• Title/Summary/Keyword: linoleic acid system

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Development of Hydrophobically Modified Casein Derivative-Based Delivery System for Docosahexaenoic Acids by an Acid-Induced Gelation

  • Ho-Kyung Ha;Dan-Bi Woo;Mee-Ryung Lee;Won-Jae Lee
    • Food Science of Animal Resources
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    • v.43 no.2
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    • pp.220-231
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    • 2023
  • Although omega-3 fatty acids including docosahexaenoic acid (DHA) contain various health-promoting effects, their poor aqueous solubility and stability make them difficult to be induced in dairy foods. The aims of this research were to manufacture casein derivative-based delivery system using acid-induced gelation method with glucono-σ-lactone and to investigate the effects of production variables, such as pH and charged amount of linoleic acid, on the physicochemical properties of delivery systems and oxidative stability of DHA during storage in model milk. Covalent modification with linoleic acid resulted in the production of casein derivatives with varying degrees of modification. As pH was reduced from 5.0 to 4.8 and the charged amount of linoleic acid was increased from 0% to 30%, an increase in particle size of casein derivative-based delivery systems was observed. The encapsulation efficiency of DHA was increased with decreased pH and increased charged amount of linoleic acid. The use of delivery system for DHA resulted in a decrease in the development of primary and secondary oxidation products. An increase in the degree of modification of casein derivatives with linoleic acid resulted in a decrease in the formation of primary and secondary oxidation products than of free DHA indicating that delivery systems could enhance the oxidative stability of DHA during storage in model milk. In conclusions, casein derivatives can be an effective delivery system for DHA and charged amount of linoleic acid played a key role determining the physicochemical characteristics of delivery system and oxidative stability of DHA.

Function of the Water Soluble Browning Reaction Products Isolated from Korean Red Ginseng 2. Linoleic acid, Ox-brain autoxidant and Fe$^{2+}$ ADP/NAD system (홍삼으로부터 분리한 수용성 갈변물질의 기능성 연구 2. Linoleic acid, Ox-brain autoxidant및 Fe$^{2+}$ ADP/NADP system에서 항산화 활성 중심으로)

  • 이종원;손형옥;도재호
    • Journal of Ginseng Research
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    • v.24 no.1
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    • pp.35-40
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    • 2000
  • The purpose of this study was to investigate the antioxidant activities of water soluble browning reaction products (WS-BRPs) isolated 5\ulcorneron korea red ginseng. Antioxidant activities of WS-BRPs were examined with the various systems. All three WS-BRPs (L, S-1 and S-2) were found to have an ability to linoleic acid, Ox-brain autoxidant, Fe$^{2+}$ ADP/NAD system and cumene hydroperoxide system. Especially, S-2 was had the strongest activity of theses three WS-BRPs to scavenge free radicals such as more effective than S-1, L. MDA determination showed the antioxidant effect on linoleic acid oxidation inhibition ratio of 22.5%, 31.7%, 31.9% and 33.5%, respectivity Especially; Ox-brain autoxidant was strong inhibited activity by 49.52%,62,44,97.54% by addition of various concentration. But three WS-BRPs showed weak inhibitory activity on lipid peroxidation in rat hepatic microsomes induced enzymatically and nonenzymaticallyly

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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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Free Radical Scavenging Activity and Inhibition of Linoleic Acid Peroxidation of Commercial Tocotrienol Fraction

  • Kim, Joo-Shin;Chung, Hau-Yin
    • Preventive Nutrition and Food Science
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    • v.12 no.3
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    • pp.177-180
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    • 2007
  • Tocotrienols (T3) are minor plant constituents found abundantly in rice bran, which provide a significant source of vitamin E in animal feeds. T3 was reported to have an intrinsic hypocholesterolemic effect by inhibiting HMG-Co A reductase. It has similar antioxidative properties as tocopherols in food and biological system due to their similar chemical structures. However, the antioxidant activity and mechanism of T3 to scavenge free radicals and to inhibit the peroxidation of linoleic acid are less understood. The purpose of this study was to investigate the scavenging effect of T3 on free radicals and its inhibition of peroxide formation. Free radical scavenging activity was monitored by the DPPH (1,1-diphenyl-2-picrylhydrazyl) method whereas inhibition of linoleic acid peroxidation was evaluated using the thiocyanate method. Thiobarbituric acid (TBA) test was used to determine malonaldehyde formation from linoleic acid peroxidation. Free radical scavenging activity increased with increasing concentration levels of T3. T3 exhibited 38.2, 78.6, 92.7 and 96.2% radical scavenging activity at concentrations of 2, 8, 32 and 128 ppm, respectively. At 128 ppm, it was highly effective in inhibiting linoleic acid peroxidation. The activity of T3 evaluated by the thiocyanate method showed low absorbance values indicating a high level of antioxidant activity. All treatments showed similar trends in antioxidant activity when evaluated by both the thiocyanate method and TBA test.

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 Active Oxygens by Linoleic Acid Peroxidation (Linoleic acid의 산화(酸化)에 의한 활성산소종(活性酸素種)의 생성(生成))

  • Kang, Jin-Hoon;Yeum, Dong-Min;Choi, Su-An;Kim, Seon-Bong;Park, Yeung-Ho
    • Korean Journal of Food Science and Technology
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    • v.19 no.6
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    • pp.471-474
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    • 1987
  • The formation of superoxide anion (${\cdot}O^{-}_2$)and hydrogen peroxide ($H_2O_2$) during linoleic acid peroxidation were investigated in linoleic acid-aqueous system at $37^{\circ}C$. Superoxide anion was rapidly generated in the early stage of peroxidation, marked to 0.375 (absorbance at 560mm) in the 12mM linoleic acid (POV below 80millieq./kg) incubated for 1 day and then decreased with time-elapsed. Hydrogen peroxide was also rapidly generated in the early stage of peroxidation regardless of linoleic acid concentration. And, superoxide dismutase(SOD) and catalase greatly inhibited the formation of superoxide anion and hydrogen peroxide, respectively.

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Effect of Lipoxygenase and Other Factors on the Co-oxidation of $\beta$-Carotene in Aqueous Model System (액상 모델 시스템에서 베타-카로틴의 Co-oxidation에 대한 리폭시게나아제 및 기타 관련 인자들의 영향)

  • 최홍식;김혜경
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.2
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    • pp.202-207
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    • 1995
  • The effects of lipoxygenase, linoleic acid, tocopherol and pH on the co-oxidation of $\beta$-carotene in the aqueous system were studied. It showed that the co-oxidation of $\beta$-carotene was noticeable at both pH 7.4 and 9.0. As the concentraitons of linoleic acid and $\beta$-carotene increased, the rate of oxidation of $\beta$-carotene tended to be increased. However, $\alpha$- and $\delta$-tocopherol retarded the co-oxidation of $\beta$-carotene. As the concentrations of tocopherols increased, $\beta$-carotene was more stabilized, generally. But low concentration of $\alpha$-tocopherol(10-4M) acted more effective antioxidant than high concentration of it(10-3M) at pH 7.4. The antioxidant effect of tocopherol greatly depended on pH ; it was outstanding at pH 7.4.

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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.

Antioxidative Components of Pueraria Root (칡뿌리의 항산화 성분)

  • Oh, Man-Jin;Lee, Ka-Soon;Son, Hwa-Young;Kim, Seung-Yeol
    • Korean Journal of Food Science and Technology
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    • v.22 no.7
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    • pp.793-798
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    • 1990
  • As a search for natural antioxidants, antioxidative fractions in pueraria root were extracted and identified using column chromatography, thin layer chromatography and high performance liquid chromatography. Components which have most effective antioxidative activities were futher identified by IR and GC/MS. The strongest antioxidative component of pueraria root methanol extract was identified as puerarin. Puerarin obtained from pueraria root was practically effective as antioxidant at the level of 100 ppm. Antioxidative activity of the puerarin was higher in linoleic acid-water system than in a linoleic acid substrate. Puerarin, daidzin and daidzein contents in pueraria root juice were 0.39%, 0.45% and 0,03%, respectively.

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Bioproduction of trans-10,cis-12-Conjugated Linoleic Acid by a Highly Soluble and Conveniently Extracted Linoleic Acid Isomerase and an Extracellularly Expressed Lipase from Recombinant Escherichia coli Strains

  • Huang, Mengnan;Lu, Xinyao;Zong, Hong;Zhuge, Bin;Shen, Wei
    • Journal of Microbiology and Biotechnology
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    • v.28 no.5
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    • pp.739-747
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    • 2018
  • The low solubility and high-cost recovery of Propionibacterium acnes polyunsaturated fatty acid isomerase (PAI) are key problems in the bioproduction of high value-added conjugated linoleic acid (CLA). To improve the solubility of recombinant PAI, six chaperone proteins were coexpressed with PAI. Introduction of GroELS proteins dramatically improved the PAI solubility from 29% to 97%, with increased activity by 57.8%. Combined expression of DnaKJ-GrpE and GroELS proteins increased the activity by 11.9%. In contrast, coexpression of DnaKJ-GrpE proteins significantly reduced the activity by 57.4%. Plasmids pTf16 harboring the tig gene and pG-Tf2 containing the tig and groEL-groES genes had no visible impact on PAI expression. The lytic protein E was then introduced into the recombinant Escherichia coli to develop a cell autolysis system. A 35% activity of total intracellular PAI was released from the cytoplasm by suspending the lysed cells in distilled water. The PAI recovery was further improved to 81% by optimizing the release conditions. The lipase from Rhizopus oryzae was also expressed in E. coli, with an extracellular activity of 110.9 U/ml. By using the free PAI and lipase as catalysts, a joint system was established for producing CLA from sunflower oil. Under the optimized conditions, the maximum titer of t-10,c-12-CLA reached 9.4 g/l. This work provides an effective and low-cost strategy to improve the solubility and recovery of the recombinant intracellular PAI for further large-scale production of CLA.