• Title/Summary/Keyword: acid hydrolysate

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Sulfuric Acid Hydrolysis and Detoxification of Red Alga Pterocladiella capillacea for Bioethanol Fermentation with Thermotolerant Yeast Kluyveromyces marxianus

  • Wu, Chien-Hui;Chien, Wei-Chen;Chou, Han-Kai;Yang, Jungwoo;Lin, Hong-Ting Victor
    • Journal of Microbiology and Biotechnology
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    • v.24 no.9
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    • pp.1245-1253
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    • 2014
  • One-step sulfuric acid saccharification of the red alga Pterocladiella capillacea was optimized, and various detoxification methods (neutralization, overliming, and electrodialysis) of the acid hydrolysate were evaluated for fermentation with the thermotolerant yeast Kluyveromyces marxianus. A proximate composition analysis indicated that P. capillacea was rich in carbohydrates. A significant galactose recovery of $81.1{\pm}5%$ was also achieved under the conditions of a 12% (w/v) biomass load, 5% (v/v) sulfuric acid, $121^{\circ}C$, and hydrolysis for 30 min. Among the various detoxification methods, electrodialysis was identified as the most suitable for fermentable sugar recovery and organic acid removal (100% reduction of formic and levulinic acids), even though it failed to reduce the amount of the inhibitor 5-HMF. As a result, K. marxianus fermentation with the electrodialyzed acid hydrolysate of P. capillacea resulted in the best ethanol levels and fermentation efficiency.

Anti-Rheumatoid Arthritis Effect of the Kochia scoparia Fruits and Activity Comparison of Momordin Ic, its Prosapogenin and Sapogenin

  • Choi, Jongwon;Lee, Kyung-Tae;Jung, Hyun-Ju;Park, Hee-Sun;Park, Hee-Juhn
    • Archives of Pharmacal Research
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    • v.25 no.3
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    • pp.336-342
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    • 2002
  • MeOH extract of Kochia scoparia was fractionated into $CHCl_3-$, EtOAc- and BuOH extracts and the last fraction were hydrolyzed by 3%-NaOH ($MeOH-H_2O$) to compare the bioactivities on antinociceptive and anti-inflammatory effects. Silica gel column chromatography of BuOH fraction afforded a large amount of $3-Ο-{\beta}-D-xylopyranosyl {\;}(1{\rightarrow}3)-{\beta}-D-glucuronopyranosyl$ oleanolic acid (momordin Ic, 4) and that of acid hydrolysate of BuOH fraction gave $3-Ο-{\beta}-D-glucuronopyranosyl oleanolic$ acid (momordin Ib, 3), its 6'-Ο-methyl ester (2) and oleanolic acid (1). Silica gel column chromatography of alkaline hydrolysate afforded a large amount of 4. MeOH extract and both EtOAc- and BuOH fractions were active in the rheumatoidal rat induced Freund's complete adjuvant reagent (FCA) whereas $CHCl_3$ fraction was inactive. Compound 1 and 4 showed significant activities in the same assay but oleanolic acid 3-Ο-glucuronopyranoside (3) showed no activity. These fashions were also observed in carrageenan-induced edema of the rat and in the antinociceptive activity tests undertaken in hot plate- and writhing methods. These results suggest that momordin Ic and its aglycone, oleanolic acid, could be active principles for rheumatoid arthritis.

Preparation of Functional Seasoning Sauce Using Enzymatic Hydrolysates from Skipjack Tuna Cooking Drip (참치 자숙액 가수분해물을 이용한 건강 기능성 조미 소스의 제조)

  • Oh, Hyeun-Seok;Kim, Jin-Soo;Heu, Min-Soo
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.36 no.6
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    • pp.766-772
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    • 2007
  • The enzymatic hydrolysate of skipjack tuna cooking drip with good functionality was prepared by incubation with Alcalase for 30 min. For the preparation of functional seasoning sauce with enzymatic hydrolysate (SSE), the additives, such as concentrated enzymatic hydrolysate (100 mL), yeast extract powder (0.7 g), lactose (0.4 mL), liquid smoke (0.3 g) and sea tangle powder (1.4 g), were added to the enzymatic hydrolysate and boiled before filtration. The proximate composition of SSE was 11.8% for crude protein, 5.77 for pH and 11.9% for salinity. The SSE was higher in the crude protein, while lower in the salinity than commercial seasoning sauce. ACE inhibitory activity ($IC_{50}$) and antioxidative activity (PF) of SSE were 6.2 mg/mL and 1.14, respectively, which were superior to those (9.9 mg/mL in IC50 and 0.91 in PF) of commercial seasoning sauce. The free amino acid content (1,905.2 mg/100 mL) and taste value (58.65) of SSE were higher than in those (712.7 mg/100 mL and 34.30, respectively) of commercial sauce. Total amino acid content of SSE (10,965 mg/100 mL) was higher than that (4,818 mg/100 mL) of commercial sauce. The major amino acids of SSE were glutamic acid (12.2%), proline (11.0%), histidine (10.7%) and glycine (9.9%). The results suggested that SSE could be commercially sold.

Effect of Oxalic Acid Pretreatment on Yellow Poplar (Liriodendron tulipifera) for Ethanol Production (바이오에탄올 생산에 적합한 백합나무(Liriodendron tulipifera)의 oxalic acid 전처리 효과 탐색)

  • Kim, Hye-Yun;Lee, Jae-Won;Jeffries, Thomas W.;Gwak, Ki-Seob;Choi, In-Gyu
    • Journal of the Korean Wood Science and Technology
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    • v.37 no.4
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    • pp.397-405
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    • 2009
  • In this study, we investigated the potential of producing bioethanol from Liriodendron tulipifera by using oxalic acid pretreatment. Amounts of fermentable sugars, mostly xylose and glucose, in the liquid fraction (hydrolysate) was $40.22g/{\ell}$ after the biomass was pretreated with 0.037 g/g of oxalic acid for 20 minutes at $160^{\circ}C$. Production amounts of ethanol was $8.6g/{\ell}$ from the 72 hours of simultaneous saccharification and fermentation (SSF) on solid fraction of the pretreated sample. At the same condition, when the reaction time increased to 40 minutes, $32.66g/{\ell}$ of fermentable sugars in the hydrolysate and $9.5g/{\ell}$ of ethanol was produced from the process of pretreatment and SSF. As a result of analyzing the fermentation inhibitors, such as acetic acid, 5-HMF, furfural and total phenolic compounds, as the reaction time increased, the amount of the fermentation inhibitors in the hydrolysate increased. Production of the fermentation inhibitors was more affected by initial concentration of oxalic acid rather than reaction time. $3.39{\sim}5.78g/{\ell}$ of acetic acid was produced by pretreatment with 0.013 g/g of oxalic acid, and the amount of furfural produced by decomposition of xylose was 2~3 times higher than the amount of 5-HMF produced by decomposition of glucose. All the hydrolysates contained more than $5g/{\ell}$ of total phenols considered as the degradation product of lignin. Therefore, by analyzing the amount of fermentable sugars and fermentation inhibitors in the hydrolysate, and producing ethanol from SSF of solid fraction of the pretreated sample, the biomass pretreated with 0.037 g/g of oxalic acid for 20 minutes at $160^{\circ}C$ can be expected to produce the most ethanol.

Effect of the Fish Meat Hydrolysate on the Growth of Lactic Acid Bacteria (유산균(乳酸菌) 성장(成長)에 미치는 어육단백질분해물(魚肉蛋白質分解物)의 영향(影響))

  • Lee, Eun Bo;Kim, Jong Woo
    • Korean Journal of Agricultural Science
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    • v.11 no.1
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    • pp.120-132
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    • 1984
  • In order to clarify the effect of the fish meat hydrolysate on the growth of lactic acid bacteria(Str. lactis, Str. thermophibus, L. bulgaricus, L. acidophilus, and L. helveticus), the optimum conditions for hydrolyzing the fish meat were examined, and changes of the acid production, viable cell count of lactic acid bacteria and the charge of pH of the culture medium by addition of the fish meat hydrolysate were tested. The results were as follows: 1. When the hydrolysis of back muscle of mackerel was proceeded at $50^{\circ}C$ and at pH 8, for 48 hours adding 6% pancreatin of the protein content in the substrate, the best result was obtained. 2. The composition of the fish meat hydrolysate were 53.6% moisture, 32.4% protein, 1.0% fat, 10.7% carbohydrate, and 3.2% ash. 3. Above 0.1% of the fish meat hydrolysate in the culture medium, the acidity of the culture medium by Sir. lactis and Str. thermophilus were increased remarkably. The acidity of the culture medium by L. acidophilus and L. helveticus were increased in above 0.2% fish meat hydrolysate in the culture medium. but L. bulgaricus was not effected by the fish meat hydrolysate. 4. The pH of the culture medium during incubating Str. laclis and Sir. thermophilus failed obviously by adding the fish meat hydrolysate. But in the cases of L. bulgaricus, L. acidophilus, and L. helveticus, the pH were not changed clearly. 5. The viable cell count in all bacterial strains tested here were elevated by increasing the concentration of the fish meat hydrolysate.

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Functional Properties of Fish Skin Gelatin Hydrolysate from a Continuous Two-Stage Membrane Reactor (2단계 막반응기에서 연속적으로 생산된 어피젤라틴 가수분해물의 기능성)

  • Kim, Se-Kwon;Byun, Hee-Guk;Jeon, You-Jin;Cho, Duck-Jae
    • Applied Biological Chemistry
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    • v.37 no.2
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    • pp.85-93
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    • 1994
  • The fish skin gelatin hydrolysates were produced using a continuous two-stage membrane (MWCO 10,000, MWCO 5,000) reactor, and molecular weights, amino acids and functional properties of the hydrolysates were investigated. The major molecular weights distribution of the major fractions were $8{\sim}10\;KDa$ and $4.5{\sim}6.5\;KDa$ in the 1st-step hydrolysates, $2{\sim}6\;KDa$ and $0.5{\sim}2\;KDa$ in the 2nd-step hydrolysates. Among the amino acids in the hydrolysates, glycine, proline, serine, alanine, hydroxyproline, glutamic acid and aspartic acid having sweet taste were responsible for $68{\sim}72%$ of the total amino acids. But valine, methionine, isoleucine, leucine, phenylalanine and histidine having a bitter taste were only $23{\sim}25%$ Taste evaluations show that the gelatin hydrolysates have a brothy and sweet taste, 2nd-step hydrolysate have more a favorable taste than 1st-step hydrolysate. The hydrolysates were completely soluble and clear over the entire pH range. Moisture sorption at intermediate water activities of the 2nd-step hydrolysate was much higher than the unmodified fish skin gelatin, but foaming and emulsification properties were poor. Buffer capacity of the 2nd-step hydrolysate was higher than the fish skin gelatin and 1st-step hydrolysate, while viscosities of the hydrolysates were lower than the fish skin gelatin.

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Enhancement of Ethanol Production by The Removal of Fermentation Inhibitors, and Effect of Lignin-derived Inhibitors on Fermentation (에탄올 생산 향상을 위한 발효저해물질 제거와 리그닌 유래 발효저해물질이 에탄올 발효에 미치는 영향)

  • Um, Min;Shin, Gyeong-Jin;Lee, Jae-Won
    • Journal of the Korean Wood Science and Technology
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    • v.44 no.3
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    • pp.389-397
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    • 2016
  • In this study, ethanol was produced from a biomass hydrolysate that had been treated by electrodialysis (ED) and Amberlite XAD resin to remove fermentation inhibitors. Most of the acetic acid (95.6%) was removed during the ED process. Non-ionizable compounds such as total phenolic compounds, 5-hydroxymethyl furfural, and furfural were effectively removed by the XAD resin treatment. Ethanol production was improved when the ED-treated hydrolysate was treated with XAD-4 resin for a short reaction time. The highest ethanol production from ED-treated hydrolysate was $6.16g/{\ell}$ (after 72 h of fermentation) when the treatment with XAD-4 resin was for 5 min. Among the lignin-derived fermentation inhibitors tested, syringaldehyde in low concentrations (1 and 2 mM) in the hydrolysate increased ethanol production, whereas a high concentration (5 mM) inhibited the ethanol production process. A synthetic medium containing syringaldehyde and ferulic acid was prepared to investigate the synergistic effect of inhibitors on ethanol fermentation. Ethanol production decreased in the mixture of 1 mM syringaldehyde and 1 mM ferulic acid, implying that the effect of ferulic acid on ethanol fermentation is comparable to that of syringaldehyde.

대두발효식품의 cerebroside 조성 및 생리활성

  • Song, Seong-Gwang;Kim, Hui-Suk
    • 한국생물공학회:학술대회논문집
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    • 2000.11a
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    • pp.765-766
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    • 2000
  • Cerebrosides were isolated from soybean, deunjang and chungkukjang and their constituents were investigated. The principal fatty acid of soybean cerebroside was 2-hydroxy-palmitic acid but chungkukjang cerebroside consisted palmitic acid, elaidic acid(trans 18:1), oleic acid and stearic acid. The only sugar in cerebrosides was glucose. TLC analysis of cerebroside hydrolysate elucidated soybean and chungkukjang had same sphingold bases, mainly dihydroxy bases, trans-4, trans-sphingadienine. But, alkali stable glycolipid fractions of chungkukjang and deunjang had $2{\sim}3$ different primary amines.

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The Novel Angiotensin I Converting Enzyme Inhibitory Peptide from Rainbow Trout Muscle Hydrolysate

  • Kim, Sung-Rae;Byun, Hee-Guk
    • Fisheries and Aquatic Sciences
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    • v.15 no.3
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    • pp.183-190
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    • 2012
  • The purpose of this study was the purification and characterization of an angiotensin I converting enzyme (ACE) inhibitory peptide purified from enzymatic hydrolysates of rainbow trout Oncorhynchus mykiss muscle. After removal of lipid, the approximate composition analysis of the rainbow trout revealed 24.4%, 1.7%, and 68.3% for protein, lipid, and moisture, respectively. Among six hydrolysates, the peptic hydrolysate exhibited the highest ACE inhibitory activity. We attempted to purify ACE inhibitory peptides from peptic hydrolysate using high performance liquid chromatography on an ODS column. The $IC_{50}$ value of purified ACE inhibitory peptide was $63.9{\mu}M$. The amino acid sequence of the peptide was identified as Lys-Val-Asn-Gly-Pro-Ala-Met-Ser-Pro-Asn-Ala-Asn, with a molecular weight of 1,220 Da, and the Lineweaver-Burk plots suggested that they act as a competitive inhibitor against ACE. Our study suggested that novel ACE inhibitory peptides purified from rainbow trout muscle protein may be beneficial as anti-hypertension compounds in functional foods.

Isolation of HIV-1 Pretense Inhibiting Peptide from Thermolysin Hydrolysate of Manila Clam Proteins

  • Lee, Tae-Gee;Yeum, Dong-Min
    • Preventive Nutrition and Food Science
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    • v.8 no.2
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    • pp.154-157
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    • 2003
  • A peptide inhibiting HIV-1 pretense was isolated from the hydrolysate of manila clam (Ruditapes philippinarum) proteins digested with thermolysin. The peptide was purified by using membrane filtration, gel permeation chromatography, ion exchange chromatography, and reverse phase HPLC, The amino acid sequence of the peptide was determined to be Ile-Tyr-Glu-Gly. This tetrapeptide sequence exists in some proteins of Physarum polycephalum and Mycobacterium smegmatis. Chemically synthesized Ile-Tyr-Glu-Gly showed the $IC_{50}$/ value of 22.3 $\mu$M.