• Title/Summary/Keyword: enzymatic browning reaction products

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Effects of Browning Reaction Products on DNA Damage (효소적 갈변 생성물의 DNA 손상에 대한 효과)

  • Lee, Ji-Eun;Kim, An-Keun
    • Korean Journal of Pharmacognosy
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    • v.31 no.2
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    • pp.240-244
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    • 2000
  • Antimutagenicity profiles of the enzymatic browning reaction products(EBRP) were investigated. The rec-assay with Bacillus subtilis strains $H17(rec^+)$ and $M45(rec^-)$ was carried out using their spores. The biological activities were evaluated for seven different enzymatic browning reaction products, which resulted from the reactions of seven polyphenols with polyphenol oxidase isolated from Ginkgo biloba leaves. In the spore $rec^-$ assay, most of the polyphenolic compounds tested were positive, whereas their enzymatic browning reaction products were tested negative. The mutagenicity of enzymic browning mixtures of the polyphenols and the enzymes obtained from Ginkgo biloba leaves showed negative results in the mutagenicity test using Bacillus subtilis strains $H17(rec^+)$ and $M45(rec^-)$. In the case where polyphenol oxidase inhibitors were added in the enzymatic reaction mixtures with polyphenols, the polyphenols showed mutagenic effect in the spore $rec^-$ assay. This suggests that the activity of polyphenol oxidase is decreased.

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Desmutagenicity of the Enzymatic Browning Reaction Products Which Obtained from Prunus salicina (yellow) Enzyme and Polyphenol Compounds (재래종 황색자두효소 갈변반응 생성물의 돌연변이 억제작용)

  • Ham, Seung-Shi
    • Applied Biological Chemistry
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    • v.30 no.1
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    • pp.71-76
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    • 1987
  • The mutagenicity and desmutagenicity on enzymatic browning reaction products which obtained from prunes salicina (yellow) enzyme and polyphenol compounds were carried out. In the rec-assay on Bacillus subtilis strains H17 and M45, the enzymatic browning reaction products of pyrogallol, hydroxyhydroquinone, 3,4-dihydroxytoluene and catechol of $10^{-2}M$ did not showed mutagenicity. In the effects of various metal ions on the rec-assay, the enzymatic browning reaction products of pyrogallol showed mutagenic activity by $Fe^{3+},\;Mn^{2+},\;Zn^{2+},\;Ni^{2+}$ and $Al^{3+}$. In the enzymatic browning reaction products of hydroxyhydroquinone, $Cu^{2+},\;Mn^{2+}$ and $Pb^{2+}$ were effected in mutagenic action and the enzymatic browning reaction products of catechol was effected in mutagenic action by $Mn^{2+}$. In the DNA-breaking action of enzymatic browning reaction products of pyrogallol, hydroxyhydroquinone, 3,4-dihyroxytoluene and catechol did not show, DNA-breaking action. In the effects of various metal ions on the DNA-breaking action of enzymatic browning reaction products, $Cu^{2+}$ showed DNA-breaking action. In the mutagenicity test on Sal. typhimurium strains TA98 and TA 100 with S-9 mix, 4 kinds of browned substances did sot shove muragenicity, all the browned substances showed strong desmutagenic activity in the presence of benzo $({\alpha})-pyrene$ with S-9 mix.

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Desmutagenicity of Enzymatically Browned Substances Obtained from the Reaction of Prunus salicina (Red) Enzyme and Polyphenols (재래종 적색자두(Prunus salicina) 효소갈변반응 생성물의 돌연변이 억제작용)

  • Ham, Seung-Shi;Hong, Eun-Hee;Omura, Hirohisa
    • Korean Journal of Food Science and Technology
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    • v.19 no.3
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    • pp.212-219
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    • 1987
  • The rec-assay on Bacillus subtilis strains H17$({Rec}^+)$ and M45$({Rec}^-)$, the Ames test with modification of preincubation on Salmonella typhimurium TA98 and TA100 and DNA-breaking test on double strand calfthymus DNA were carried out using enzymatically browned substances obtained from the reaction of Prunus salicina (Red) enzyme and polyphenols. The spore rec-assay of enzymatic browning reaction products of pyrogallol, hydroxyhydroquinone. 3,4-dihydrohyoluene and chlorogenic acid showed non-mutagenic activity The spore rec-assay showed a little influence of ${Zn}^{2+}$ and ${Ni}^{2+}$ on the action of four kinds of enzymatic browning reaction products. The enzymatic browning reaction products of polyphenols did not show DNAbreaking activity. ${Cu}^{2+}$ of various metal ions influenced on DNA-breaking of enzymatic browning reaction products of pyrogallol. However, enzymatic browning reaction products of chlorogenic acid inhibited on DNA-breaking activity. Four kinds of enzymatic browning reaction products showed non-mutagenic activity on Salmonella typhimurium TA98 and TA100 with S-9 mix. In the mutagenicity on Salmonella typhimurium TA98 and TA100 with S-9 mix in the presence of benzo$({\alpha})$pyrene which is the carcinogenic substances, four kinds of enzymatic browning reaction products showed desmutagenic activity.

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Current Studies on Browning Reaction Products and Acidic Polysaccharide in Korean Red Ginseng (홍삼에 함유된 갈변물질 및 산성다당체에 대한 연구현황)

  • Lee, Jong-Won;Do, Jae-Ho
    • Journal of Ginseng Research
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    • v.30 no.1
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    • pp.41-48
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    • 2006
  • In the browning reaction of Korean ginseng, it appears that enzymatic and non-enzymatic browning reaction occurred In initial stage of steaming fresh ginseng at low temperature, and then non-enzymatic browning reaction followed in the drying period after steaming. Browning reaction of red ginseng occurred between $60{\sim}90$ min of steaming at $100^{\circ}C$, and browning pigments of red ginseng were mostly water soluble substances. The structural characteristics of water soluble browning reaction products(WS-BRPs) isolated from Korean red ginseng were showed the presence of hydroxyl, amide carbonyl and aliphatic methane groups. From sugar analysis it was identified that L and S-1, melanoidins isolated from red ginseng, contained two kinds of sugars, glucose and xylose, and the other melanoidin S-2 contained the previous and fructose. In order to find out pertinent methods for the acceleration of browning during ginseng processing, various treatment were made on fresh ginseng with sugars, amino acids and inorganic nitrogenous compounds and the extent of browning was measured. Among sugar tested, maltose resulted in the greatest acceleration of browning followed in decreasing order by glucose and lactose, whereas pentoses, fructose, sucrose and raffinose had negligible effect. A marked browning occurred in ginseng treated with basic amino acids, while the extent of browning was not greatly increased when ginseng was treated with aliphatic amino acids, hydroxyl amino acids, or acidic amino acids. The brown color intensity gradually increased with an increase of glucose concentration far up to 0.5M. L, S-1, and S-2 were found to have an ability to donate hydrogen to DPPH, and also they had anti-oxidative activity in the experiments of hydrogen peroxide scavenging, inhibitory activity in the formation of MDA from linoleic acid, auto oxidation of ok-brain homogenates, lipid peroxidation by the enzymatic and non-enzymatic system in liver microsome fraction, and mitochondrial fraction etc. The amounts of acidic polysaccharide(AP) in red ginseng were higher than those of wild and cultured Panax quinquefolius, Panax notoginseng as well as white ginseng (Panax ginseng). In white ginseng, the AP amount is no difference in root ages or sizes, also, the AP amount of ginseng body was similar to that of rhizome, but was higher than that of leaf and epidermis. Addition of red ginseng acidic polysaccharide(RGAP) increased production of nitric oxide(NO) and tumor necrosis factor (TNF)-$\alpha$ in the rodent macrophage cultures, and treatment of RGAP in vivo stimulated tumoricidal activities of natural killer (NK) cells.

Inhibition of Enzymatic Browning of Taro (Colocasia antiquorum var. esculenta) by Maillard Reaction Products from Glycine and Glucose (Glycine과 Glucose의 Maillard Reaction Products에 의한 토란의 효소적 갈변 저해)

  • 이민영;이민경;김춘영;박인식
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.33 no.6
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    • pp.1013-1016
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    • 2004
  • The inhibitory effect of MRPs (Maillard reaction products) on enzymatic browning of taro was investigated. The MRPs prepared by heating glycine and glucose at 9$0^{\circ}C$ for 7 hr exhibited a strong inhibitory effect on taro polyphenol oxidase (PPO). The maximum inhibitory activity of MRPs against taro PPO was detected toward (+)-catechin, catechol, 4-methylcatechol followed by L-$\beta$-3,4-dihydroxyphenylalanine (L-DOPA) and pyragallol as a substrate. The MRPs synthesized from fructose and glucose with glycine as a amino acid significantly reduced the taro PPO activity. MRPs prepared by higher glycine or glucose concentration showed stronger inhibition against taro PPO. Increasing reaction time of the glycine and glucose promoted the inhibitory effect of MRPs against the PPO activity of taro, whereas the color formation was gradually increased.

An Effects of Enzymatic Browning Reaction Products of Potato on the Antimutagenesis

  • Ham, Seung-Shi;Park, Kun-Pyo;Park, Book-Kil;Deoghwan Oh
    • Preventive Nutrition and Food Science
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    • v.2 no.3
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    • pp.232-235
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    • 1997
  • This study was investigated to determine antimutagenic effects of enzymatic browning reaction products (PEBRPs) obtained by reaction of polyphenol compouns with oxidase extracted from potato. Catechol (Ca) PEBRPs showed the strongeest inhibitor effects with 90% inhibition on benzo-($\alpha$)-pyrene(B($\alpha$)P) induced mutagenesis in Salmonella typhimurium TA98, but he least with40% inhibition on the 2-aminofluorene (2-AF) induced mutagenesis in TA98. The strong antimutagenic activities with 80% inhibition were observed in the presence of 100$\mu\textrm{g}$/plate of hydroquinone(HQ)-PEBRP on the B($\alpha$)P or 3-amino-1,4-dimethyl-5H-pyrido[4,3-b]indole(Trp-P-1) induced mutagenesis in TA98, whereas HQ-PEBRP showed the least antimutagenic effect on 2-AF-induced mutagenesis. The addition of 100$\mu\textrm{g}$ hydroxyhydroquinone(HHQ)-PEBRP to the plate led to approximately 82% inhibitory effects on 2-AF or Trp-P-1 induced mutagenesis in TA98, whereas the least antimutagenicity was obsrved in the4-nitroquinoline-1-oxide(4-NQO) induced mutagenesis in the presence of 100$\mu\textrm{g}$/plate of HHQ-PEBRP. More than 80% inhibiton were observed in the presence of 200$\mu\textrm{g}$/plate of Pyrogalol(Py)-PEBRP on the B($\alpha$)P or Trp-P-1 induced mutagenesis in TA98, but the least with 38% inhibition on 4-NQO induced mutagenesis in TA98. The results indicate that enzymatic browing reaction products of potato have a strong modulatory effect on mutagen induced mutagenesis in TA98.

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The Inhibitory Effect of Polyphenol Oxidase on Polyphenol-Induced DNA Damage of Bacillus subtilis (고초균에서 폴리페놀로 유도된 DNA 손상에 대한 폴리페놀산화효소의 억제효과)

  • Kim An Keun;Kim Yoo Kyung;Kang Young-Sook
    • YAKHAK HOEJI
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    • v.49 no.4
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    • pp.330-334
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    • 2005
  • Antimutagenic activity of the enzymatic browning reaction products (EBRPs) was investigated by using the spore rec-assay with Bacillus subtilis strains H17 $(rec^+)\;and\;M45 (rec^-)$. The EBRPs tested were prepared from the reactions of five different kinds of polyphenols with polyphenol oxidase isolated from the leaves Perilla frutescens. In the spore rec-assay, most of the polyphenolic compounds tested showed positive, whereas only their tested compound showed negative respectively. In addition of polyphenol oxidase inhibitors such as cysteine, glutathione and ascorbic acid to the reaction mixtures consisted with the polyphenol oxidase and polyphenols, the mutagenic effects were increased in the spore recassay. These results show that the activity of polyphenol oxidase may play an important role in the reduction of mutagenicity of polyphenols.

Rec-assay and DNA-breaking Action on the Engymatic Browning Reaction Products -Influence of Cupric Ion Concentration- (효소적(酵素的) 갈변반응(褐變反應) 생성물(生咸物)에 대(對)한 Rec-assay 및 DNA 절단(切斷) 작용(作用) -동(銅) Ion 농도(濃度)의 영향(影響)-)

  • Ham, S.S.;Park, B.K.;Lee, S.Y.;Lee, J.H.;Kang, C.K.;Lee, D.S.;Omura, Hirohisa
    • Applied Biological Chemistry
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    • v.27 no.4
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    • pp.264-270
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    • 1984
  • In order to obtain mutagenic data of enzymatic browning reaction products, we investigated their mutagenicity. The rec-assay with Bacillus subtilis strains $H17(rec^+)$ and $M45(rec^-)$ were carried out with their spores. Detection of double strand breakage in calf-thymus DNA was investigated into sample solution with and without $Cu^{2+}$ by the agarose slab gel electrophoresis. In the rec-assay, catechol, pyrocatechol, DL-dopa, 3,4-dihydroxytoluene, hydroquinone, hydroxyhydroquinone with and without $Cu^{2+}$ in 0.05M ana 0.1M at the enzymatic browning reaction products stowed mutagenic action. And also browning solution of 0.05M hydroxyhydroquinone and catechol with $Cu^{2+}$, hydroquinone with and without $Cu^{2+}$ of 0.1M at the enzymatic browning reaction products were strong mutagenic action. The DNA breakability of the enzymatic browning reaction products of 0.1M pyrogallol was stronger than that of 0.05M pyrogallol browning solution with $Cu^{2+}$ and 3,4-dihydroxytoluene browning solution was stronger than that of 0.01M 3,4-dihydroxytoluene browning solution.

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Antimutagenic Effects of Sweet Potato Enzymatic Browning Reaction Products (고구마효소 갈변반응생성물의 항돌연변이효과)

  • 박귀근;함승시
    • Microbiology and Biotechnology Letters
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    • v.20 no.5
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    • pp.498-504
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    • 1992
  • In order to investigate the antimutagenicity of the sweet potato enzymatic browning reaction products (SPEBRP) were studied the DNA breaking action, spore rec assay and Ames test. In the DNA breaking action of reaction mixture of SPEBRP and polyphenol compounds with an agarose horizonal electrophoresis, catechol (CAT)-SPEBRP and hydroxyhydroquinone (HHQ)SPEBRP inhibited DNA breaking effect in the presence of $Fe^{2+}$. In the spore ree assay using Bacillus subtilis H17(rec+) and M45(rec-), 3,4-dihydroxytoluene (DHT)-SPEBRP showed strong antimutagenic effects on MNNG. In the Ames test using Salmonella tYPhimurium TA 98 and TA 100, pyrogallol(PYR)-, 3,4-dihydroxytoluene (DHT)- and hydroxyhydroquinone (HHQ)-SPEBRPs suppressed about 67%, 71% and 63% in the mutagenesis induced by Benzo($\alpha$)Pyrene(B($\alpha$)p).

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The Significance of Pyrazine Formation in Flavor Generation during the Maillard Reaction

  • Yoo, Seung-Seok
    • Preventive Nutrition and Food Science
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    • v.2 no.4
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    • pp.360-367
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    • 1997
  • The chemistry background of the Maillard reaction focused on pyrazines and factors affecting the reaction products were reviewed. The Maillard reaction, also called a non-enzymatic browning reaction, is quite complex and generates numerous reaction products. In processed foods, it is generally accepted as a key reaction to produce flavor components. Specially, pyrazines possess an important impact character on the roasted foods with other heterocyclic compounds. The Maillard reaction is initiated by condensation between reducing sugar and amino group, and N-glycosylamines are produced via Schiff base with dehydration of water. After the rearrangement of the N-glycosylamines, they follow transformation into deoxyhexosones which are reactive intermediates. Degradation and fragmentation are facilitated by rearranged compounds. By condensation, pyrazine, one of the final Maillard products, is generated as a relatively stable form to provide specific aromas. During the processes of the reaction, chemical or physical environmental parameters affect the formation of the products.

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