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Five compounds from leaves of Hovenia dulcis T.

  • Chon, In-Ju;Cho, Hyoung-Kwon;Ham, In-Hye;Kim, Ho-Hyun;Whang, Wan-Kyun
    • Proceedings of the PSK Conference
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    • 2002.10a
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    • pp.368.2-368.2
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    • 2002
  • Fruits of Hovenia dulcis T. (Rhamnaceae) was called ′jiguja ′ in oriental medicine which has been used for diuresis, remove of hangover and leaves has been used for detoxified the alcohol. From the MeOH Extraction. five compounds were isolated by column chromatography and elucidated as quercetin quercetin-3-O-rhamnose. quercetin-3-O-gal(6"1") rha, quercetin-3-O-glc(6"${\rightarrow}$1")glc, and kaemferol through specroscopic methods. (omitted)

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The Types of Linkage of Carbohydrates in Wood Cell Wall (I) - The Isolation of Carbohydrates - (목재(木材) 세포벽중(細胞壁中)의 탄수화합물(炭水化合物) 간(間)의 결합(結合) 양식(樣式)(I) -탄수화합물(炭水化合物)의 단리(單離)-)

  • Lee, Sang-Pill;Lee, Jong-Yoon
    • Journal of the Korean Wood Science and Technology
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    • v.15 no.3
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    • pp.34-43
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    • 1987
  • This study was performed to find out the types of linkage of carbohydrates in wood cell walls. To study the structure of linkage of carbohydrates in wood cell walls, we have attempted to find out the method holocellulose preparation and optimum condition of enzyme hydrolysis in holocellulose, and fractionate oligosaccharide with products that hydrolized partly by acetolysis and deacetylation in holocellulose. We have achieved four results. These results as follow; 1. At first. we reacted in wood meal $NaClO_2$ 1g per lignin lg for one hour and then the same of quantity $NaClO_2$ for four hours. Through these experiments, we have developed new holocellulose preparation method which had low loss of carbohydrates and high effect of the delignification. 2. The optimum condition of enzyme hydrolysis of holocellulose which had lignin was 0.005M sodium acetate buffer (pH 5.0). We have achieved 7.2% reducing sugar through the procedure that reactioned 0.01g holocellulose putting enzyme 0.03g for 72 hours. It may be supposed that 5.5% of lignin contained in holocellulose prevented enzyme contaction from holocellulose and so this lignin has resulted in the low efficiency of enzyme hydrolysis. 3. We did not fractionated from oligosaccharides which were preparated by the method of acetolysis and deacetylation in holocellulose. The reason is that holocellulose having a lot of lignin prevented prefectly partial hydrolysis from the method of acetolysis and deacetylation. 4. We attempted analysis of six standard substances through HPLC apparatus having sugar pak 1 column which we have changed flow rate and the column temperature variably. These six standard substances were D-glucose, D-mannose, D-xylose, D-galactose and L-rhamnose, L-arabinose, But sugar pak 1 column was not fitted analysis of four substances because D-galactose, D-mannose, D-xylose, L-rhamnose were agreement with elution time. And so, we could not analize four standard substances with sugar pak 1 column.

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