• Title/Summary/Keyword: Enzymatic hydrolysates

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Isolation of a Calcium-binding Peptide from Chlorella Protein Hydrolysates

  • Jeon, So-Jeong;Lee, Ji-Hye;Song, Kyung-Bin
    • Preventive Nutrition and Food Science
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    • v.15 no.4
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    • pp.282-286
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    • 2010
  • To isolate a calcium-binding peptide from chlorella protein hydrolysates, chlorella protein was extracted and hydrolyzed using Flavourzyme, a commercial protease. The degree of hydrolysis and calcium-binding capacity were determined using trinitrobenzenesulfonic acid and orthophenanthroline methods, respectively. The enzymatic hydrolysis of chlorella protein for 6 hr was sufficient for the preparation of chlorella protein hydrolysates. The hydrolysates of chlorella protein were then ultra-filtered under 5 kDa as molecular weight. The membrane-filtered solution was fractionated using ion exchange, reverse phase, normal phase chromatography, and fast protein liquid chromatography to identify a calcium-binding peptide. The purified calcium-binding peptide had a calcium binding activity of 0.166 mM and was determined to be 700.48 Da as molecular weight, and partially identified as a peptide containing Asn-Ser-Gly-Cys based on liquid chromatography/electrospray ionization tandem mass spectrum.

Antioxidative Activity of Enzymatic Hydrolysates Derived from Anchovy Muscle Protein (멸치육 단백질 효소가수분해물의 항산화작용)

  • YEUM Dong-Min;LEE Tae-Gee;PARK Yeung-Ho;KIM Seon-Bong
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.30 no.5
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    • pp.842-849
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    • 1997
  • This study was designed to investigate the antioxidative activity of enzymatic hydrolysates prepared from defatted anchor muscle by various pretenses. In these hydrolysates, the hydrolysates derived from pepsin and Protamex showed the strongest antioxidative activity. Enzymatic hydrolysates also showed the synergistic effects on antioxidative activity of $\alpha-tocopherol$, and almost no change in butylated hydroxytoluene (BHT). Peroxidation of metal ions $(Fe^{3+},\;Cu^{2+})$ was inhibited by enzymatic hydrolysates. Ten fractions (P-1 to P-10) were fractionated from the peptic hydrolysates by Amberlite IR-120 and Bio-gel P-2 column chromatography. The maximum antioxidative activity was observed in the traction P-2 (fraction No. $26\~31$). In amino acid composition of before and after hydrolysis of defatted anchovy muscle and the active fractions (P-2), contents of aspartic arid and glutamic acid were increased, but alanine, cysteine, tyrosine and phenylalanine were decreased.

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Biological Compounds Extracted from Codium fragile by Enzymatic Hydrolysis and Their Biological Activities (효소적 가수분해를 이용한 청각으로부터 생리활성 물질의 추출 및 가수분해물의 생리활성)

  • Lee, Ka-Hwa;Senevirathne, Mahinda;Ahn, Chang-Bum;Je, Jae-Young
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.39 no.7
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    • pp.953-959
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    • 2010
  • We extracted bioactive materials from Codium fragile by enzymatic hydrolysis using four different proteases (Alcalase, Flavourzyme, Neutrase, and Protamex) and seven different carbohydrases (amyloglucosidase (AMG), Celluclast, Dextrozyme, Maltogenase, Promozyme, Termamyl, and Viscozyme), and evaluated their biological activities such as antioxidant, anti-acetylcholinesterase (AChE), and anti-inflammatory effects. All enzymatic hydrolysates showed good DPPH radical scavenging capacities, in particular, Flavourzyme and Promozyme hydrolysates possessed the highest activity. The two hydrolysates also exhibited strong hydrogen peroxide scavenging activity, $Fe^{2+}$ chelating activity, and reducing power in a dose-dependent manner. Furthermore, the two hydrolysates effectively protected DNA damage induced by hydroxyl radical by measuring the conversion of supercoiled DNA to the open circular DNA. All enzymatic hydrolysates also showed high anti-AChE inhibitory activities in a dose-dependent manner, and did not showed any significant cytotoxicity on RAW264.7 cells (p<0.05). In addition, the enzymatic hydrolysates significantly (p<0.05) inhibited lipopolysaccharide induced-nitric oxide production on RAW264.7 cells. These results suggest that the enzymatic extracts from Codium fragile would be good source as an ingredient of functional foods.

Improving the Functional Properties of Oyster Hydrolysates by Two-step Enzymatic Hydrolysis (2단 가수분해에 의한 굴 가수분해물의 기능성 개선)

  • Chung In-Kwon;Kim Jin-Soo;Heu Min-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.39 no.3
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    • pp.269-277
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    • 2006
  • This study prepared functional oyster hydrolysates using two-step enzymatic hydrolysis and investigated their functional properties. To prepare two-step enzymatic hydrolysates (TSEH), oysters were hydrolyzed using 1% Protamex (PR) at $40^{\circ}C$ and pH 6.0 for 1 hr before sequential treatment with one of the following enzymes for 1 hr: Alcalase (AL), Flavourzyme (FL), Neutrase (NE), pepsin (PE), and trypsin (TR). The PRAL, PRNE and PRTR hydrolysates had significantly greater angiotensin I converting enzyme (ACE) inhibitory activity than did PR and the other TSEHs. Only the antioxidant activity of the PRNE hydrolysate was significantly different (p<0.05), while none of the TSEHs had antimicrobial activity. The oyster hydrolysate prepared by sequential treatment with Protamex and Neutrase (PRNE) had the best ACE inhibitory activity and antioxidant activity, with $IC_{50}$ values of 0.40 and 0.94 mg/mL, respectively. The PRNE hydrolysate was processed through an ultrafiltration (UF) series with molecular weight cut-off (MWCO) membranes of 3, 5, 10, and 30 kDa, and the ACE inhibitory, antioxidant, and antimicrobial activities of the permeates were determined. The permeate through the 3-kDa MWCO membrane had greater ACE inhibitory activity and antioxidant activity than did the other PRNE permeates, with $IC_{50}$ values of 0.11 and 0.40 mg/mL, respectively.

Extracts and Enzymatic Hydrolysates Derived from Sea Cucumber Stichopus japonicas Ameliorate Hepatic Injury in BisphenolA-treated Mice (비스페놀A 유도 간 손상 마우스에서 해삼(Stichopus japonicas) 추출물 및 가수분해물의 간 기능 개선 효과)

  • Sejeong, Kim;Yun-Ho, Jo;Bi-Oh, Park;Dae-Seok, Yoo;Doo-Ho, Kim;Min-Jung, Kim;Youn-Gil, Kwak;Jin-Seong, Kim
    • Journal of Marine Bioscience and Biotechnology
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    • v.14 no.2
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    • pp.61-68
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    • 2022
  • This study aimed to investigate the hepatoprotective activities of the sea cucumber products, including extracts and hydrolysates, in vitro and in vivo. Dried sea cucumber, produced on the western coast of Korea, was boiled in water or 70% ethanol at 85℃ or 100℃ for 18 or 24 h, respectively, to extract bioactive compounds. The enzymatic hydrolysates were prepared by reacting the dried sea cucumber with pepsin or neutral protease (PNL) under optimal enzyme conditions. The anti-inflammatory effect of the samples was investigated using RAW 264.7 cells treated with lipopolysaccharide (LPS). The amount of nitric oxide (NO) was produced from the cells treated with LPS and each sample was compared. Therefore, the pepsin hydrolysate treatment decreased NO production compared to LPS sole treatment. Furthermore, the effects of the samples on cell injury in the hepatic cell line and bisphenolA-induced hepatic injury mouse model were investigated. The water extracts and the pepsin hydrolysates of sea cucumber significantly inhibited cell injury generated in the hepatocytes without cytotoxicity (p < 0.05), whereas the ethanol extracts were cytotoxic. However, these results indicate that the extracts and the enzymatic hydrolysates derived from sea cucumber can be used as beneficial materials for inhibiting liver damage.

Characterization of an antioxidant peptide from katsuobushi (dried bonito) protein hydrolysates

  • Lee, Jung Kwon;Jeon, Joong-Kyun;Byun, Hee-Guk
    • Journal of Marine Bioscience and Biotechnology
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    • v.7 no.1
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    • pp.19-27
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    • 2015
  • The objective of the current study was to evaluate the inhibitory and antioxidant activities of powdered katsuobushi (dried bonito) protein hydrolysates and their corresponding fractions. The powdered katsuobushi (dried bonito) hydrolysates were obtained by enzymatic hydrolysis using Alcalase, ${\alpha}$-chymotrypsin, Neutrase, pepsin, papain, and trypsin. The antioxidant efficacy of the respective hydrolysates were evaluated using 2,2-diphenyl-1-picrylhydrazyl (DPPH), hydroxyl, superoxide, and alkyl radical-scavenging activities. Among the hydrolysates, the peptic-derived hydrolysate exhibited the highest antioxidant activity compared to other enzymatic hydrolysates. Therefore, the peptic-derived hydrolysate was further analyzed, and was found to contain an active peptide with an amino acid sequence identified as Pro-Met-Pro-Leu-Asn-Ser-Cys (756 Da). The purified peptides from powdered katsuobushi (dried bonito) had an $EC_{50}$ value of $105.82{\mu}M$, and exhibited an inhibitory effect against DNA oxidation induced by hydroxyl radicals. Taken together, these results suggests that powdered katsuobushi (dried bonito) could be used as a natural antioxidant in functional foods and prevent oxidation reactions in food processing.

Angiotensin I Converting Enzyme Inhibitory Effects of Gelatin Hydrolysates Prepared from Tilapia mossambica Scales by Hot Water and Enzymatic Extraction (열수 및 효소적 가수분해로 제조된 틸라피아 비늘 젤라틴 가수분해물의 ACE 저해 활성)

  • Ahn, Yong-Seok;Lee, Won-Woo;Lee, Seung-Hong;Ahn, Gin-Nae;Ko, Chang-Ik;Oh, Chang-Kyung;Oh, Myung-Cheol;Kim, Dong-Woo;Jeon, You-Jin;Kim, Soo-Hyun
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.42 no.5
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    • pp.426-433
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    • 2009
  • Fish scales have potential in functional food preparation due to their antioxidant and antihypertensive properties. We investigated the angiotensin I converting enzyme (ACE) inhibitory activity of Tilapia mossambica scale extracts. Hydrolysates of tilapia scales were prepared by enzymatic extraction using five proteases (${\alpha}$-chymotrypsin, Alcalase, Kojizyme, Protamex and trypsin) after scales were treated with hot water for 3 hr. Scale enzymatic hydrolysates prepared using both hot water and enzyme treatments exhibited elevated hydrolysis (about 25%-55%) compared to only enzyme treatment (about 15%-45%). Enzymatic hydrolysates (1 mg/mL) prepared by both hot water and enzyme treatments also showed significantly increased ACE inhibitory activities from about 20%-75%. The pattern of ACE inhibitory activities was similar to the degree of hydrolysis. Alcalase and ${\alpha}$-chymotrypsin hydrolysates displayed the highest ACE inhibitory activities ($IC_{50}$ = 0.83 mg/mL and 0.68 mg/mL, respectively). In addition, the ACE inhibitory effects of $IC_{50}$-chymotrypsin hydrolysates increased with decreasing molecular weight (5 kDa>, 10 kDa> and 30 kDa>), with the 5 kDa> fraction displaying the highest ACE inhibitory activity (about 89.9% and $IC_{50}$ = 0.1 mg/mL). We suggest that the peptide compounds of enzymatic hydrolysates prepared from tilapia scale enhances ACE inhibitory activity and might be useful as an antihypertensive material.

Free Radical Scavenging Activity of Enzymatic Hydrolyzates of Hot Water Extract from the Shell of Reeve's Turtle (Chinemys reevesii)

  • Je, Jae-Young;Kim, Eun-Kyung;Park, Pyo-Jam;Kang, Mi-Kyung;Ahn, Chang-Bum
    • Fisheries and Aquatic Sciences
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    • v.11 no.2
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    • pp.71-75
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    • 2008
  • The shell of Reeve's turtle has been used as a traditional folk medicine in Korea. We produced a hot water extract from Reeve's turtle shell according to the traditional medical practice. To release bioactive peptides, the hot water extract was enzymatically hydrolyzed with various proteases, and the free radical scavenging activity of the hydrolysate was investigated against 1,1-diphenyl-2-picryl-hydrazyl (DPPH), hydroxyl and peroxyl radicals. The free radical scavenging activity of the enzymatic hydrolysates varied from 1 to 79% depending on the enzymes, free radical species, and concentration. The $EC_{50}$ values demonstrated that the enzymatic hydrolysates of hot water extract from the shell of Reeve's turtle are potential antioxidants.

Hepatoprotective Effects of Various Enzyme Hydrolysates from Oysters on Tacrine-Induced Toxicity in Human Hepatoma Cells (타크린으로 유발한 간세포 독성에 대한 효소별 굴 가수분해물의 보호 효과)

  • Park, Hye-Jin;Do, Hyung-Joo;Kim, Ok-Ju;Kim, Andre;Ha, Jong-Myung
    • Journal of Life Science
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    • v.22 no.1
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    • pp.117-125
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    • 2012
  • This study investigated the potential hepatoprotective benefits of Crassostrea gigas oyster hydrolysates. Oysters are known to have many biofunctional properties. In particular, oyster enzymatic hydrolysates produce substances with beneficial functions. The potential hepatoprotective effects of C. gigas hydrolysates against damage induced by tacrine were evaluated in vitro in HepG2 cells. Peptides were generated from C. gigas by enzymatic hydrolysis with Neutrase, Flavourzyme, or Protamex enzyme preparations. Tacrine treatment induced considerable cell damage in HepG2 cells, as shown by significant leakage of glutamic oxaloacetic transaminase (GOT) and lactate dehydrogenase (LDH). Cells treated with C. gigas hydrolysates showed an increased resistance to oxidative challenge compared to control cells, as revealed by higher cell survival against tacrine-induced hepatotoxicity. In addition, treatment with C. gigas hydrolysates reduced the leakage of GOT and LDH. These findings indicate that enzyme hydrolysates derived from C. gigas may be of benefit for developing hepatoprotective foods and drugs.

Preparation and Functional Properties of Enzymatic Oyster Hydrolysates (굴 효소 가수분해물의 제조 및 기능특성)

  • Chung, In-Kwon;Kim, Hye-Suk;Kang, Kyung-Tae;Choi, Yeung-Joon;Choi, Jong-Duck;Kim, Jin-Soo;Heu, Min-Soo
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.35 no.7
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    • pp.919-925
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    • 2006
  • The study was carried out to prepare oyster hydrolysates by using Alcalase, Flavourzyme, Neutrase, Protamex, pepsin and trypsin, and to investigate its functional properties. The ACE inhibitory activity and antioxidant activity of enzymatic oyster hydrolysates did not increase with hydrolysis time. Among enzymatic oyster hydrolysates, oyster hydrolysates incubated with Protamex for 1 hr (OHP) showed the most excellent ACE inhibitory activity and antioxidant activity, and their $IC_{50}$ values were 1.16 mg/mL and 1.49 mg/mL, respectively. However, all enzymatic oyster hydrolysates were not detected in antimicrobial activity.