• Title/Summary/Keyword: reducing acidity

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The effect of Sodium chloride concentrations of Soaking-Water and Submaterials on Tongbaechu-Kimchi Taste and Fermentation (침지수의 염도 및 부재료가 통배추김치의 맛과 숙성에 미치는 영향)

  • 김명선
    • Journal of the East Asian Society of Dietary Life
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    • v.5 no.2
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    • pp.49-62
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    • 1995
  • This study was investigated to find effects of soaking-water salt concentration and submaterial on Kimchi taste and fermentation period. several parameters such as pH, acidity, reducing sugar, amino acid and sensory evaluation during fermentation at 2$0^{\circ}C$ were experimented. The results are as follows : As fermentation period increases, pH and content of reducing sugar of Kimchi have decreased. But acidity has increased. Especially, the pH of all samples rapidly decreased to a extent of pH 4.2. During fermentation the acidity and content of reducing sugar in 12% soaking-water were higher than those in 16% and 20%. Content of reducing sugar I Kimchi was observed to play an important role for the overall taste. As a result of sensory evaluation during fermentation, Kimchi in 16%, 2.6% and in 20%, 3.7%. Sensory evaluation revealed that leek-added Kimchi was highly evaluated in crispness, sour taste, flavor and overall acceptability. These results suggested that Kimchi fermented for 4days at 2$0^{\circ}C$ with 16% salt concentration of soaking water and leek as submaterials should taste most desirable.

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Effect of Whey Calcium on the Quality Characteristics of Kimchi (유청칼슘 첨가가 김치의 품질특성에 미치는 영향)

  • 박우포;박규동
    • Food Science and Preservation
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    • v.11 no.1
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    • pp.34-37
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    • 2004
  • Calcium powder from whey (WCF) was added to enrich the calcium content of kimchi, and the mixing ratios of it to salted Chinese cabbage were 0.5, 1.0 and 1.5%. Quality characteristics of kimchi such as pH, titratable acidity, reducing sugar content and microbial loads were measured during fermentation at 10$^{\circ}C$. Kimchi samples with WCF showed a higher level in pH and titratable acidity than that of control during fermentation. Kimchi having higher WCF maintained a higher in pH and titratable acidity, and titratable acidity was above 1.0% about 12 days in kimchi sample with 0.5% WCF. Reducing sugar content was steadily decrease after 5 days, and control maintained a higher than others. Microbial load was similar until 10 days, but control was lower than kimchi samples with WCF. Based on the titratable acidity, kimchi with WCF had a limitation in shelf life.

Changes in Fermentation Characteristics of Kimchi Added with Leek (부추첨가 김치의 발효특성 변화)

  • 이귀주;김유경
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.28 no.4
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    • pp.780-785
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    • 1999
  • The effect of addition in different amounts of leek(4, 8, 12% respectively) during fermentation of kimchi was investigated. Fermentation characteristics such as pH, acidity and total reducing sugars as well as microbiological properties were determined. During fermentation, pH was more slowly lowered in kimchi added with leek than in control and titrable acidity of these kimchi was lower than that of control. Viable cells of total bacteria and lactic acid bacteria in these kimchi were higher than that of control during fermentation. Content of total reducing sugars was higher than that of control. Three kinds of reducing sugars such as fructose, glucose and galactose were detected and the dominant one appeared to be fructose. These results suggested that addition of leek seems to retard fermentation of kimchi due to their anti microbial actvity.

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Effect of Chitosan on Storage Stability of Nabak Kimchi (나박김치의 저장성 향상을 위한 Chitosan 첨가의 효과)

  • 전순실
    • Korean Journal of Plant Resources
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    • v.11 no.1
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    • pp.111-117
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    • 1998
  • The effect of chitosan on physicochemical and organoleptic properties of Nabak kimchi was studied during fermentation at 2$0^{\circ}C$ . Viscosity of the juice of Nabak kimchi added with chitosan was lower than that of control group. The viscosity was gradually increased during storage period, especially from 5 days to ,7 days of storage. Initial pH was higher in control group than inchitosan groups. The pH of controlgroup decreased rapidly during 4 days of storage. The pH of chitosan groups was slightly increased during the first 3 days of storage and decreased thereafter. Acidity was rapidly increased from 3 to 5 days. Reducing sugar contents increased up to 3 days and decreased thereafter. Acidity was rapidly increased from 3 to 5 days. Reducing sugar contents increased upto 3 days and decreased therafter. Glutamic acid, alanine, threonine, aspartic acid, proline and valine were the major free amino acids, and as the fermentation preceeded they were increased gradually. There were signigicant differences in saltiness, sourness and aged odor in sensory evaluation of Nabak kimchi solution during fermentation at 2$0^{\circ}C$.

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Selection of Mixing Ratio for Preparation of Mixed Vegetable Juice (과채쥬스 제조를 위한 혼합조건의 선정)

  • 이규희;고영수;최희숙;김우정
    • Korean journal of food and cookery science
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    • v.11 no.2
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    • pp.113-118
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    • 1995
  • A preferable mixing ratio of a six-vegetable juice was suggested in this study. The vegetables used for preparation of mixed vegetable juice were carrot(Ct), cabbage(Cg), pear(Pr), cucumber(Cr), celery (Cy) and dongchimi(Di). The characteristics of pH, titratible acidity, reducing sugar, turbidity, solids, color and acceptability were compared to determine the mixing ratio. The vegetables showed a wide ranHe of pH of 3.70-6.01, acidity of 28.92 uv~74.40 nd and reducing sugar of 1.20ft~ 12.69fo. Celery juice showed the higest suspension stability and "b" value and the lowest values in Hunter "L" and "a" values among the 6 vegetable juice. The preferable mixing ratio of two-vegetable juice selected were Ct-Di(1 : 4), Cg-Pr(1 : 3) and Cr-Cy(3 : 1). From the various ratio of the three of biary mixtures of Cg-Pr(1 : 3): Ct-Di(1 : 4): Cr-Sy(3 : 1), two ratio of 5.0 : 2.5 2.5(V-6A) and 6.0 : 2.0 : 2.0(V-6B) were suggested as the most prefered six-vegetable juice. Pear, dongchimi and cucumber were found to be influential on the preference. The pH and titratible acidity of the two juices with different ratios were in the range of 4.92~4.98 and 36.g∼37.4 ml, respectively.

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Dongchimi Fermentation for Nangmyeon - Changes of Chemical Property during Fermentation - (냉면육수용 동치미 제조-발효과정 중 화학적 성질의 변화-)

  • 안용근
    • The Korean Journal of Food And Nutrition
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    • v.14 no.2
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    • pp.145-149
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    • 2001
  • One percent starch-added Dongchimi, and Dongchimi which 1% starch was not added. each using, 70% radish cut in 2cm size were fermented at 4$^{\circ}C$ for 30 days. HPLC and TLC analyses showed that the no starch-added Dongchimi had glucose, fructose, sucrose. The starch-added Dongchimi produced, mal-tose. maitotriose and maltotetraose by the hydrolysis reaction of amalyse. And the sugar contents were reduced in the process of fermentation. No starch-added Dongchimi showed 361 ${\mu}$g/ml of reducing sugar, 0.012 unit /ml of amylase activity, 3.82 of pH, 3.0 of acidity. The 1% starch-added Dongchimi showed 329 ${\mu}$g/ml of reducing sugar, 0.04 unit/ml of amylase acidity, 3.8 of pH. 3.15 of acidity.

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An Effect of Red-ripe Persimmon on Fermentation and Sensory Characteristics of Kimchi (연시첨가가 김치의 발효와 기호성에 미치는 영향)

  • 하귀현;박상욱
    • The Korean Journal of Food And Nutrition
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    • v.11 no.5
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    • pp.570-575
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    • 1998
  • This paper presents an investigation of chemical and sensory properties of Kimchi with red-ripe persimmon. Kimchi with different levels(0, 5, 10, 15%) of real-ripe persimmon was fermented at 4$^{\circ}C$ for 20days. During the fermentation, pH decreased in all Kimchi samples and pH of Kimchi with red-ripe persimmon was a little lower than that of Kimchi without red-ripe persimmon. Acidity increaased continuously and saltiness was maintained at 1.2∼2.2% levels during fermentation. The reducing sugar of Kimchi with red-ripe persimmon was relatively higher than that of the other sample without red-ripe persimmon. Total vitamin C(Vit. C) in Kimchi added red-ripe persimmon increased in the early stage of fermentation and reduced gradually after 4days of fermentation. In the sensory evolution, Kimchi with 10% red-ripe persimmon recorded high scores in taste, flavor, texture and overall acceptability during all fermentation period.

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The Fundamental Studies of Heat Treatment Class in Domestic Infant Formula (국산 조제분유의 열처리 등급에 관한 기초 연구)

  • 박영희
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.27 no.3
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    • pp.495-500
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    • 1998
  • To compare the extent of heat treatment in domestic infant formula, pH,titratable acidity, undenatured whey protein contents, HMF contents and protein-reducing substances of three commercial products (A, B, C) were measured. The pH of B products was lowest and the titratable acidity of B product was highest. The contents of undenatured whey protein per 100ml serum were 0∼30mg(A products), 90∼130mg(B products)and 80∼90mg(C products), respectively. Distinct differences of undenatured whey protein contents according to the manufacturer and infat's stage in age could be observed. The HMF contents of tested products showed 10.9∼21.5umol/L and B-2 product(B products for the second stage of 5∼9 month) was the highest among tested products. The protein-reducing substances showed 4.46∼9.50mg K4Fe(CN)6/100ml serum nd B-2 product was the highest among tested products.

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Impaired Autophagic Flux in Glucose-Deprived Cells: An Outcome of Lysosomal Acidification Failure Exacerbated by Mitophagy Dysfunction

  • Eun Seong Hwang;Seon Beom Song
    • Molecules and Cells
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    • v.46 no.11
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    • pp.655-663
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    • 2023
  • Autophagy dysfunction is associated with human diseases and conditions including neurodegenerative diseases, metabolic issues, and chronic infections. Additionally, the decline in autophagic activity contributes to tissue and organ dysfunction and aging-related diseases. Several factors, such as down-regulation of autophagy components and activators, oxidative damage, microinflammation, and impaired autophagy flux, are linked to autophagy decline. An autophagy flux impairment (AFI) has been implicated in neurological disorders and in certain other pathological conditions. Here, to enhance our understanding of AFI, we conducted a comprehensive literature review of findings derived from two well-studied cellular stress models: glucose deprivation and replicative senescence. Glucose deprivation is a condition in which cells heavily rely on oxidative phosphorylation for ATP generation. Autophagy is activated, but its flux is hindered at the autolysis step, primarily due to an impairment of lysosomal acidity. Cells undergoing replicative senescence also experience AFI, which is also known to be caused by lysosomal acidity failure. Both glucose deprivation and replicative senescence elevate levels of reactive oxygen species (ROS), affecting lysosomal acidification. Mitochondrial alterations play a crucial role in elevating ROS generation and reducing lysosomal acidity, highlighting their association with autophagy dysfunction and disease conditions. This paper delves into the underlying molecular and cellular pathways of AFI in glucose-deprived cells, providing insights into potential strategies for managing AFI that is driven by lysosomal acidity failure. Furthermore, the investigation on the roles of mitochondrial dysfunction sheds light on the potential effectiveness of modulating mitochondrial function to overcome AFI, offering new possibilities for therapeutic interventions.

Quality Properties of Pear Vinegars with High-Acidity under Different Fermentation Conditions (고산도 배식초 제조 시 발효조건에 따른 품질특성)

  • Jo, Deokjo;Lee, Hye-Jin;Jeong, Yong-Jin;Yeo, Soo-Hwan;Kwon, Joong-Ho
    • Korean Journal of Food Science and Technology
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    • v.46 no.4
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    • pp.418-424
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    • 2014
  • High-acidity vinegar was manufactured using pear concentrate by fed-batch fermentation without additional nutrients, and the physicochemical properties and volatile components were investigated at different fermentation stages (Stages 1-4) and at various initial alcohol concentrations (IAC; 6-9%). The levels of reducing sugar, free amino acids, total phenolic content, total flavonoid content, and radical scavenging ability increased slightly during Stage 4 (high-acidity vinegar), which was affected by alcohol feeding. The contents of approximately 20 types of volatile compounds differed between the moderate- and high-acidity vinegar samples, as determined by solid-phase microextraction/gas chromatography-mass spectroscopy. The level of acetic acid in high-acidity vinegar increased according to the initial alcoholic content applied. The high-acidity vinegar produced by fed-batch culture at an IAC of 6-7% showed improved physicochemical and volatile properties as compared to the moderate-acidity vinegar.