• Title/Summary/Keyword: acid hydrolysate

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Angiotensin I Converting Enzyme Inhibitory Activity of Hot-Water Extract and Enzymatic Hydrolysate of Fresh Water Fish (담수어 열수추출물 및 효소가수분해물의 Angiotensin I 전환효소 저해작용)

  • 김태진;윤호동;이두석;장영순;서상복;염동민
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.5
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    • pp.871-877
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    • 1996
  • Hot-water extract and enzymatic hydrolysate prepared from fresh water fish such as carp, snakehead, eel and israeli cart were tested for inhibitory activity against Angiotensin I converting enzyme(ACE). ACE inhibitory activity of enzymatic hydrolysate was higher than that of hot-water extract, and was the highest in enzymatic hydrolysate of carp among the tested samples. ACE inhibitory activity of 70% ethanol soluble fraction was higher than that of precipitated fraction, the highest in enzymatic hydrolysate of carp. Molecular weight of active fraction was about 1,400 in hot-water extract and slightly above in enzymatic hydrolysate. Amino acid of active fraction of hot-water extract was abundant in glycine, alanine, leucine and proline, whereas amino acids of aspartic acid, glutamic acid, glycine, alanine, valine, leucine and proline were abundant in enzymatic hydrolysate. $IC_{50}$/(amounts of inhibitors need for 50% inhibition) of hot-water extract was the range of 50.3~56.9$\mu\textrm{g}$, those of enzymatic hydrolysate 42.6~57.7$\mu\textrm{g}$.

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Development of Alginic Acid Hydrolysate as a Natural Food Preservative for Fish Meat Paste Products (알긴산 가수분해물을 이용한 어육연제품용 천연 식품보존료의 개발)

  • Chang, Dong-Suck;Cho, Hak-Rae;Lee, Hyun-Sook;Park, Mi-Yeon;Lim, Sung-Mee
    • Korean Journal of Food Science and Technology
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    • v.30 no.4
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    • pp.823-826
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    • 1998
  • It has been reported that alginic acid hydrolysate retains antimicrobial activity but the enzyme which hydrolyze alginic acid is not developed for industrial use. The authors developed chemical method for hydrolyzing alginic acid. For preparing alginic acid hydrolysate, equal quantity of alginic acid and ascorbic acid were added to water. Then the solution was heated at $121^{\circ}C$ for $20{\sim}30{\;}minutes$. The 4% solution of alginic acid hydrolysate was revealed relative viscosity 1.05, pH 3.2 and opaque whitish-yellow color. By addition of this hydrolysate to nutrient broth with the concentration of 0.1%, the growth of Bacillus sp. isolated from fish meat paste products was inhibited. The fish meat paste products containing 0.3% alginic acid hydrolysate prepared were prolonged their shelf life by 1 day stored at $30^{\circ}C$, 2 days at $20^{\circ}C$ and 4 days at $15^{\circ}C$.

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Lactic acid Production from Hydrolysate of Pretreated Cellulosic Biomass by Lactobacillus rhamnosus (전처리된 섬유소계 바이오매스로부터 Lactic acid생산)

  • Ahn, Su Jin;Cayetano, Roent Dune;Kim, Tae Hyun;Kim, Jun Seok
    • Korean Chemical Engineering Research
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    • v.53 no.1
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    • pp.1-5
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    • 2015
  • Lactic acid, the most widely occurring hydroxy-carboxylic acid, has traditionally been used as food, cosmetic, pharmaceutical, and chemical industries. Even though it has tremendous potential for large scale production and use in a wide variety of applications, high cost lactic acid materials are primarily problems. Lactic acid can be obtained on either by fermentation or chemical synthesis. In recent years, the fermentation approach has become more successful because of the increasing market demand for naturally produced lactic acid. Generally, lactic acid was produced from pure starch or from glucose. As an alternative, biomass which is the most abundant renewable resources on earth have been considered for conversion to readily utilizable hydrolysate. In this study, we conducted the fermentation method to produce L(+)-lactic acid production from pretreated hydrolysate was investigated by Lactobacillus rhamnosus ATCC 10863. The hydrolysate was obtained from pretreatment process of biomass using Ammonia percolation process (AP) followed by enzymatic hydrolysis. In order to effectively enhance lactic acid conversion and product yield, controlled medium, temperature, glucose concentration was conducted under pure glucose conditions. The optimum conditions of lactic acid production was investigated and compared with those of hydrolysate.

Antioxidant and Angiotensin I Converting Enzyme Inhibitory Activities of Red Snow Crab Chionoecetes japonicas Shell Hydrolysate by Enzymatic Hydrolysis

  • Yoon, Na Young;Shim, Kil-Bo;Lim, Chi-Won;Kim, Sang-Bo
    • Fisheries and Aquatic Sciences
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    • v.16 no.4
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    • pp.237-242
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    • 2013
  • We investigated the antioxidant and angiotensin I converting enzyme (ACE) inhibitory activities of red snow crab Chionoecetes japonicas shell (RSCS) hydrolysate by enzymatic hydrolysis and its molecular weight cut-off fractions. The RSCS hydrolysate was fractionated through two ultrafiltration membranes of 3 and 10 kDa cut-offs. Three fractions (<3 kDa, 3-10 kDa, and >10 kDa) were evaluated for total amino acid composition, antioxidant activities using 2'-azino-bis[3-ethylbenzthiazoline-6-sulfonic acid] ($ABTS^+$) radical scavenging and superoxide dismutase (SOD)-like activities and reducing power assays, and ACE inhibitory activity using Hou's method. Although all fractions showed activity, the <3 kDa fraction of RSCS hydrolysate exhibited the greatest $ABTS^+$ radical scavenging, SOD-like and ACE inhibitory activities. However, these fractions exhibited low reducing power. These results suggest that the low-molecular-weight enzymatic hydrolysate of RSCS could be used as a functional ingredient to control oxidative stress and ACE activity.

Effect of Fermentation Conditions on L-Lactic Acid Production from Soybean Straw Hydrolysate

  • Wang, Juan;Wang, Qunhui;Xu, Zhong;Zhang, Wenyu;Xiang, Juan
    • Journal of Microbiology and Biotechnology
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    • v.25 no.1
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    • pp.26-32
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    • 2015
  • Four types of straw, namely, soybean, wheat, corn, and rice, were investigated for use in lactic acid production. These straws were mainly composed of cellulose, hemicellulose, and lignin. After pretreatment with ammonia, the cellulose content increased, whereas the hemicellulose and lignin contents decreased. Analytical results also showed that the liquid enzymatic hydrolysates were primarily composed of glucose, xylose, and cellobiose. Preliminary experiments showed that a higher lactic acid concentration could be obtained from the wheat and soybean straw. However, soybean straw was chosen as the substrate for lactic acid production owing to its high protein content. The maximum lactic acid yield (0.8 g/g) and lactic acid productivity (0.61 g/(l/h)) were obtained with an initial reducing sugar concentration of 35 g/l at 30℃ when using Lactobacillus casei (10% inoculum) for a 42 h fermentation period. Thus, the experimental results demonstrated the feasibility of using a soybean straw enzymatic hydrolysate as a substrate for lactic acid production.

Pure-Separation of Calcium chloride-treated Silk Fibroin Hydrolysate by Gel Filtration Chromatography and Effect of It's Enzymatic Hydrolysis (Calcium chloride 피브로인 용해물의 Gel Filtration Chromatography에 의한 순수분리 및 효소 가수분해 효과)

  • 여주홍;이광길;이용우
    • Journal of Sericultural and Entomological Science
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    • v.41 no.3
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    • pp.211-215
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    • 1999
  • The pure-separation of calcium chloride-treated fibroin hydrolysates could be carried out using gel filtration chromatography. Also, the effect of its enzymatic hydrolysis was investigated in order to find out the enhancement of their functionality. The average molecular weight(Mw), solubility and free amino acid compositions of three hydrolysates samples (calcium chloride, calcium chloride-flavourzyme and calcium chloride-thermoase)were measured to compare their characteristics. The molecular weight of calcium chloride hydrolysate was about Mw 46,800 and it can be reduced to Mw 12,500 and 1,070 upon the enzymatic hydrolysis by flavourzyme and thermoase, repectively. A solubility of calcium chloride-treated samples shows about 60% while calcium chloride/enzyme-treated samples are perfectly soluble (100% solubility). The total amino acid composition of calcium chloride enzymatic hydrolysates are much higher than that of calcium chloride hydrolysate.

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Application of Emulsion Liquid Membrane to Removal of Fermentation Inhibitors from Simulated Hemicellulosic Hydrolysates (모사 헤미셀룰로오스 가수분해액으로부터 발효 저해물질의 제거를 위해 에멀젼형 액막법의 적용)

  • Lee, Sang Cheol
    • Korean Chemical Engineering Research
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    • v.53 no.4
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    • pp.457-462
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    • 2015
  • Hemicellulosic hydrolysates contain not only sugars but also several kinds of ethanol fermentation inhibitory substances such as carboxylic acids, furans and phenolic compounds. In this work, emulsion liquid membrane (ELM) was chosen as a separation technology to remove the inhibitors. A basic simulated hemicellulosic hydrolysate was composed of xylose as sugar, dilute sulfuric acid solution as solvent, and acetic acid as carboxylic acid, and furfural as furan derivative or p-hydroxybenzoic acid(HBA) as phenolic compound was added to the hydrolysate when necessary. Acetic acid and HBA as weak acid could be selectively removed from the hydrolysates in all the ELM systems considered here, but furfural as aldehyde was quite hard to remove. Also, when HBA was added to the basic simulated hemicellulosic hydrolysate, both of acetic acid and HBA in the feed phase could be selectively removed up to 99% in an ELM system with tributyl phosphate as extractant.

Studies on the Components of Sarcodon aspratus(I) (능이의 성분(成分)에 관한 연구(硏究)(제1보)(第1報))

  • Park, Wan-Hee
    • The Korean Journal of Mycology
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    • v.11 no.2
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    • pp.85-89
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    • 1983
  • The aims of this study were to investigate various components and their physiological activities of Sarcodon aspratus (Berk.) S. Ito which grows wildly in Korea, belonging to the family Thelephoraceae. The analysis of the powered carpophore of this fungus by TLC and an amino acid autoanalyzer revealed that it contained twenty-one free amino acids and that twenty­two total amino acids were identified in its acid hydrolysate. These amino acids were also quantified.

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Pullulan Production from Starch Hydrolysate by Aureobasidium pullulans SH8646

  • Shin, Yong-Chul;Kim, Tae-Un
    • Journal of Microbiology and Biotechnology
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    • v.3 no.4
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    • pp.298-302
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    • 1993
  • Pullulan was produced from starch hydrolysate with Aureobasidium pullulans SH8646. We could measure the correct amount of pullulan produced without the interference of starch from the culture supernatant by using a bacterial $\alpha$-amylase treatment and ethanol: acetone (1:1) precipitation. When 5% acid-hydrolyzed starch was used as a carbon source, the dry cell weights obtained were similar irrespective of DE values of starch hydrolysates. The dry cell weights of those on the starch hydrolysate media prepared with 0.1 N HC1 treatment, were slightly higher (9.5~10.5 g/l) than those on the starch hydrolysate media prepared with 1.0 N HCl (8.5~9.5 g/l). And among the starch hydrolysates showing DE values lower than 50, maximum pullulan production of 15 g/l was obtained at DE 30~40 starch hydrolysate but those showing DE values higher than 50, the pullulan production was increased with the increase of the DE value of starch hydrolysates. From the media containing 5%, 10%, and 15% starch hydrolysate (DE 25, 45, and 75), about 20~34% pullulan yield was obtained and the maximum pullulan yield of 34% (17g/l) was obtained from 5% DE 75 starch hydrolysate. The pullulan yields from starch hydrolysate media were much lower than those from glucose, maltose, maltotriose, and sucrose media.

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Production of Hydrogen and Volatile Fatty Acid by Enterobacter sp. T4384 Using Organic Waste Materials

  • Kim, Byung-Chun;Deshpande, Tushar R.;Chun, Jongsik;Yi, Sung Chul;Kim, Hyunook;Um, Youngsoon;Sang, Byoung-In
    • Journal of Microbiology and Biotechnology
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    • v.23 no.2
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    • pp.189-194
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    • 2013
  • In a study of hydrogen-producing bacteria, strain T4384 was isolated from rice field samples in the Republic of Korea. The isolate was identified as Enterobacter sp. T4384 by phylogenetic analysis of 16S rRNA and rpoB gene sequences. Enterobacter sp. T4384 grew at a temperature range of $10-45^{\circ}C$ and at an initial pH range of 4.5-9.5. Strain T4384 produced hydrogen at 0-6% NaCl by using glucose, fructose, and mannose. In serum bottle cultures using a complete medium, Enterobacter sp. T4384 produced 1,098 ml/l $H_2$, 4.0 g/l ethanol, and 1.0 g/l acetic acid. In a pH-regulated jar fermenter culture with the biogas removed, 2,202 ml/l $H_2$, 6.2 g/l ethanol, and 1.0 g/l acetic acid were produced, and the lag-phase time was 4.8 h. Strain T4384 metabolized the hydrolysate of organic waste for the production of hydrogen and volatile fatty acid. The strain T4384 produced 947 ml/l $H_2$, 3.2 g/l ethanol, and 0.2 g/l acetic acid from 6% (w/v) food waste hydrolysate; 738 ml/l $H_2$, 4.2 g/l ethanol, and 0.8 g/l acetic acid from Miscanthus sinensis hydrolysate; and 805 ml/l $H_2$, 5.0 g/l ethanol, and 0.7 g/l acetic acid from Sorghum bicolor hydrolysate.