• Title/Summary/Keyword: $\alpha$-linoleic acid

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Effects of C18 Fatty Acids on Intracellular $Ca^{2+}$ Mobilization and Histamine Release in RBL-2H3 Cells

  • Kim, Myung Chul;Kim, Min Gyu;Jo, Young Soo;Song, Ho Sun;Eom, Tae In;Sim, Sang Soo
    • The Korean Journal of Physiology and Pharmacology
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    • v.18 no.3
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    • pp.241-247
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    • 2014
  • To investigate the underlying mechanisms of C18 fatty acids (stearic acid, oleic acid, linoleic acid and ${\alpha}$-linolenic acid) on mast cells, we measured the effect of C18 fatty acids on intracellular $Ca^{2+}$ mobilization and histamine release in RBL-2H3 mast cells. Stearic acid rapidly increased initial peak of intracellular $Ca^{2+}$ mobilization, whereas linoleic acid and ${\alpha}$-linolenic acid gradually increased this mobilization. In the absence of extracellular $Ca^{2+}$, stearic acid ($100{\mu}M$) did not cause any increase of intracellular $Ca^{2+}$ mobilization. Both linoleic acid and ${\alpha}$-linolenic acid increased intracellular $Ca^{2+}$ mobilization, but the increase was smaller than that in the presence of extracellular $Ca^{2+}$. These results suggest that C18 fatty acid-induced intracellular $Ca^{2+}$ mobilization is mainly dependent on extracellular $Ca^{2+}$ influx. Verapamil dose-dependently inhibited stearic acid-induced intracellular $Ca^{2+}$ mobilization, but did not affect both linoleic acid- and ${\alpha}$-linolenic acid-induced intracellular $Ca^{2+}$ mobilization. These data suggest that the underlying mechanism of stearic acid, linoleic acid and ${\alpha}$-linolenic acid on intracellular $Ca^{2+}$ mobilization may differ. Linoleic acid and ${\alpha}$-linolenic acid significantly increased histamine release. Linoleic acid (C18:2: ${\omega}$-6)-induced intracellular $Ca^{2+}$ mobilization and histamine release were more prominent than ${\alpha}$-linolenic acid (C18:3: ${\omega}$-3). These data support the view that the intake of more ${\alpha}$-linolenic acid than linoleic acid is useful in preventing inflammation.

Characterization of Lipoxygenase in AOT/Isooctane Reversed Micelles (AOT/isooctane 역미셀계내에서의 lipoxygenase 반응 특성)

  • Chang, Pahn-Shick;Lee, Kwang-In
    • Korean Journal of Food Science and Technology
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    • v.34 no.2
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    • pp.157-163
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    • 2002
  • An investigation was carried out to study the characteristics of lipoxygenase in dioctyl sulfosuccinate (aerosol-OT, AOT)/isooctane revered micelles of microaqueous system containing infinitesimal water. ${\alpha}-Linoleic$ acid as a substrate could be analyzed by the colorimetric methodology using 5%(w/v) cupric acetate-pyridine solution and the activity of lipoxygenase was able to be assayed by the degree of ${\alpha}-linoleic$ acid consumption per minute. Optimal pH, temperature, and R-value ([water]/[AOT]) were determined as the value of 5.0, $25^{\circ}C$, and 10.0, respectively. Kinetic analysis of the enzyme reaction under the optimal conditions showed that the values of $K_m$ and $V_{max}$ were 0.31 mM of ${\alpha}-linoleic$ acid and $384.16{\mu}mol$ of ${\alpha}-linoleic$ acid decomposed/min, respectively. The results indicate the reaction to be lipoxygenase-catalyzed oxidation of ${\alpha}-linoleic$ acid in AOT/isooctane reversed micellar system. The inhibitory effect of natural antioxidants on lipoxygenase showed little inhibitory effect of L-ascrobic acid while ${\alpha}-tocopherol$ showed 72% of inhibitory effect.

Antioxidant Effect of Tocopherols and Tocotrienols and cis/trans-, trans/trans-Hydroperoxide Isomer from Linoleic Acid Methylester (토코페롤류의 항산화작용과 Linoleic Acid Methylester에서 생성된 cis/trans-, trans/trans-Hydroperoxide Isomer)

  • Lee, Hyung-Ok
    • Korean Journal of Food Science and Technology
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    • v.25 no.4
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    • pp.307-312
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    • 1993
  • Antioxdant effect was studied in model system with linoleic acid methylester and tocochromanols $({\alpha}-,\;{\beta}-,\;{\gamma}-,\;{\delta}-tocopherol\;and \;{\alpha}-,\;{\gamma}-,\;{\delta}-tocotrienol)$ under definite autoxidation condition-temperature $(40,\;60,\;80^{\circ}C),\;O_2\;(0,\;10,\;20%\;O_2\;in\;N_2)$. 13-Hydroperoxy-9-cis-11-trans-, 13-hydroperoxy-9-trans-11-trans-, 9-hydroperoxy-10-trans-12-cis-, 9-hydroperoxy-10-trans-12-trans-octadecadienoic acid methylester as the major oxidation product were produced from linoleic acid methylester by autoxidation, analyzed with HPLC and antioxidant activities were compared by their quantitative changes. Experimental results showed that all added tocochromanols except ${\alpha}-tocotrienol$ had antioxidant effect at $60^{\circ}C$, and also ${\alpha}-tocopherol$, ${\alpha}-tocotrienol$ and ${\delta}-tocotrienol$ had prooxidant effect at $80^{\circ}C$. And cis/trans-hydroperoxide was predominantly produced at $40^{\circ}C$, but trans/trans-hydroperoxide at $80^{\circ}C$. Except no reproductive experimental data in produced hydroperoxides amount, the production ratio of cis/trans-:trans/trans-hydroperoxides in the autoxidation condition of range from $40^{\circ}C/10%,\;O_2\;to\;60^{\circ}C/20%\;O_2$ were as follows: ${\alpha}-T>{\alpha}-T_3>{\gamma}-T>{\beta}-T>{\gamma}-T_3>{\delta}-T>{\delta}-T_3$. This result showed that ${\alpha}-tocopherol$ among tocochromanols had the lowest antioxidant effect.

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Linoleic Acid from Bamboo (Phyllostachys Bambusoides) Displaying Potent α- Glucosidase Inhibition (대나무로부터 분리한 linoleic acid의 α-glucosidase 저해활성 연구)

  • Jung, Sun-In;Kang, Su-Tae;Choi, Cheol-Yong;Oh, Kyeong-Yeol;Cho, Jung-Keun;Rengasamy, Rajesh;Park, Ki-Hun
    • Journal of Life Science
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    • v.19 no.5
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    • pp.680-683
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    • 2009
  • Glycosidase inhibitors are major targets in the treatment of type II diabetes, cancer and viral infections. This study was carried out to investigate the glycosidase inhibitory substances from bamboo (Phyllostachys bambusoides). Bamboo was extracted with methanol and then further fractionated with n-hexane, chloroform, n-BuOH and aqueous to get an active fraction. All extracts were evaluated for ${\alpha}$-glucosidase inhibitory activities to identify the n-hexane fraction with 33.5 ${\mu}$g/ml of IC50 value. Active compound 1 in the n-hexane fraction was identified as linoleic acid, which exhibited inhibitory activity with 12.4 ${\mu}$M of IC50 value. Mechanistic analysis showed that linoleic acid exhibited noncompective inhibition. This is the first study in which bamboo is reported to show ${\alpha}$-glucosidase inhibitory activity.

The Role of Active Oxygen on DNA Damage by Linoleic Acid Peroxidation Products (Linoleic acid 산화생성물(酸化生成物)의 DNA손상작용에 있어서의 활성산소종(活性酸素種)의 역할)

  • Kim, Seon-Bong;Kang, Jin-Hoon;Lee, Yong-Woo;Kim, In-Soo;Park, Yeung-Ho
    • Korean Journal of Food Science and Technology
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    • v.19 no.4
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    • pp.311-316
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    • 1987
  • The present paper was carried out to investigate the effects of active oxygen radicals on the DNA damage by linoleic acid peroxidation by using active oxygen scavengers in a linoleic acid-DNA system. DNA was greatly damaged by linoleic acid peroxidation, and the DNA damage was inhibited by the addition of active oxygen scavengers. Among active oxygen scavengers tested, ${\alpha}-tocopherol$ and superoxide dismutase greatly inhibited the DNA damage, but catalase and tris (hydroxymethyl) aminomethane didn't show such effects. Accordingly, singlet oxygen and superoxide anion greatly affected to the DNA damage occurring during linoleic acid peroxidation, and hydrogen peroxide was shown to participate in DNA damage in the early stage of peroxidation. And, the DNA damage by active oxygen radicals was mainly induced in the early stage of linoleic acid peroxidation.

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Formation of Cyclodextrin Adsorbent Using Fatty Acid as a Ligand and Fractionation of $\alpha$-, $\beta$- and ${\gamma}$-cyclodextrins (Fatty Acid를 Ligand로한 Cyclodextrin Adsorbent의 제조와 $\alpha$-, $\beta$-, ${\gamma}$-Cyclodextrin의 분획)

  • 정승환;박동찬이용현
    • KSBB Journal
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    • v.10 no.5
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    • pp.491-498
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    • 1995
  • In order to fraclionate ${\alpha}$-, ${\beta}$- and ${\gamma}$-cyclodextrins(CDs) from CD reaction mixture, various CD adsorbents were manufactured using fatty acids as the ligand molecules and anion exchange resins as matrix. Among several anion exchange resins, DEAE Cellulose was found to be the most suitable matrix for binding fatty acid. The binding stability between DEAE Cellulose and capric acid was tested under the various operation conditions, such as temperature, ethanol concentration, and ionic strength. Specific CD adsorbents manufactured with different chain-length fatty acids, saturated and unsaturated, were compared in terms of the recovery yield and selectivity of ${\alpha}$-, ${\beta}$- and ${\gamma}$-CDs. Stearic acid (C18, saturated) was identified as the most effective ligand for fractionation of ${\alpha}$-CD, and linoleic acid ((C18, unsaturated ) for ${\beta}$-CD. The spacer length between the matrix and ligand was required for effective adsorption of CDs, and the double bond in fatty acid molecules was also acted as an important factor determining recovery yield and selectivity. The elusion patterns of ${\alpha}$- and ${\alpha}$-, ${\beta}$-CD from column packed with stearic acid and linoleic acid CD adsorbents were also investigated at the various elusion conditions for fractionation of ${\alpha}$- and ${\beta}$-CD.

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Antioxidant Effect of Korean Red Ginseng Extract on Aqueous Linoleic Acid and LDL (수용성계의 Linoleic Acid와 LDL에 대한 한국산 홍삼의 산화방지효과)

  • Lee, J.W.;Lee, S.K.;Do, J.H.;Sung, H.S.;Lee, H.O.
    • Applied Biological Chemistry
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    • v.40 no.4
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    • pp.283-288
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    • 1997
  • The antioxidant activities of Korean Red Ginseng Extract(RGE) and ${\alpha}-tocopherol$, as reference compound, were tested with HPLC and fluorometry which measure the MDA after reacting an aqueous 1% linoleic acid buffer solution, and LDL(1 mg protein/ml) buffer solution with $H_2O_2{\;}and{\;}FeCl_2$. The generation of conjugated-diene in LDL(0.25 mg protein/ml) was also measured by spectrometry. MDA determination showed the antioxidant effect on linoleic acid oxidation with oxidation inhibition ratio of 71.8% and 76.1%, respectively, by addition of 1000 ppm RGE and 100 ppm ${\alpha}-tocopherol$. LDL(1 mg protein/ml) oxidation was inhibited by 25.2% and 21.2%, respectively, by addition of 200 ppm REG and 100 ppm ${\alpha}-tocopherol$. The generation of conjugated diene in LDL(0.25 mg protein/ml) was also inhibited by 44.2%, by addition of 50 ppm RGE.

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Effect of Lipoxygenase, ${\beta}-Carotene$, ${\alpha}-Tocopherol$ and Water Activity on the Oxidation of Linoleic Acid in Starch-Solid Model System (고형상의 모델시스템에 있어서 리놀레산의 산화에 미치는 리폭시게나아제, 카로틴, 토코페롤 및 수분활성의 영향)

  • Kim, Hae-Gyoung;Cheigh, Hong-Sik;Song, Yeong-Ok
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.21 no.1
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    • pp.23-28
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    • 1992
  • Starch solid model system was employed to investigate the effect of lipoxygenase, ${\beta}-carotene$, ${\alpha}-tocopherol$ and water activity on the oxidation of linoleic acid. The rate of oxidation of linoleic acid by lipoxygenase was increased with the increase in water activity, Addition of ${\beta}-carotene$ and ${\alpha}-tocopherol$ to this system has been shown to inhibit the oxidation of linoleic acid and ${\alpha}-tocopherol$ was more effective antioxidant than ${\beta}-carotene$. However, an increase in the concentration of ${\beta}-carotene$ was found to have a strong antioxidant effect in the solid model system. And also the antioxidative action of ${\beta}-carotene$ was increased with increasing water activity in this system.

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DNA Damage of Lipid Oxidation Products and Its Inhibition Mechanism (지질산화생성물의 DNA손상작용 및 그 억제기구)

  • KIM Seon-Bong;KANG Jin-Hoon;PARK Young-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.20 no.5
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    • pp.419-430
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    • 1987
  • The damage of plasmid DNA by lipid peroxidation and its inhibition were investigated through the model system of DNA and linoleic acid at $37^{\circ}C$. The degree of DNA damage increased in proportion to the increase of concentration and peroxidation of linoleic acid. DNA damage induced from linoleic acid peroxidation was greatly inhibited by the addition of active oxygen scavengers, especially, singlet of oxygen scavenge$(\alpha-tocopherol,\;cysteine)$ and superoxide anion scavenger(superoxide dismutase, ascorbic acid) in reaction system. These active oxygens, such as superoxide anion and hydrogen peroxide were rapidly generated in the early stage of peroxidation (POV below 100 mg/kg) and also scanvenged by the addition of superoxide dismutase and catalase, respectively. Hydroperoxide isolated from autoxidised linoleic acid showed DNA damage. Hydroperoxide induced-DNA damage was not inhibited by active oxygen scavengers. Lipid oxidation products, malonaldehyde and hexanal, also influenced on the DNA damage. Accordingly, it is speculated that DNA damage by lipid oxidation products is due to active oxygens such as singlet oxygen and superoxide anion formed in the early stage of peroxidation, direct action of hydroperoxide and formation of low molecular carbonyl compound-DNA complex. Furthermore, DNA damage induced by lipid peroxidation was remarkably inhibited by the addition of active oxygen scavengers and natural antioxidative fractions extracted from garlic and ginger. These antioxidative fractions also suppressed the generation of active orygens and linoleic acid oxidation. It is assumed that the inhibition of DNA damage by garlic and ginger extracts is due to the scavenging effect of active oxygens and the inhibition of hydroperoxide and oxidation products formation.

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Influence of Dietary n3 Polyunsaturated Fatty Acids on Plasma Lipid-Lowering Effect and Peroxidation Level In Rats (쥐에서 n3계 불포화지방산 식이의 혈장지질 저하효과와 과산화물형성에 미치는 영향)

  • Choi, Joo Sun
    • Journal of Nutrition and Health
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    • v.23 no.6
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    • pp.408-417
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    • 1990
  • To compare the hypolipidemic effect of n6 linoleic acid n3 $\alpha$-linolenic acid and n3 eicosapentaenoic acid plus docosahexaenoic acid, male Sprague Dawley rats weighing about 450g were fed the experimental diets for 6 weeks which composed of fat at 15%(W/W) level and were different only in dietary PUFA. Dietary fat was corn oil, perilla oil, and fish oil concentrate as a source of n6 linoleic acid, n3 $\alpha$-linolenic acid, and n3 eicosapentaenoic acid+docosahexaenoic acid, respectively. Plasma total Chol and HDL-chol levels were significantly-lower in fish oil group than in corn oil and erilla oil groups. Plasma cholesterol lowering effect of PUFa was in the order of n3 EPA+DHA>n3 $\alpha$-linolenic acid>n6 linoleic acid. Plasma TG was significantly lower in both fish oil and perilla oil groups than in corn oil group. Plasma TG-lowering effect was greater by n3 PUFA (EPA+DHA, $\alpha$-linolenic acid) than by n6 PUFA(linoleic acid). However, there were no significant effects on lipoprotein pattern hemolysis, and the levels of tocopherol and malondialdehyde in plasma and RBC by difference dietary fat with sufficient tocopherol supplement. Liver superoxide dismutase activity was significantly increased in proportion to the degree of fat unsaturation, thereby resulted in the lower level of MDA in fish oil group. In conclusion, fish oil and perilla oil rich in n3 PUFA may have important nutritional applications in the prevention and treatment of atherosclerotic disease.

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