• Title/Summary/Keyword: antioxidative substances

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A Simple and Accurate Method for Determining Antioxidative Activity

  • Bae, Jin-Woo;Lee, Moo-Hong
    • The Korean Journal of Physiology and Pharmacology
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    • v.7 no.5
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    • pp.275-278
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    • 2003
  • Antioxidative activity is an important factor in inhibiting oxidative stress. The usual methods for determining antioxidative activity are time-consuming and cumbersome. They are also indirect processes that use biological material such as brain or liver microsome. This study therefore proposed a new method. Redoxpotential was determined using galvanic cell with or without the addition of various antioxidants or herbal extracts in zinc sulfate solution. The result was compared with the results from the TBA method and the peroxide value from sodium thiosulfate titration. All methods showed significant and dose-dependent enhancement of antioxidative activity by adding ascorbic acid, quercetin, ginseng, or gingko biloba extract. The result of redox potential using galvanic cell showed the smallest standard deviation and took the shortest time among the three methods. Therefore, the antioxidative potential of chemical substances and herbal extracts can be determined simply, directly and accurately in a short period of time using galvanic cell.

Antioxidative activity of flavonoid rich extract of Oenothers odorate Jacquin on oxidation of low density lipoprotein (LDL 산화에 대한 달맞이꽃의 플라보노이드 추출물의 항산화 활성)

  • Ryu, Beung-Ho;Kim, Hee-Sook;Cho, Kyung-Ja
    • Journal of Life Science
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    • v.12 no.3
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    • pp.325-331
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    • 2002
  • There is growing interest ill understanding the role and mechanisms of flavonoid as antioxidant on LDL. The antioxidative activity of flavonoid typically present in Oenothers odorate Jacquin was investigated in vitro using a human LDL oxidation assay. In present work, LDL was incubated with increasing concentrations of extracts of extracts of Oenothers odorate Jacquin and LDL oxidation was started by adding CuSO$_4$to the media. Substances in leaves extracts of Oenothers odorate Jacquin are capable of inhibiting the initiation and the propagation of LDL oxidation. They inhibit LDL oxidation, monitored by thiobarbituric acid-reactive substances(TBARS), as well as modification as shown through direct measurement of electrophoretic mobility, diene conjugates. Inhibition is a dose dependent effect that becomes already apparent at concentration of extracts as low as 40$\mu\textrm{g}$/mL. Inhibition is almost complete at 80$\mu\textrm{g}$/mL. Extracts of Oenothers odorate Jacquin were more potent antioxidative activity than either ascorbic acid and dl-a -tocopherol.

A Study on Some Antioxidative Effects of Stewed Pumpkin Juice on Lipid (호박즙의 유지에 대한 항산화 효과)

  • 오봉윤;박복희
    • Korean Journal of Human Ecology
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    • v.1 no.2
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    • pp.89-99
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    • 1998
  • This study was carried out to investigate some antioxidative effects of stewed pumpkin juice (SPJ) and the SPJs added with ginger (SPJ-G), onion (SPJ-O), jujube (SPJ-J) or boxthorn (SPJ-B), respectively, on the lipid oxidation of soybean oil (S) and mackerel pike boiled ground (MPBG). Antioxidative substances of SPJ were extracted by using the two solvent layers of n-hexane:acetone (1:1)(H) and methanol:water (7:3)M. The antioxidative effects of the extracts were observed by the peroxide value (P.O.V.) and thiobabituric acid (T.B.A.) value. The P.O.V. and T.B.A. value of two solvent extracts of S and MPBG showed significantly lower than those of S and MPBG. The SPJ showed very distingnished antioxidative effects. It was considered that melanoidine extracted by using methanol:water (7:3) solvent as well as carotenoid extracted by using n-hexane:acetone (1:1) solvent had an antioxidative effect. During storage, T.B.A. value of MPBG significantly increased, while that of MPBG-SPJ significantly decreased more than that of MPBG. T.B.A. value of MPBG-SPJs decreased much than that of MPBG-SPJ, SPJ-O, SPJ-G, SPJ-J and SPJ-B, in order of abundance, showed higher level of antioxidative effects than SPJ. (Korean J Human Ecology 1(2):89∼99, 1998)

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Study of Antioxidative Substances from Some Indonesian Plants

  • Cahyana, Herry
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1998.11a
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    • pp.162-162
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    • 1998
  • Various natural compounds act as antioxidants in protection against lipid peroxidation. Lipid peroxidation yields a variety of decomposition products which have been implicated in not only decreasing the nutritional value of food, but also in developing an off-flavor and toxic substances. As a source of safer and more effective natural antioxidants of natural origin have been widely investigated. Some Indonesian plants have evaluated for their antioxidative activity, and suggested the possible existence of various antioxygenic compounds in them. We attempted to study such antioxygenic compounds with simple method evaluation. As we are interested in the natural product compounds, we examined of several sample such as edible sea-weeds, and some edible fruits. Sea-weed, Eisenia bicyclis, one of the edible brown algae, exhibited the activity. As a traditional food additive consumed by Indonesian, Garcinia parvifolia is used as taste supplement in region West Sumatra, have been studied. Our current studies on the semi-polar fractions shows the activity by the thiocyanate method test. Another sample, Garcinia mangostana, a famous fruit with sweet taste, the part kernel have also evaluated. The acidic fraction of the extract showed antioxidative activity. Some other active components were found in the neutral and BuOH fractions.

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Antioxidative Characteristics of Soybean Sauce in Lipid Oxidation Process (양조간장의 항산화작용 및 항산화성 물질에 관한 연구)

  • Moon, Gap-Soon;Cheigh, Hong-Sik
    • Korean Journal of Food Science and Technology
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    • v.19 no.6
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    • pp.537-542
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    • 1987
  • Antioxidative characteristics and it's related substances of fermented soybean sauce in lipid oxidation process were studied. Soybean sauce was prepared according to various periods of fermentation, and model systems were made of cooked ground meat with soybean sauce of various levels of combination (1/10,2/10,3/10,4/10,5/10 in system) and various fermentation periods (0,2,4.6 months). During the storage for 5 weeks at $6^{\circ}C$, antioxidative activities of soybean sauce in the systems were increased with the increase of concentration and fermentation period of soybean sauce. And also in the comparison of the antioxidative effect on the compositions of total phenol content, Maillard browning reaction products and free amino acids in the soybean sauces of the various fermentation periods, the browning products were considered as the major antioxidative substances in soybean sauce.

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Biological Activity Analysis of Potato-derived Polar Compounds (감자 유래 극성화합물의 생리활성 분석)

  • Kim, Dae Yoon;Nam, Jung Hwan;Lee, Jae Kwon
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2019.10a
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    • pp.62-62
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    • 2019
  • Natural substances have various physiological activities. Substances isolated from natural substances are known to be safer and more potent than pharmaceuticals. Potatoes not only act as energy sources but also contain active ingredients such as vitamins and minerals. In particular, the potato contains a large amount of polar compounds, including the saponin in the polar compounds, and the physiological activity of the saponins, such as immunity enhancement, antioxidant and anti-inflammatory is known. In this study, the antioxidative activity of polar compounds from five potatoes was examined by chemical base anti-oxidation assay and cell based anti-oxidation assay. In the chemical base anti-oxidation assay, DPPH experiment showed activity in the order of Hongyoung, Haryung, Seohong, Sumi, and Jayoung. In the LPA experiment, IC50 was lower in the order of Jayoung, Seohong, Sumi, Hongyoung, and Haryung. In the cell based anti-oxidation assay, the smallest amount of ROS was generated when the compound was derived from Haryung and hongyoung, and strong SOD activity was observed in Sumi and Jayoung. The results of this study reveal the antioxidative effect of polar compounds extracted from various kind of potatoes, which will enable the acquisition of new bioactive candidates and the establishment of new profit generation models for farmers.

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Effect of Soybean Saponins on Aflatoxin B1-induced Mutagenicity (대두 사포닌이 Aflatoxin B1으로 유도된 세포돌연변이에 미치는 영향에 관한 연구)

  • 전혜승
    • Journal of Nutrition and Health
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    • v.32 no.1
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    • pp.110-117
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    • 1999
  • Free radicals formed during the metabolism of environmental chemicals are known to induce mutagenicity, while different types of antioxidants suppress this event. The purpose of this study was to determine the antioxidative and antimutagenic effects of soybean saponins, and to examine the relationship between these two effects for the elucidation of mechanisms involved in the anticarcinogenicity of soybean saponins. Also, antioxidative and antimutagenic effects of soybean saponins were compared with those of kinown antioxidants. For the measurement of antioxidative capacity, soybean saponins, L-ascorbic acid, $\alpha$-tocophoerol, and BHT at concentrations between 005 and 1.0mg/ml were tested for their ability to donate hydrogens and to reduce the formation of thiobarbituric substances(TBARS). Antimutagenic activity was examined using the Ames salmonella test system at concentrations of 600, 900 or 1200ug/ml. Study results showed soybean saponins and all of the other antioxidants tested possessed dose-dependent antioxidative activities. The ability of hydrogen-donation to DPPH was in the order of L-ascorbic acid>$\alpha$-tocopherol=>BHT>soybean saponins. TBARS formation was also inhibited by these compounds, in the order of BHT>$\alpha$-tocopherol=L-ascorbic acid>soybean saponins. Soybean saponins and other antioxidants also showed antimutagenicity in a dose-dependent manner. Especially, soybean saponins and BHT were excellent antioxidants compounds, inhibiting near 80% of the mutagenic effects at a concentration of 1200ug/ml. The correlation coefficients between antioxidative capacity and antimutagenicity for each compund was statistically significant at p<0.05. These results indicate that soybean saponins possess antioxidative and antimutagenic capacities. Also, antimutagenicity of saponins and other antioxidats is partly due to their antioxidative activities.

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Studies on Antioxidative Substances of Ganoderma lucidum (영지의 항산화성 물질에 관한 연구)

  • Chung, Dong-Ok
    • Korean Journal of Food Science and Technology
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    • v.24 no.5
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    • pp.497-503
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    • 1992
  • To study antioxidative activities of Ganoderma lucidum, its extracts were fractionated by various organic solvents with different polarity the extracts were purified by thin chromatography, silicagel column chromatography and preparative liquid chromatography. In antioxidative activity tests using thiocyanate method, TBA method and weighing method, fraction 5 from the hexane extract and fraction II from the methanol extract showed antioxidative activity. When the antioxidative activities were expressed as TBA value using a homogeneous liver extracte of rats, the relative antioxidative activities of fraction 5 and fraction II were increased by 13.0% and 54.6%, respectively.

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Study on the Antioxidative Activity of Human Milk (모유의 항산화능에 관한 연구)

  • 정해영;김정선;심경희;김명숙;김규원;이기영
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.5
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    • pp.651-657
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    • 1995
  • The antioxidative activity of each fraction in human milk was examined using H2O2 and FeSO4-induced lipid peroxidation of mouse liver homogenate in order to elucidate the antioxidative substances of human milk. High molecular weight(~>20KD) fraction had more antioxidative effect on lipid peroxidation than low molecular weight(~ <20KD) fraction. Furthermore, the changes of antioxidative enzyme activities were estimated during lactation to study the roles of human milk. The human milk showed high activities of catalase, glutathione(GSH) peroxidase and GSH S-transferase. These results suggest that the antioxidative activities may mostly be attributed to high molecular weight fraction containing catalase, GSH peroxidase and GSH S-transferase.

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