• 제목/요약/키워드: organic acids.

검색결과 2,010건 처리시간 0.024초

Studies on the Changes in Free Amino Acids and Organic Acids of Takju Prepared with Different Koji Strains (국균을 달리한 탁주 양조 중 유리아미노산 및 유기산의 소장)

  • Lee, Won-Kyoung;Kim, Jung-Rim;Lee, Myung-Whan
    • Applied Biological Chemistry
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    • 제30권4호
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    • pp.323-327
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    • 1987
  • Takju, a Korean traditional rice wine, was prepared using Koji and Nuluk which were inoculated with single or combination culture of Aspergillus niger, Aspergillus shirousamii, and Aspergillus kawachii to investigate changes in mineral, amino acid and organic acid during fermentation. The mineral content showed a range of $1.50{\sim}15.20ppm\;for\;Ca,\;0.22{\sim}0.25ppm\;for\;Cu,\;1.60{\sim}2.10ppm\;for\;Fe,\;0.17{\sim}0.55ppm\;for\;Mn,\;0.68{\sim}1.00ppm\;for\;Zn,\;3.00{\sim}40.50ppm\;for\;K,\;5.25{\sim}19.50\;for\;Mg,\;1.43{\sim}2.95ppm\;for\;Na,\;and\;3.00{\sim}63.0ppm$ for P. It has been found that Takju had 16 kinds of amino acid including aspartic acid. A. niger Nuluk showed the highest contents in total amino acids, while A. kawachii Koji was the lowest in amino acids. The major amino acids were glutamic acid, alanine, leucine, and phenylalanine. The order of organic acids from the highest content in Takju were citric acid> tartaric acid> pyruvic acid> malic acid> lactic acid> acetic acid.

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Changes in Nutrient Levels of Aqueous Extracts from Radish (Raphanus sativus L.) Root during Liquefaction by Heat and Non-heat Processing

  • Bae, Ro-Na;Lee, Young-Kyu;Lee, Seung-Koo
    • Horticultural Science & Technology
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    • 제30권4호
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    • pp.409-416
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    • 2012
  • The amount of cellular components including soluble sugars, amino acids, organic acids and glucosinolates (GLS) was investigated during radish root processing to develop a radish beverage. The radish root was divided into two parts, white and green tissue, and processed separately by extracting the juice from the fresh tissue and from the boiled tissue to compare differences in the components content among the preparations. The overall palatability of both the fresh and boiled extracts from the green part of the radish was higher than that of the same extracts from the white part. The sweetness of extract by boiling increased and its pungency decreased, thereby the palatability increased by being compared to the fresh radish extract. The sweetness was affected by sucrose not by glucose or fructose of monosaccharides by showing different sucrose contents according to treatment comparing palatability. Malic acid was identified as primary organic acid, and the content was higher in both the fresh and boiled extracts from the white part than in the extracts from the green part of the radish. The fresh extract from the green part of the radish contained more essential amino acids, such as threonine and valine, and more hydrophilic amino acids including glutamic acid, aspartic acid, and arginine than those of the fresh extract from the white part, suggesting the green fresh part is more palatable than the white fresh part. The main sulfur compound was ethylthiocyanate in radish, and others were butyl isothiocyanate, dimethyl-disulfide, and 4-methylthio-3-butylisothiocyanate. The four GLS were detected much more in the fresh green and fresh white parts of the radish because they evaporated during boiling. The contents of the four sulfur compounds were higher in the white fresh part than in the green fresh part, which is likely the reason the pungency was higher and the palatability was lower in the white fresh part than in the green fresh part of the radish. The ascorbic acid content was higher in the fresh extract compared to the boiled extracts from both the green and white parts. Taken together, these findings indicate that fresh radish extract is superior to obtain in terms of retaining desirable nutritional and functional components for health.

Stability for Rose Petals Pigment as a Food Material (식품 소재로서 장미꽃잎 색소의 안정성)

  • Yang Mi-Ok;Cho Eun-Ja
    • Journal of the East Asian Society of Dietary Life
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    • 제16권4호
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    • pp.468-473
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    • 2006
  • This study was conducted to develop pigment of flowers as a food material and the red rose(Rosa hybrida L.) was used for this study. To check the possibility of using the rose pigment as a food additive we have extracted the pigment from rose and examined all the factors (pH, temperature, free sugars, organic acids, metal ions) for stability. The results obtained are as follows: In examining the stability of the pigment, the residue of the pigment noticeably decreased with the increase of the pH and the temperature, and among free sugars (fructose, glucose, sucrose) the addition of fructose made the residue the lowest. With the addition of organic acids the samples exhibited the hyperchromic effect throughout the period of the storage. The pigment residue decreased when the amount of the metal ions increased and especially the Cu$^{2+}$ ion was most destructive.

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Stimulatory Effect of Oxygen on the Browning of a Soy Sauce Model System (간장 Model System에서 산소의 갈변촉진효과)

  • Park, Seung-Kyu;Kyung, Kyu-Hang
    • Korean Journal of Food Science and Technology
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    • 제23권4호
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    • pp.523-525
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    • 1991
  • The stimulatory effect of oxygen on the browning of a soy sauce model system (glucose-glycine in 18% NaCl solution) with or without added organic acids were investigated. The group incubated aerobically browned at a significantly higher degree than the group incubated anaerobically. Organic acids also positively affected the browning of the soy sauce model system.

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A Study on Reduction of Food Waste (음식물 쓰레기 소멸화에 관한 연구)

  • 서명교;이상봉;이국의;이상훈
    • Journal of Environmental Health Sciences
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    • 제27권1호
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    • pp.14-19
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    • 2001
  • The physical and chemical transformation and reduction degree of food waste were investigated in a food waste reduction machine using thermophilic bacteria. The first operation of the reduction machine for grain, vegetables, fishes and flesh wastes proceeded during three weeks. The first and second reduction percentages of the wastes were 98.3% and 93.2%, respectively. The residue of food waste was composed of fruits, fish, and vegetables. The temperature distribution of the reduction machine ranged between 30 and 6$0^{\circ}C$ appropriate for growth of thermophilic bacteria. At initial stage the pH in the reduction machine decreased with organic acids produced, but increased as the organic acids decomposed by different thermophilic bacteria. In the reduction machine, the moisture content of the food waste was reduced from 80-90% to 10-20% after 24 hours, and the salinity of residue was 0.29% after the second operation. The degree of odor was most high between 2 and 4 hours.

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Changes in Chemical Characteristics of Traditional Kochujang Meju During Fermentation (재래식 고추장 메주 숙성 중 화학적 특성 변화)

  • Park, Jong-Myeon;Lee, Seung-Su;O, Hun-Il
    • The Korean Journal of Food And Nutrition
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    • 제8권3호
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    • pp.184-191
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    • 1995
  • This study was designed to investigate the changes In chemical characteristics of traditional kochujang increase in fermentation time, whereas that of total sugar decreased rather rapidly during aging of meju. Amino nitrogen content of meju Increased sharply up to 40 days of fermentation and then decreased there after On the other hand, ammoniacle nitrogen content continued to increase with increasing aging time. Initially, maltose was the most abundant free sugar, but was later replaced by glucose or fructose as the fermentation proceeded. Among non-volatile organic acids, pyroglutamic acid was present at an appreciably other organic acids did not change considerably during fermentation. The total free amino acid content Increased up to 40th day of aging and then decreased thereafter The was the most abundant amino acid followed in decreasing order by Try and Glu in meju fermented for 40 days.

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Fermentation Method of Kimchi Using Halophilic Lactobacillus sp. HL-48 and Lactic Acid (Halophilic lactobacillus sp. HL-48균주와 젖산을 이용한 김치의 제조 방법)

  • 최경숙;성창근;김명희;오태광
    • Microbiology and Biotechnology Letters
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    • 제27권3호
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    • pp.246-251
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    • 1999
  • To extend the storage period and to inhibit contamination of Kimchi by Escherichia coli, conditions of Kimchi brining and effects of the fermentation starter, halophilic Lactobacillus HL-48 were investigated. Optimum brining condition for Kimchi was accomplished in 15% NaCl and at pH2.5-3.0 adjusted by lactic acid. Starter-treated Kimchi showed pH 4.2 after 18hr fermentation, while the pH of starter-untreated Kimchi resulted in 3.3. After 36hr fermentation, the number of E. coli in starter-treated Kimchi was found clearly to decrease and not detected macroscopically, but contamination of E. coli (5.3$\times$103CFU/ml) was observed in starter-untreated sample. Organic acids in Kimchi contained organic acids such as oxalic acid, citric acid, malic acid and lactic acid. among ther, lactic acid content was remarkably high in the early fermentation stages. However, from 24hr fermentation, lactic acid content of starter-untreated Kimchi was higher than that of starter-treated Kimchi.

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Anti-Helicobacter pylori Activity of Bifidobacterium spp.

  • Bae, Eun-Ah;Kim, Dong-Hyun;Han, Myung-Joo
    • Journal of Microbiology and Biotechnology
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    • 제10권4호
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    • pp.532-534
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    • 2000
  • The inhibitory effects of different Bifidobacterium spp. on the growth of Helicobacter pylori (HP) were investigated. A significant suppression of HP growth occurred only when HP was inoculated onto a petri dish containing 0.1 mg/ml of Bifidobacterium spp. When HP was separately cultured with B. breve K-110, B. catenulatum K-309, B magnum K-311, B. magnum K-321, and B. cuniculi K-513, the urease activity was also inhibited by these Bifidobacterium spp. Therefore, it appears that these Bifidobacterium spp. excrete a heat-labile inhibitory component for HP growth into the culture medium. Although most organic acids produced by the Bifidobacterium spp. inhibited the growth of HP, the HP growth was not inhibited by the physiological concentrations of organic acids produced in bifidobacteria-cultured media. Accordingly, these results suggest that some Bifidobacterium spp. may produce antibiotic-like compounds (bacteriocins).

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Rheological Characteristics of Wheat Flour Dough with Bifidobacterium sp. (Bifidobacterium sp.로 제조된 반죽의 물성적 특성)

  • An, Duek-Jun;Hong, Jeong-Hoon
    • Journal of the Korean Society of Food Culture
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    • 제17권2호
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    • pp.165-170
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    • 2002
  • In order to economically utilize dough with B. longum, B. infantis and B. brevis as a bread improver, aerotolerance, ${\alpha}-galactosidase$ activity, organic acids, farinograph and extensograph of dough were investigated. In aerotolerance of Bifidobacterium sp., B. longum was highest among tested starters, followed by B. infantis. The ${\alpha}-galactosidase$ activity was highest in the B. longum among tested starters. In organic acids, the contents of lactic acid and acetic acid were the highest in the among tested starters, followed by B. infantis. In farinograms of dough, water absorption and peak time were highest in the B. brevis among tested dough. Extensogram showed that the area increased remarkably in B. longum and B. infantis at 135min of fermentation. Extensibility and resistance to extension of dough were highest in the B. infantis among the dough, followed B. longum.

Gut Development and Health in the Absence of Antibiotic Growth Promoters

  • Dibner, J.J.;Knight, Chris;Yi, G.F.;Richards, J.D.
    • Asian-Australasian Journal of Animal Sciences
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    • 제20권6호
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    • pp.1007-1014
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    • 2007
  • Acceptance of antibiotic growth promoters (AGP) in agricultural animal production is rapidly disappearing. Both government regulations and consumer preference are driving this change. Producers in any country that seek export markets will be forced to give up AGP if they are to sell to the EU and many other markets. This report will first review the history of AGP use in the animal industry and the concerns about development of antimicrobial resistance. A description of the development and structure of the gut and how it is affected by AGP administration will conclude with results of studies to replace AGP with antimicrobial organic acids.