• Title/Summary/Keyword: Laver hydrolysate

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Effect of Enzymatic Hydrolysate of Laver Pyropia on the Dough and Bread Making Properties of Wheat Flour (김 효소 가수분해물 첨가가 밀가루 반죽과 제빵 특성에 미치는 영향)

  • Ryu, Chung-Hee;Koo, Jae-Geun
    • Journal of Fisheries and Marine Sciences Education
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    • v.27 no.2
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    • pp.467-475
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    • 2015
  • The effects of replacement of wheat flour with laver, Pyropia yezoensis, on the bread making properties and quality characteristics of bread were evaluated. The poor baking performance which arose from dried laver addition could be compensated by using exogenous enzymes (Flavouzyme) and baking aids. Laver hydrolysate was prepared by hydrolyzing laver using Flavouzyme for 9 hrs at $50^{\circ}C$. Doughs made by addition of laver hydrolysate (8% dried laver substitution level) showed excellent baking properties. Moreover, with the addition of glucose oxidase and hydro colloidal HPMC, loaf volume and crumb grain were improved for doughs containing laver hydrolysate. Both of intermediate fermentation and final proof time for doughs containing laver hydrolysate was shorter than that for conventional dough.

Angiotensin Ⅰ Converting Enzyme(ACE) Inhibitory Activities of Laver(Porphyra tenera) Protein Hydrolysates (김 단백질 가수분해물의 Angiotensin Ⅰ 전환효소 저해 활성)

  • Kim Young-Myoung;Do Jeong-Ryong;In Jae-Pyung;Park Jong-Hyuk
    • The Korean Journal of Food And Nutrition
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    • v.18 no.1
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    • pp.11-18
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    • 2005
  • Angiotensin Ⅰ converting enzyme(ACE) inhibitory activities of laver(Porphyra tenera) protein hydrolysates were investigated by enzymes used for hydrolysis, molecular fractions and drying methods. For the enzymatic hydrolysis, crude laver protein, separated by filtration of water extract of dried laver extracted with 20 times(w/v) water for 3 hours at boiling temperature, were hydrolyzed with three commercial protease, Pepsin, alcalase and maxazyme NNP at optimal conditions. The yield of hydrolysis and ACE inhibitory activities of which were high in order of pepsin, alcalase and maxazyme NNP. ACE inhibitory activities of laver hydrolysates by molecular levels were high in order of 3 kDa > 10 kDa > 3∼10 kDa, and the IC/sub 50/ ACE inhibitory activities by molecular lebels were 4 mg/mL(3 kDa), 5 mg/mL(total hydrolysate), and 20 mg/mL(10 kDa), respectively. The storage stability of dried laver hydrolysates at 20℃ were strongly affected by drying methods, hot air dried of which were much stabler than freeze-dried one.

Separation and Purification of Angiotensin-I Converting Enzyme Inhibitory Peptides from Layer Hydrolysate (김 가수분해물로부터 Angiotensin-I Converting Enzyme저해 Peptide의 분리$\cdot$정제)

  • LEE Heon-Ok;KIM Dong-Soo;DO Jeong-Ryong;KWAN Dae-Young
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.34 no.2
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    • pp.164-172
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    • 2001
  • The angiotensin-I converting enzyme (ACE) inhibitors from laver hydrolysate was isolated. Among the 13 kinds of proteases, Maxazyme NNP was most effective for preparing the high ACE inhibitory compound. In extraction conditions of ACE inhibitory peptide from laver hydrolysate, ACE inhibitory activity of hydrolysate treated with diethylether for decolorization and that of $70\%$ ethanol soluble fraction among the different ethanol concentrations were higher than other preparations. Low molecular fraction less than 3,000 dalton of layer hydrolysate separated by ultrafiltration had the highest ACE inhibitory activity, for further separation of ACE inhibitory peptide from laver hydrolysate, gel filtration chromatography (Sephadex G-25), reverse-phase HPLC (ODS & Vydac C-18) and gel permeation chromatography (Superdex Peptide HR) were performed. The molecular mass of the ACE inhibitory peptide fractions of gel permeation chromatography determined by electrospray-mass spectrometer were 413.48 (S1O2V2V1P),346.86 (S1O2V2V2P) and 320.32 (S2O6V3V1P) dalton and their amino acid sequence were Val-Gln-Gly-Asn, Thr-Glu-Thr and Phe-Arg, respectively.

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Angiotensin-I Converting Enzyme Inhibitory Activity of Algae (해조류의 Angiotensin-I 전환효소 저해작용)

  • LEE Heon-Ok;KIM Dong-Soo;DO Jeong-Ryong;KO Young-Su
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.32 no.4
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    • pp.427-431
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    • 1999
  • This study was conducted to investigate the inhibitory activity of water extracts and its enzymatic hydrolysates from algae against angiotensin-I converting enzyme (ACE). The 7 kinds of algae were extracted with water at $50^{\circ}C,\;70^{\circ}C$ and $98^{\circ}C$. ACE inhibitory activities of water extracts were the highest at $70^{\circ}C$, and those of ceylon moss, layer, green layer, sea mustard, seaweed fusiforme sea tangle and sea staghorn were $10.9\%,\;9.3\%,\;8.9\%,\;8.2\%,\;7.5\%,\;7.1\%$ and $7.0\%$, respectively. Layer, green laver sea mustard and ceylon moss of high ACE inhibitory activities among the 7 kinds of water extracts were hydrolyzed by maxazyme and papain during 24hrs. ACE inhibitory activity of enzymatic hydrolysates was higher than that of water extracts, and was the highest in enzymatic hydrolysates of laver among the tested samples. In laver hydrolysates by proteases, the highest ACE inhibitory activity and peptide-nitrogen contents were observed at 8 hours hydrolysis and the hydrolysates by maxazyme showed relatively higher activity than those by papain(31.3 and $27.9\%$, respectively). But peptide-nitrogen contents were greater in papain hydrolysates than in maxazyme.

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