• Title/Summary/Keyword: Sodium nitrite

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Protective influence of selenium on nitrite-induced methemoglobinemia in rabbits (가토(家兎)에서 nitrite에 의한 methemoglobinemia에 미치는 selenium의 영향(影響))

  • Kim, Jin-sang;Han, Jeong-hee;Kim, Kye-soo
    • Korean Journal of Veterinary Research
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    • v.31 no.1
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    • pp.41-47
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    • 1991
  • The protective of influences of sodium selenitc ($Na_2SeO_3$) against the methemoglobinemia with sodium nitrite were investigated on hemoglobin, methemoglobin, glutathione peroxidase and NADH-methemoglobin reductase activity in rabbits which were given 0,1,3 and 9ppm sodium selenite of drinking water for a week. Dietary selenium did not alter total hemoglobin in the blood of rabbits. Selenium was found to decrease nitrite-induced methemoglobin in a dose-dependent manner. The glutathione peroxidase activity was also increased by selenium in all the experimental groups. However, the NADH-methemoglobin reductase activity by selenite did not show significant differences as concerns the methemoglobinemia. These results showed that selenium could inhibit nitrite-induced methemoglobinemia. Its influence of inhibition is suggested that the effect of the reduction of methemoglobin was greatly stimulated by glutathione peroxidase activity.

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Influence of Nitrite and Ascorbic Acid on N-Nitrosamine Formation during Fermentation of Salted Anchovy (멸치젓 숙성중 아질산염과 아스코르브산이 N-Nitrosamine의 생성에 미치는 영향)

  • 김정균;이수정;성낙주
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.26 no.4
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    • pp.606-613
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    • 1997
  • The changes of contents in trimethylamine oxide nitrogen(TMAO-N), trimethylamine nitrogen(TMA-N), dimethylamine nitrogen(DMA-N), nitrite nitrogen(nitrite-N), nitrate nitrogen(nitrate-N) and the effect on the formation of N-nitrosamine(NA) during fermentation were investigated with salted anchovy added different amounts of sodium nitrite, sodium nitrate and ascorbic acid, respectively. When the sodium nitrite was added in salted anchovy, the contents of nitrite-N was decreased during fermentation . Whereas the formation of N-nitrosodimethylamine(NDMA ) was increased . Contents of TMAO-N was decreased, while TMA-N and DMA-N were increased during fermentation in all samples. Addition of ascorbic acid inhibited the formation of NDMA significantly. The formation of NDMA was inhibited by 81.3% at the concentration of 130mM as compared with non-added the control group. The aqueous model system was used for the evaluation of ascorbic acid(inhibitor) or thiocyanate (promoter) on the formation of NDMA using salt-fermented anchovy added with sodium nitrite. The optimum pH on the formation of NDMA was shown to be 3.8, and ascorbic acid inhibited the formation of NDMA whereas thiocyanate promoted. NDMA was not detected in the salt-fermented anchovy (control sample). However it is a possibility to form carcinogenic NDMA in stomach if both saltfer-mented anchovy and the materials contained abundant nitrite or nitrate were took in.

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Antioxidant Activity of Ginseng in a Chicken Model System (닭고기 model system에서의 인삼의 항산화 효과)

  • 전기홍;이무하;김영붕
    • Korean Journal of Poultry Science
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    • v.17 no.2
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    • pp.123-126
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    • 1990
  • Antioxidant activity of ginseng was studied in a chicken model system containing sodium nitrite, sorbic acid and ascorbate with or without ginseng. Results obtained are as follows. 1. The antioxidant effect of ginseng increased with increasing concentration but the increment decreased with increasing concentration. 2. In the sample containing sodium nitrite, sorbic acid and ascorbate, the addition of ginseng enhanced the antioxidant effect. Treatment with ginseng, nitrite, sorbic acid and asrorbate( G-NaSoAs) showed the highest antioxidant activity whereas that with nitrite and sorbic acid(NaSo) did the lowest.

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Effects of High Pressure and Sodium Nitrite Levels on Cured Color Development and Residual Nitrite Concentration in Pork Homogenates

  • Hong, Geun-Pyo;Kim, Ji-Sook;Chun, Ji-Yeon;Min, Sang-Gi
    • Food Science of Animal Resources
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    • v.31 no.5
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    • pp.641-648
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    • 2011
  • This study investigated the effects of high pressure with or without thermal treatment on the cured color development and residual nitrite contents of model meat systems (pork, NaCl and sodium nitrite). At low nitrite levels (${\leq}50{\mu}g/g$), 200 MPa of pressure alone (P) did not develop the cured meat color (p>0.05). Thermal treatment (T) showed curing pigmentation (higher CIE L* and CIE a*), and the impacts were more effective when pressure was combined with thermal treatment (PT). In contrast, nitrite levels did not contribute to the cured meat color when ${\geq}200{\mu}g/g$ of nitrite was added to the meat. At high nitrite levels, although the typical cured color that is induced by thermal treatment did not present by pressure alone, the PT treatment still showed a pinker color with low residual nitrite content compared to the T treatment. The higher the pressure level (300 MPa), the greater the cured meat pigmentation with lower residual nitrite. Therefore, the present study demonstrates the possible application of high pressure, both for cured pigmentation and reducing residual nitrite, respective to typical thermal treatments.

Studies on Substitution Effect of Chitosan against Sodium Nitrite in Pork Sausage (돈육 소시지에 첨가한 키토산의 아질산염 대체 효과에 관한 연구)

  • Youn, Sun-Kyoung;Park, Sun-Mee;Kim, Yeoun-Ju;Ahn, Dong-Hyun
    • Korean Journal of Food Science and Technology
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    • v.33 no.5
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    • pp.551-559
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    • 2001
  • Sodium nitrite which is added in processing of meat process product to develope color and to keep bacteria from growing, produces toxic substance after reacting, bring about deterioration by oxidation and toxic substance. So natural material is needed to substitute this sodium nitrite for. Chitosan which is made of chitin by processing of deacetylase, has various function of antibiosis and antimutation. We studied about the substitution effect of chitosan against sodium nitrite in pork sausage. As a result, of storing the sausage, antimicrobial effect of sodium nitrite was detected by 0.35% of chitosan(M.W. 30 kDa). This chitosan had same color developing effect even though addition content of sodium nitrite reduced until 15 ppm which is less than 1/10 of standard level. And chitosan decreased fast a residual nitrite. This result shows that chitosan inhibited a formation of nitrosamine.

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The Effects of Starvation on Physiological Changes and Stress Response in Cultured Cobitid Loach (Misgurnus anguillicaudatus) Exposed to Sodium Nitrite

  • Hur, Jun Wook;Gil, Hyun Woo;Park, In-Seok
    • Journal of Marine Life Science
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    • v.3 no.2
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    • pp.87-95
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    • 2018
  • To investigate effects of starvation on physiological changes, stress response, and survival of cobitid loach (Misgurnus anguillicaudatus) exposed to sodium nitrite (NaNO2), a 4-week experiment was conducted. Fewer fish survived in the starved group than those in the fed group during the experiment. Starvation resulted in growth retardation, leading to differences in body length and body depth between fed and starved groups. The fed gorup continued to grow and remained in good condition. Blood chemical analysis (plasma cortisol and glucose) showed significant differences in stress response to nitrite exposure between fed and starved groups (p < 0.05). These results suggest that all parameters employed in this study to assess effects of starvation with NaNO2 stress are useful information for researching nutritional status in cobitid loach.

Evaluation of High Molecular Weight of Chitosan as a Replacer of Sodium Nitrite on the Physico-Chemical Properties and Microbial Changes of Low-fat Sausages During Refrigerated Storage (아질산염의 대체제로 고분자 키토산의 첨가가 저지방 소시지의 냉장 저장 중 이화학적 성상 및 미생물의 변화에 미치는 영향)

  • 진구복;오미영;박성용
    • Journal of Animal Science and Technology
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    • v.48 no.4
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    • pp.563-574
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    • 2006
  • This study was performed to investigate if high molecular weight(~200kDa) of chitosan can be a potential possibility to replace with the sodium nitrite in low-fat sausages. pH, proximate analysis, Hunter color values, vacuum purge, expressible moisture(EM, %), texture profile analysis(TPA), shelf-life effect were measured. No differences in physico-chemical properties were observed between controls and chitosan treatments(p>0.05). Since Hunter-a-values(redness) were reduced with the addition of chitosan as compared to the sausages containing sodium nitrite and sodium lactate, it could not be replaced by chitosan completely. However, total plate counts(TPC), thiobarbituric acid reactive substance(TBARS), volatile basis nitrogen(VBN) did not differ between chitosan treatments and controls. These results indicated that the addition of chitosan into meat products would be replaced with sodium nitrite partially, but it may not be completely replaced due to the reduced Hunter-a-values. Further research will be continuously performed to screen the natural ingredients which might have a cured pigment in meat products.

Effects on the Phospholipid Patterns of Liver- and Brain-Tissues of Albino Rats Treated with Sodium Nitrite. (아질산염이 백서의 간 및 뇌조직중 연지질조성에 미치는 영향)

  • 배은상
    • YAKHAK HOEJI
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    • v.19 no.1
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    • pp.47-52
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    • 1975
  • The amount of total lipids nad phospholipids in the rat liver and brain after sodium nitrite treatment was measured together with the composition ratio of phospholipids. The results obtained were as follows : 1) The amount of total lipids and phospholipids was decreased significantly and this decrease was more outstanding in the rat brain liver. 2) The amount of phosphatidylcholine, phosphatidylethanolamine, and sphingomyelin was decreased, whereas that of phosphatidylinositol and diphosphatidylglycerol nitrite treatment of 120mg/kg/day concentration brings inhibition of lipid metabolism in the rat liver and brain.

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Effects of Purple-fleshed Sweet Potato (Ipomoera batatas Cultivar Ayamurasaki) Powder Addition on Color and Texture Properties and Sensory Characteristics of Cooked Pork Sausages during Storage

  • Jin, Sang-Keun;Kim, Yeong-Jung;Park, Jae-Hong;Hur, In-Chul;Nam, Sang-Hae;Shin, Dae-Keun
    • Asian-Australasian Journal of Animal Sciences
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    • v.25 no.9
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    • pp.1329-1337
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    • 2012
  • This study was conducted to evaluate the effects of adding purple-fleshed sweet potato (PFP) powder on the texture properties and sensory characteristics of cooked pork sausage. Sodium nitrite alone and sodium nitrite in combination with PFP were added to five different treatments sausages (CON (control) = 0.01% sodium nitrite, SP25 = 0.005% sodium nitrite and 0.25% purple-fleshed sweet potato powder combination, SP50 = 0.005% sodium nitrite and 0.5% purple-fleshed sweet potato powder combination, PP25 = 0.25% purple-fleshed sweet potato powder, PP50 = 0.5% purple-fleshed sweet potato powder). The sausages were cooked to $74^{\circ}C$, stored at $4^{\circ}C$ for 6 wks, and used for chemical analysis, textural properties, and a sensory evaluation on 0, 2, 4 and 6 wks of storage, respectively. Similar CIE $a^*$ and $b^*$ values were determined in sausages from CON, SP25 and SP50 at the end of storage, and they were higher in CIE $a^*$ but lower in CIE $b^*$ than that of the PP25 and PP50 sausages. Significant differences were observed for brittleness and hardness when PFP was added to the sausages but were not confirmed after 4 wks of storage. The objective color score was influenced by adding PFP; however, the effect was not dose dependent. In overall acceptability, panelists favored the CON, SP25, SP50, and PP50 sausages but did not prefer PP25 sausages at the end of storage. Therefore, adding PFP to cooked pork sausages improved color and texture properties and sensory characteristics, but further study is needed to determine the proper ratio of sodium nitrite and PFP.

A Study on the Effects of Sodium Nitrite on Lipid Oxidation of Pork during Cooking (돈육(豚肉)의 가열처리중(加熱處理中) 아질산염(亞窒酸鹽)이 지질산화(脂質酸化)에 미치는 영향(影響)에 관(關)한 연구(硏究))

  • Jeong, Hong-Gyun;Kim, Ze-Uook
    • Applied Biological Chemistry
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    • v.29 no.2
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    • pp.148-158
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    • 1986
  • The effects of sodium nitrite on weight loss, pH, color development, color and lipid oxidation for the cooking of longissimus pork muscle were studied. Higher cooking temperature and grinding of sample increased the extent of weight loss, but sodium nitrite lowered it. Cooking decreased pH and sodium nitrite lowered the level of decrease in pH. Sodium nitrite developed color and controlled discoloration with higher lightness. The content of malonaldehyde was generally accelerated by cooking, but was considerably reduced at higher cooking temperature and for longer cooking time. Sodium nitrite acted as an antioxidant but the antioxidant effect decreased with increasing cooking temperature and time. Cooking reduced the extent of each lipid on the whole. Phosphatidyl choline and phosphatidyl ethanolamine were the major phospholipids of pork, and their contents decreased during cooking. The major fatty acids in total lipids were oleic acid and palmitic acid. Those in phospholipids were linoleic acid ana palmitic acid. The high level of polyunsaturated fatty acids and essential fatty acids in phospholipids decreased during cooking. Sodium nitrite had an antioxidant effect on polyunsaturated fatty acids in both total lipids ana phospholipids.

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