• 제목/요약/키워드: Enzyme Hydrolysate

검색결과 249건 처리시간 0.028초

Production of Ready-to-Reconstitute Functional Beverages by Utilizing Whey Protein Hydrolysates and Probiotics

  • Kumar, Sabbini Kalyan;Jayaprakasha, Heddur Manjappa;Paik, Hyun-Dong;Kim, Soo-Ki;Han, Song-Ee;Jeong, A-Ram;Yoon, Yoh-Chang
    • 한국축산식품학회지
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    • 제30권4호
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    • pp.575-581
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    • 2010
  • This investigation was aimed at developing a ready-to-reconstitute beverage by utilizing probiotics and whey protein hydrolysates carrying bioactive peptides. Cheddar cheese whey was ultrafiltered. The 18% protein retentate was subjected to protein hydrolysis using Neutrase. The hydrolyzed retentate was further condensed to 35% total solids and spray-dried at $75^{\circ}C$ outlet air temperature. Different levels of sugar, citric acid and stabilizer were blended for spray-dried hydrolysates. Spray-dried hydrolysate was further inoculated with different levels of probiotics grown in a whey medium and dried in fluidized-bed drier at $40^{\circ}C$ to obtain a ready-to-reconstitute beverage. Hydrolysis was greatest at an enzyme:substrate ratio of 1:25 for 3 h. Spray-dried hydrolysate reconstituted to 1% protein and blended with 15% sugar, 0.2% citric acid and 0.15% xantham gum resulted in a superior product with no sedimentation. Accordingly, sugar, citric acid and xanthum gum were dry-blended with spray-dried hydrolysates. Bifidobacterium bifidum and Lactobacillus acidophilus that was grown separately in a whey medium, blended to produce 2% spray-dried hydrolysate and dried as described above resulted in a readyto-reconstitute beverage mix. The fluidized dried product typically exhibited a probiotic count of $10^8$colony forming units (CFU)/g. However, blending of probiotic to the retentate and direct spray-drying precipitously reduced the probiotic count to $10^4$ CFU/g of powder.

난각막 분해물의 식품 소재로서 기능적 특성 (Functional Properties of Egg Shell Membrane Hydrolysate as a Food Material)

  • 전태욱;박기문
    • 한국축산식품학회지
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    • 제22권3호
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    • pp.267-273
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    • 2002
  • 본 연구는 난각막(egg shell membrane)에 keratinase를 생성하는 Bacillus licheniformis를 배양하여 제조한 효소분해 난각막분해물(enzyme-degradation egg shell membrane hy-drolysate, EESMH)과 IN NaOH-Ethanol로 분해한 알칼리분해 난각막분해물(alkalic-degradation egg shell membrane hy-drolysate, AESMH)을 제조하여 식품소재로 활용하고자 성분분석 및 분해물의 유화성, 거품형성력, 항산화력 등의 식품학적 기능을 확인하였다. 즉, EESMH의 생산수율은 약 15% 였고 AESMH의 경우 약 70%의 수율로 가수분해물이 생성됐으며 아미노산 분석 결과 EESMH와 AESMH의 아미노산 구성은 주성분이 aspartic acid, glutamic acid, cystine으로 큰 차이가 없었으나 EESMH의 경우 histidine이 18.69%로 AESMH의 2.56%에 비해 6배 정도 함량이 높게 나타났다. 단백질의 기능적 특성 측면에서 용해성은 EESMH와 AESMH 모두95%이상의 높은 용해성을 나타내었다. 유화 활성의 경우 EDESDBB가 더 효과가 있었으며, 유화 안정성도 EESMH가 AESMH보다 약 8% 안정하였다. 거품 형성력은 AESMH가 EESMH보다 모든 pH범위에서 약 2배 정도 높았으며 안정성도 우수하였다. 항산화력의 경우AESMH가 항산화력이 높은 것으로 확인하였고 EESMH의 경우 전체적으로 매우 약하게 나타났다.

The Effect of the Addition of Encapsulated Collagen Hydrolysate on Some Quality Characteristics of Sucuk

  • Palamutoglu, Recep;Saricoban, Cemalettin
    • 한국축산식품학회지
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    • 제36권6호
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    • pp.807-818
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    • 2016
  • The effect of addition commercial fish collagen hydrolysate and encapsulated fish collagen hydrolysate on the quality characteristics of sucuk (a traditional Turkish dry-fermented sausage) was investigated. Fish collagen hydrolysates were encapsulated with maltodextrin (MD) which has two different dextrose equivalent (12DE and 19 DE), with two different types of core/coating material ratios (10% peptide : 90% MD, 20% peptide : 80% MD). Than six group of sucuk dough (control, peptide, MD1210, MD1220, MD1910, MD1920) prepared and naturally fermented. The effects of the ripening period (28 d), treatment (peptide and encapsulated peptide addition) 'ripening period ${\times}$ treatment' interaction on sucuk's pH, lactic acid contents, $a_w$ values and moisture contents were statistically significant (p<0.01). The pH, moisture and $a_w$ decrease and lactic acid concentration increses during ripening period. The highest pH was observed with peptide added group (5.41), and encapsulated peptide added groups (4.76-4.77) were lower than the control group (5.26). Lactic acid concentration was affected from treatment and all treatment groups lactic acid concentration (0.185-0.190%) were higher than the control group (0.164%). Antioxidant and Angiotensin converting enzyme inhibition activities of water soluble protein extracts were significantly (p<0.01) increased during ripening time. Antioxidant activity reached the highest level at $28^{th}$ d. There was no significant increase observed after fermentation for both activities. Antioxidant activity of encapsulated peptide added (%39.56-40.48) groups were higher than control (34.28%) and peptide added (33.99%) groups except MD1920 (38.30%). The effect of the ripening period of the sucuk samples on TBA values was found to be statistically significant (p<0.01) while treatment and 'ripening period ${\times}$ treatment' interaction were not to be significant (p<0.05). The value of hardness was the highest in the encapsulated peptide added groups (29.27, 35.83 N), and it was 20.40 N and 15.41 N in the peptide added group and the control group respectively.

살 오징어(Todarodes pacificus) 간췌장 유래 Aminopeptidase 활성획분에 의한 Alcalase 처리 멸치(Engrauris japonica) 가수분해물의 쓴맛 개선 최적화 (Optimization of Reduced Bitterness of Alcalase-treated Anchovy Engrauris japonica Hydrolysate by Aminopeptidase Active Fraction from Common Squid Todarodes pacificus Hepatopancreas)

  • 윤인성;김진수;이정석;권인상;허민수
    • 한국수산과학회지
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    • 제54권5호
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    • pp.724-732
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    • 2021
  • This study used response surface methodology to investigate the optimal conditions to reduce the bitterness of alcalase-treated anchovy hydrolysate (AAH) by the aminopeptidase active fraction (AAF) derived from the common squid Todarodes pacificus hepatopancreas. The central composite design selected AAF/AAH ratio (X1, %) and hydrolysis time (X2, h) as independent variables, and the degree of hydrolysis (Y1) and bitterness (Y2) as dependent variables. The uncoded values of the multiple response optimization for independent variables were 3.4% for the AAF/AAH ratio and 9.2 h for the hydrolysis time. The predicted values of the yield and bitterness score of alcalase-AAF continuously treated anchovy hydrolysate (AAAH) under the optimized conditions were 68.9% and 4.6 points, respectively. Their measured values of 69.5% for yield and 4.6±0.5 points for bitterness were similar to the predicted values. The food components of AAAH were 91.4% (moisture), 7.5% (protein), 0.1% (lipid) and 0.6% (ash). The findings indicate the potential value for use as an anchovy seasoning base. The results also confirm that the bitterness of AAH was remarkably improved by AAF and implicates AAF derived from squid hepatopancreas as a good enzyme to catalyze reduced bitterness.

대황으로부터 추출한 crude laminaran 가수분해물의 암 세포독성 (Cytotoxicities of Hydrolyzed Crude Laminaran from Eisenia bicyclis on the SNU-1, HeLa and SW Cells)

  • 도정룡;김동수;박종혁;김영명
    • 한국식품과학회지
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    • 제38권6호
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    • pp.793-798
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    • 2006
  • E. bicyclis 열수추출물에서 얻은 crude laminaran의 암 세포독성을 증진시키기 위하여 효소 및 산 가수분해와 고온가압처리에 의한 저분자화를 시도하였으며, 분자량 수준별 위암(SNU-1), 자궁암(HeLa) 및 대장암(SW) 세포주에 대한 세포독성 효과를 알아보았다. 저분자화한 crude laminaran의 총당 및 황산기 함량은 가수분해 방법에 따라 각각 72.3 및 3.5%(효소가수분해), 68.5 및 3.0%(산가수분해), 70.2 및 3.2%(고온가압처리) 수준이었으며, 각 가수분해물의 구성당 조성은 glucose가 78.5, 75.7 및 74.7% 수준으로서 주요 성분이었으며 mannose가 각각 9.9, 10.6 및 11.5%, galactose가 각각 8.5, 9.2 및 9.6%, 그리고 fucose가 각각 3.1, 4.5 및 4.2% 수준으로 함유되어 있었다. 위암, 자궁암 및 대장암 세포주를 대상으로 한 저분자화 수식 laminaran의 세포독성을 MTT assey법으로 조사한 결과 10kDa 이상의 분획에서 높은 세포독성을 나타내었으며, 특히 분자량 50-10 kDa에서 $IC_{50}$ 값은 효소적 가수분해시 60.4, 58.6 및 53.9 ${\mu}g/mL$, 산 가수분해시 75.6, 73.5 및 77.4 ${\mu}g/mL$, 고온가압처리시 61.7, 68.2 및 60.8 ${\mu}g/mL$으로 다른 분획물에 비해 저농도에서 세포독성이 높게 나타났다. 이상의 결과로 미루어 가수분해 처리한 crude laminaran은 분자량 10,000 dalton 이상에서 세포독성이 높았으며, 가수분해 방법에 따른 laminaran의 세포독성에 미치는 영향은 효소적 가수분해가 가장 높았고 그 다음으로 고온가압처리 및 산 가수분해 순으로 높게 나타났다.

도축 폐혈액 단백질로부터의 Angiotensin I Converting Enzyme 저해 펩타이드의 생산 (Production of Angiotensin I Converting Enzyme Inhibitory Peptides from Bovine Blood Plasma Proteins)

  • 현창기;신현길
    • KSBB Journal
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    • 제14권5호
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    • pp.600-605
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    • 1999
  • 본 연구는 도축 폐기물인 가축혈액을 이용하여 항고혈압 기능성 식품소재로서의 angiotensin I converting enzyme 저해 펩타이드 분획을 생산하기 위한 조건과 가능성을 조사하기 위하여 수행되었다. 산업적으로 이용 가능한 단백분해효소 중 Alcalase가 혈장 원액 및 그로부터 분리된 albumin에 대하여 가장 높은 활성의 가수분해물을 생성하였다. 특히 albumin의 Alcalase 가수분해물과 이를 gel chromatography를 통새 분획하여 얻은 고활성 분획의 $IC_50$값은 각각 0.5 및 0.02 mg/mL로서 지금까지 보고된 식품단백질 유래 펩타이드 혼합물들과 비교할 때 활성이 매우 높은 것에 속함을 알 수 있었다. 또한 이 고활성 펩타이드 분획은 혈장 원액으로부터 단순한 한외여과만을 거쳐도 얻을 수 있음을 확인함으로써 산업적 실용화 가능성이 높은 공정임을 알게 되었다.

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효소분해법에 의한 개량어장유의 속성제조 및 품질에 관한 연구 1. 고등어 폐기물을 이용한 어장유의 속성제조 및 품질 (Conditions for Rapid Processing of Modified Fish Sauce using Enzymatic Hydrolysis and Improvement of Product Quality 1. Fish Sauce from Mackerel Waste and Its Quality)

  • 한봉호;배태진;조현덕;김종철;김병삼;최수일
    • 한국수산과학회지
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    • 제23권2호
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    • pp.109-124
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    • 1990
  • A rapid processing method for fish sauce of high quality stability and favorable flavor was investigated using mackerel waste as starting material. The chopped waste was homogenized with water and hydrolyzed by commercial proteolytic enzymes such as Complex enzyme-2000($2.18\cdot10^4$ U/g solid, Pacific Chem. Co.) and Alcalase ($1.94\cdot10^4$ U/g solid, Novo) in a cylindrical vessel with 4 baffles and 6-bladed turbine impeller. Optimal pH and temperature for the hydrolysis with Complex enzyme-2000 were 8.0 and $50^{\circ}C$, and those with Alcalase were 9.0 and $55^{\circ}C$. In both cases, the reasonabe amount of added water and enzyme concentration based on the waste weight were $40\%,\;3\%$ and hydrolyzing time was 100 min. Thermal treatment of the hydrolysate with $6\%$ of invert sugar for 2 hours at $90^{\circ}C$ was adequated to inactivation of the enzymes and pasteurization of the hydrolysate. Flavor, taste and color of the hydrolysate were improved during the thermal treatment in which the browning reaction products might participate and result in antioxidative and bactericidal effects. Combined use of $0.005\%$ of Caryophylli flos with $6\%$ of invert sugar was also effective for the improvement of taste. Yield of the fish sauce based on the total nitrogen of the raw waste was $93.7\~94.9\%$, and $87.6\~87.9\%$ of the total nitrogen in the fish sauce was in the from of amino nitrogen. The pH, salinity and histamine content of the fish sauce prepared with $15\%$ of table salt were $6.1\~6.2$, $14.0\~14.5\%$ and less than $10mg\%$, respectively. The fish sauce was stable on bacterial growth during the storage of 60 days at $26\pm3^{\circ}C$ and the quality was also maintained.

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효소분해법에 의한 개량어장유의 속성제조 및 품질에 관한 연구 2. 정어리 폐기물을 이용한 어장유의 속성제조 및 품질 (Conditions for Rapid Processing of Modified Fish Sauce using Enzymatic Hydrolysis and Improvement of Product Quality 2. Fish Sauce from Sardine Waste and Its Quality)

  • 배태진;한봉호;조현덕;김종철;김병삼;최수일
    • 한국수산과학회지
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    • 제23권2호
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    • pp.125-136
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    • 1990
  • To develope a rapid processing method for fish sauce, processing conditions of fish sauce from sardine waste was investigated. The chopped waste was homogenized and hydrolyzed by commercial proteolytic enzymes such as Complex enzyme-2000($2.18\cdot10^4$ U/g solid) and Alcalase($1.94\cdot10^4$ U/g solid) in a cylindrical vessel with 4 baffles and 6-bladed turbine impeller. Optimal temperature for the case of hydrolysis with Complex enzyme-2000 was 50 and that with Alcalase was $55^{\circ}C$. In both cases, the reasonable pH, amount of water for homo-genization, enzyme concentration and hydrolyzing time were 8.0, $40\%$ (W/W), $3\%$ and 100 min, respectively. Heating of the filtrated hydrolysate for 2 hours at $90^{\circ}C$ with $6\%$ of invert sugar was suitable for pasteurization of the hydrolysate and inactivation of enzymes. Flavor, taste and color of the hydrolysate was improved during the thermal treatment in which the browning reaction products might participate and result in antioxidative and bactericidal effects. Combined use of $0.005\%$ of Caryophylli flos with invert sugar was also effective for the improvement of taste. Yield of the fish sauce based on the total nitrogen in the raw sardine waste was $91.2\~92.3\%$ and $87.2\~87.8\%$ of the total nitrogen in the fish sauce was in the form of amino nitrogen. The pH, salinity and histamine content of the fish sauce prepared with $15\%$ of table salt were $6.1\~6.2$, $14.2\~14.4\%$ and less than $10mg\%$, respectively. The fish sauce was stable during the storage of 60 days at $26\pm3^{\circ}C$ on bacterial growth and its quality was also maintained.

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효소분해법에 의한 개량어장유의 속성제조 및 품질에 관한 연구 3. 정어리 전어체를 이용한 어장유의 속성제조 및 품질 (Conditions for Rapid Processing of Modified Fish Sauce using Enzymatic Hrdrolysis and Improvement of Product Quality 3. Fish Sauce from Whole Sardine and Its Quality.)

  • 배태진;한봉호;조현덕;김병삼;이현숙
    • 한국수산과학회지
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    • 제23권5호
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    • pp.361-372
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    • 1990
  • Processing conditions of whole sardine into modified fish sauce were investigated. Thawed and chopped sardine was homogenized and hydrolyzed using commercial proteolytic enzymes such as complex enzyme-2000($2.18{\cdot}10^4U/g solid$) and alcalase($1.94{\cdot}10^4\;U/g solid$) in a cylindrical vessel with 4 baffles and 6-bladed impeller. Optimal pH, enzyme concentration and temperature for the hydrolysis with complex enzyme-2000 were 7.0, $7\%$ (W/W) and $52^{\circ}C$, and-those with alcalase were 8.0, $6\%$ (W/W) and $60^{\circ}C$. In both cases, the reasonable amount of water for homogenization, agitation speed and hydrolyzing time were $100\%$ (W/W), 100 rpm and 210 minutes. Thermal treatment of the filtered hydrolysate at $90^{\circ}C$ for 2 hours with $6\%$ of invert sugar was adequated to inactivation of the enzymes and pasteurization of the hydrolysate. Flavor, taste and color of the hydrolysate were improved during the heating process in which the browning products might participate. The content of free amino nitrogen in the fish sauce seasoned with $15\%$ of table salt was ca. $1,640 mg\%$. Yield of the fish sauce based on the contents of proteinous and free amino nitrogen in the raw whole sardine was ca. $86\%$, and ca. $96\%$ of these compounds of the fish sauce was in the form of free amino nitrogen. The pH, salinity and histamine content of the fish sauce were $6.1\~6.3,\;14.2\~14.3\%$ and less than $10\;mg\%$.

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민꽃게 및 꽃새우 효소가수분해물의 풍미발현성분 (Flavor Constituents in Enzyme Hydrolysates from Shore Swimming Crab and Spotted Shrimp)

  • 오광수;강수태
    • 한국식품영양과학회지
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    • 제30권5호
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    • pp.787-795
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    • 2001
  • 인간의 기호에 바람직한 풍미를 지니고 있는 갑각류의 풍미발현성분을 살펴보기 위해 민꽃게와 꽃새우를 시료로 하여 효소가수분해물을 조제하고, 이들의 정미성분 및 자숙취성분을 분석하였다. Body effect로서 맛 및 조직감에 영향을 미치는 것으로 알려져 있는 구성지방산의 조성은 민꽃게와 꽃새우 생시료의 경우 양자가 서로 비슷하여, 모두 16 : 0, 16 : 1n7, 18 : 0, 18 : 1n9, 20 : 5n3및 22 : 6n3 등이 주요 구성지방산이었고, n3계열의 고도불포화지방산의 조성비도 각각 27.75% 및 28.46%로서 서로 비슷하였다. 민꽃게와 꽃새우 효소가 수분해물의 유리아미노산 총량은 각각 5,226.7 mg% 및 8,757.3 mg% 및 8,757.3 mg%이었고, 주요 유리아미노산은 양 시료 모두 taurine, asparagine, glutamic acid, glycine, alanine, isoleucine, leucine, phenylalanine, lysine 및 arginine의 함량이 많았고, dipeptide인 anserine도 비교적 많이 함유되어 있었다. 대부분의 아미노산이 꽃새우 쪽에 많이 함유되어 있었으며, 특히 asparagine, lgutamic acid 및 proline 등은 꽃새우 쪽에 2배 이상 함유되어 있었다. 그리고 수산무척추동물 엑스분의 상쾌한 맛의 주성분인 betaine 함량은 각각 850.0 mg% 및 755.9 mg%로 다량 함유되어 있었다. ATP관련물질 중 AMP의 함량이 약간 많았으나, 양시료 모두 정미발현에 큰 영향을 주지는 못할 정도였다. 무기이온성분으로는 양시료 모두 Na, K, P 및 Cl 이온이 양적으로 많았으며, 그외 Ca 이온도 비교적 많이 함유되어 있었다. 민꽃게 효소가수분해물의 자숙취 성분은 acid류 6종, alcohol류 10종, aldehyde류 7종, ketone류 11종, ester류 1종, phenol류 5종, benzene류 4종, hydrocarbon류 22종, furan류 1종, 함질소화합물 21종 및 기타 11종으로 구성되어 있었고, 계수적인 측면에서 가장 많은 종류의 화합물은 alkane류를 위주로 한 hydrocarbon류 및 pyrazine류 5종, hydrocarbon류 36종, furan류 1종, 함질소화합물 14종 및 기타 8종이 동정되었다.

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