• 제목/요약/키워드: low molecular carbonyl compounds

검색결과 4건 처리시간 0.017초

An in vivo Study of Lipid Peroxidation in Rats under Conditions of Oxidative Stress and the Antioxidant Effects of Probucol

  • Kim, Songsuk
    • Nutritional Sciences
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    • 제6권2호
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    • pp.94-99
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    • 2003
  • The purpose of this study was to investigate in vivo lipid peroxidation in rats under conditions of streptozotocin-induced oxidative stress and the antioxidant effects of probucol. In vivo lipid peroxidation was observed by measuring low molecular weight aldehydes and related carbonyl compounds in rat urine. Three groups of male Wistar rats weighing 165-190 g were used: normal (N), streptozotocin-induced oxidative stress (OS) and oxidative stress plus probucol treatment (P). following streptozotocin treatment of the rats, a variety of secondary lipid peroxidation products were increased. The levels of butanal, hexanal, hex-2-enal, kept-2-enal, octanal, non-2-enal, deca-2,4-dienal, 4-hydroxyhex-2-enal, 4-hydroxyno n-2-enal, malondi aldehyde(MDA), and unknown carbonyl compounds were significantly increased in the oxidative stress group compared to the control group. Treatment with probucol resulted in significant decreases in buoal, hexanal, hex-2-enal, octanal, deca-2,4-dienal, 4-hydroxyhex-2-enal, MDA and unknown carbonyl compounds. Hept-2-enal, hepta-2,4-dienal and non-2-enal appeared to have a tendency to decrease due to pobucol treatment.

Maillard 반응에서 유래되는 저분자 Carbonyl 화합물의 DNA손상작용에 대한 활성산소종의 역할 (Role of Active Oxygens on DNA Damage by Low Molecular Carbonyl Compounds Derived from Maillard Reaction)

  • 김선봉;박성준;강진훈;변한석;박영호
    • 한국식품영양과학회지
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    • 제19권6호
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    • pp.565-570
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    • 1990
  • Plasmid pBR322 DNA와 Maillard 반응생성물중 카르보닐화합물인 glyoxal, methyl glyoxal, dihydroxyacetone, diacetyl, glyceraldehyde, glycolaldehyde 및 furfural 등과 각각 37$^{\circ}C$에서 반응시켰을때 나타나는 DNA 손상능과 활성산소소거제에 의한 DNA손상억제 작용을 agarose gel 전기영동을 통하여 살펴보았다. 카르보닐화합물을 37$^{\circ}C$에서 6시간 동안 반응시켰을 경우, furfural을 제외한 모든 카르보닐화합물에 DNA 손상능이 나타났는데, 그 중에서도 glyoxal, methyl glyoxal 및 dihyd-roxyacetone 이 diacetyl, glyceraldehyde 및 glyco-laldehyde보다 BNA의 손상능이 크게 나타났다. 또한 plasmid DNA와 카르보닐화합물의 반응계에 각종 활성산소소거제의 첨가를 통하여 이들 카르보닐화합물에 대한 DNA의 손상을 검토한 결과 일중항산소, 과산화수소, superoxide anion 등이 주요원인물질로 밝혀졌으며, hydroxyl radical은 그 작용이 미약하거나 거의 영향을 나타내지 않는 것으로 나타났다.

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Effect of Carnosine and Related Compounds on Glucose Oxidation and Protein Glycation In Vitro

  • Lee, Beom-Jun;Park, Jae-Hak;Lee, Yong-Soon;Cho, Myung-Haing;Kim, Young-Chul;Hendricks, Deloy G.
    • BMB Reports
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    • 제32권4호
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    • pp.370-378
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    • 1999
  • The effects of carnosine and related compounds (CRC) including anserine, homocarnosine, histidine, and ${\beta}$-alanine, found in most mammalian tissues, were investigated on in vitro glucose oxidation and glycation of human serum albumin (HSA). Carnosin and anserine were more reactive with D-glucose than with L-lysine. In the presence of $10\;{\mu}M$ Cu (II), although carnosine and anserine at low concentrations effectively inhibited formation of ${\alpha}$-ketoaldehyde from D-glucose, they increased generation of $H_2O_2$ in a dose-dependent manner. Carnosine, homocarnosine, anserine, and histidine effectively inhibited hydroxylation of salicylate and deoxyribose degradation in the presence of glucose and $10\;{\mu}M$ Cu (II). In the presence of 25 mM D-glucose, copper and ascorbic acid stimulated carbonyl formation from HSA. Except for ${\beta}$-alanine, CRC effectively inhibited the copper-catalyzed carbonyl formation from HSA. The addition of 25 mM D-glucose and/or $10\;{\mu}M$ Cu (II) to low density lipoprotein (LDL) increased formation of conjugated dienes. CRC effectively inhibited the glucose and/or copper-catalyzed LDL oxidation. CRC also inhibited glycation of HSA as determined by hydroxymethyl furfural and lysine with free ${\varepsilon}$-amino group. These results suggest that CRC may play an important role in protecting against diabetic complications by reacting with sugars, chelating copper, and scavenging free radicals.

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화학적 산화법에 의한 부식산의 분해처리 기술에 관한 연구(II) - 오존처리에 따른 분해특성 분석 - (Characterization of Humic Acid in the Chemical Oxidation Technology(II) - Characteristics by Ozonation -)

  • 이동석;정영림
    • 분석과학
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    • 제13권2호
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    • pp.241-249
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    • 2000
  • 본 연구는 수질계의 용존 유기 탄소화합물의 주성분인 부식산을 화학적 산화방법 중 오존처리를 사용하여 $UV_{254}$ 흡광도, TOC, $^{13}C-NMR$, 한외여과법 등을 이용하여 오존 처리후의 특성 변화를 조사하였으며, 오존 산화물의 GC/MS 분석을 통하여 포름알데히드, 아세트알테히드, 아세톤, 글리옥살 및 메틸글리옥살 등의 생성을 확인하였다. $UV_{254}$ 흡광도와 TOC의 측정결과 부식산 농도 20, 100ppm 모두 오존처리시간 20분 이내에서 80%의 색도 감소율과 30분 이내에서 40-50%의 TOC 제거율을 나타냈고, 그 이후의 처리시간에서는 일정한 색도 감소율 및 제거율을 나타냈다. $^{13}C-NMR$, 한외여과법을 통한 실험결과, 오존처리에 의해 고분자량의 부식산이 산화, 분해됨으로서 알데히드, 카르복실산 등이 풍부한 저분자량의 단위체로 나뉘어지며 생물학적 분해가 용이한 지방족 탄소가 풍부한 구조로 전환됨를 확인하였다.

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