• 제목/요약/키워드: Cheese whey protein

검색결과 48건 처리시간 0.025초

유청(乳淸)과 대두 단백질(蛋白質)의 공동침전(共同沈殿) 특성(特性) (Coprecipitation Characteristics of Cheese Whey and Soybean Proteins)

  • 위재준;이형주
    • Applied Biological Chemistry
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    • 제26권4호
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    • pp.199-204
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    • 1983
  • 대두(大豆) 단백질에의 함유황(含硫黃) 아미노산 강화원(强化源)으로서 유청(乳淸)단백질을 사용하기 위한 목적으로 유청과 두유(豆乳)의 혼합물로부터 응고물을 만들고 유청(乳淸) 및 대두(大豆) 단백질의 공동침전 최적조건과 특성을 조사하였다. 유청과 두유는 1:1 부피비로 혼합한 다음 응고제인 $CaCl_2$의 농도를 $0.005{\sim}0.5M$, pH$1.5{\sim}8.0$, 온도를 $60{\sim}100^{\circ}C$로 조정하여 응고시키고 이 때 얻어지는 커드 여액(濾液)의 흡광도가 가장 낮은 조건을 결정하였다. 공동침전 최적조건은 여액의 흡광도가 낮고 그 때 얻어지는 커드의 조직감이 좋은 때로 하였다. 공동침전 최적조건은 $CaCl_2$농도 0.0125M, pH$6.5{\sim}7.5$, 온도 $70{\sim}80^{\circ}C$로 나타났다.

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방사성 표지단백질을 이용한 우유의 열처리 및 한외거르기가 코티지 치즈의 생산성 증대에 미치는 영향 (Effect of Thermalization and Ultrafiltration Membrane on the Increase of Cottage Cheese Yield Using Radiolabelled Protein)

  • 노봉수;박인선
    • 한국식품과학회지
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    • 제22권7호
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    • pp.774-779
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    • 1990
  • 치즈 제조시 열처리와 한외거르기를 통하여 생산량이 증가되는 정도를 방사성 동위원소 $[^{14}C]$가 표지된 락토글로불린을 이용하여 분석하였다. 그 결과 열처리를 통하여 4.33%의 ${\beta}$-락토글로불린이 치즈 커드에 결합되었으며, 한외거르기를 통하여 $3.20{\sim}6.65%$${\beta}$-락토글로불린이 생산량 증대에 관여하였다. 단백질의 증가와 비교해 본 결과, 다른 유청단백질도 한외거르기, 열처리 효과에 의하여 치즈 커드와 결합하는 것으로 추측되었으며 한외거르기시 막에 흡착되거나 하여 손실된 양은 1.03% 이었다.

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WPI의 물리화학적 특성에 관한 연구 (Physicochemical Properties of Whey Protein Isolate)

  • 안명수;김찬희
    • 한국식품과학회지
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    • 제39권1호
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    • pp.50-54
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    • 2007
  • 단백질을 식품의 원료로서 여러 가지 식품에 응용하려고 할때 제일 먼저 문제되는 것이 영양가이지만 동시에 물리화학적 특성도 식품 원료로서의 적합성을 결정하는데 중요한 요인이 되고 있다. 그런 면에서 유청(cheese whey)의 성분에서 단백질 함량을 90% 이상으로 농축 분리시킨 whey protein isolate(WPI)는 단백질 보충제로서 뿐만 아니라 다양한 물리화학적 특성을 가지고 있기 때문에 여러 가지의 가공식품에 이용할 수 있다고 사료된다. 따라서 본 실험에서는 WPI의 아미노산 함량, 용해성, 유화성, 기포성을 조사하여 식품의 기능성 원료 및 대체물로서의 이용 가능성을 알아보고자 하였다. WPI의 총 아미노산 함량은 89.5%였고 그 중에서 필수 아미노산 함량이 44.6%를 차지하였다. 필수 아미노산 중에서는 leucine, isoleucine, valine 등의 BCAA(branched chain amino acid) 함량이 높았다. pH에 따른 WPI의 용해성은 82-88%의 범위로 pH의 영향을 받지 않았고 유화용량은 302.7mL/g으로 난황의 187.0mL/g보다 높았으며 시간이 경과함에 따라 유화액의 이장량으로 측정한 유화안정성도 65-97%로 나타나 난황의 60-89%보다 안정함을 보였다. 기포형성력은 323.3%로 난백의 186.6%보다 약 2배 정도 높았고 시간이 경과함에 따라 남은 기포의 부피로 측정한 기포안정성은 85.9-97.7%로 난백의 84.8-95.3%와 유사하였다. 이상의 결과에서 WPI는 우수한 단백질 보충제로서 뿐만 아니라 용해성, 기포성, 유화성도 우수하게 나타났으므로 각종 가공식품의 품질향상에 영향을 주는 기능성 원료 및 대체물로서의 활용도가 매우 높을 것으로 사료된다.

유기농 유청 단백 가수분해의 최적 효소 선발 (Optimal Enzyme Selection for Organic Whey Protein Hydrolysis)

  • 서형주;신중철;김재환;장주현;한성희
    • 한국식품영양학회지
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    • 제30권6호
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    • pp.1359-1363
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    • 2017
  • The purpose of this study was that the optimal hydrolysis conditions of endo- and exo-type enzymes were selected to utilize organic cheese byproducts. Optimal substrate concentration and optimum enzyme ratio were measured by using 4 kinds of endo-type enzymes (alcalase, neutrase, protamex, and foodpro alkaline protease) and two exo-type enzymes (flavourzyme and prozyme 2000P) for whey protein hydrolysis were analyzed using liquid chromatography. As a result, the optimal endo-type enzyme through the first enzyme reaction was selected as alcalse, and as a result of the secondary enzyme reaction, flavourzme was selected as the Exo type enzyme. The concentration of whey protein substrate for optimal primary and secondary enzyme reactions was 10%. In addition, the optimum ratio of enzyme was 0.5% of alcalase and 0.2% of flavourzyme, which showed low molecular weight chromatography pattern compared to 2% of alcalase and 1% of flavourzyme hydrolyzate. Therefore, hydrolyzing the endo-type enzyme alcalase at a concentration of 0.5% for 10 hours and then hydrolyzing the exo-type enzyme flavouryme at a concentration of 0.2% for 4 hours was considered to be the optimum condition.

Peptide Analysis and the Bioactivity of Whey Protein Hydrolysates from Cheese Whey with Several Enzymes

  • Jeewanthi, Renda Kankanamge Chaturika;Kim, Myeong Hee;Lee, Na-Kyoung;Yoon, Yoh Chang;Paik, Hyun-Dong
    • 한국축산식품학회지
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    • 제37권1호
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    • pp.62-70
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    • 2017
  • The aim of this study was identifying a suitable food grade enzymes to hydrolyze whey protein concentrates (WPCs), to give the highest bioactivity. WPCs from ultrafiltration retentate were adjusted to 35% protein (WPC-35) and hydrolyzed by enzymes, alcalase, ${\alpha}-chymotrypsin$, pepsin, protease M, protease S, and trypsin at different hydrolysis times (0, 0.5, 1, 2, 3, 4, and 5 h). These 36 types of hydrolysates were analyzed for their prominent peptides ${\beta}-lactoglobulin$ (${\beta}-Lg$) and ${\alpha}-lactalbumin$ (${\alpha}-La$), to identify the proteolytic activity of each enzyme. Protease S showed the highest proteolytic activity and angiotensin converting enzyme inhibitory activity of IC50, 0.099 mg/mL (91.55%) while trypsin showed the weakest effect. Antihypertensive and antioxidative peptides associated with ${\beta}-Lg$ hydrolysates were identified in WPC-35 hydrolysates (WPH-35) that hydrolyzed by the enzymes, trypsin and protease S. WPH-35 treated with protease S in 0.5 h, responded positively to usage as a bioactive component in different applications of pharmaceutical or related industries.

유청단백질로 만들어진 식품포장재에 관한 연구

  • 김성주
    • 한국유가공학회:학술대회논문집
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    • 한국유가공기술과학회 2002년도 제54회 춘계심포지움 - 우유와 국민건강
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    • pp.59-60
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    • 2002
  • Edible films such as wax coatings, sugar and chocolate covers, and sausage casings, have been used in food applications for years$^{(1)}$ However, interest in edible films and biodegradable polymers has been renewed due to concerns about the environment, a need to reduce the quantity of disposable packaging, and demand by the consumer for higher quality food products. Edible films can function as secondary packaging materials to enhance food quality and reduce the amount of traditional packaging needed. For example, edible films can serve to enhance food quality by acting as moisture and gas barriers, thus, providing protection to a food product after the primary packaging is opened. Edible films are not meant to replace synthetic packaging materials; instead, they provide the potential as food packagings where traditional synthetic or biodegradable plastics cannot function. For instance, edible films can be used as convenient soluble pouches containing single-servings for products such as instant noodles and soup/seasoning combination. In the food industry, they can be used as ingredient delivery systems for delivering pre-measured ingredients during processing. Edible films also can provide the food processors with a variety of new opportunities for product development and processing. Depends on materials of edible films, they also can be sources of nutritional supplements. Especially, whey proteins have excellent amino acid balance while some edible films resources lack adequate amount of certain amino acids, for example, soy protein is low in methionine and wheat flour is low in lysine$^{(2)}$. Whey proteins have a surplus of the essential amino acid lysine, threonine, methionine and isoleucine. Thus, the idea of using whey protein-based films to individually pack cereal products, which often deficient in these amino acids, become very attractive$^{(3)}$. Whey is a by-product of cheese manufacturing and much of annual production is not utilized$^{(4)}$. Development of edible films from whey protein is one of the ways to recover whey from dairy industry waste. Whey proteins as raw materials of film production can be obtained at inexpensive cost. I hypothesize that it is possible to make whey protein-based edible films with improved moisture barrier properties without significantly altering other properties by producing whey protein/lipid emulsion films and these films will be suitable far food applications. The fellowing are the specific otjectives of this research: 1. Develop whey protein/lipid emulsion edible films and determine their microstructures, barrier (moisture and oxygen) and mechanical (tensile strength and elongation) properties. 2. Study the nature of interactions involved in the formation and stability of the films. 3. Investigate thermal properties, heat sealability, and sealing properties of the films. 4. Demonstrate suitability of their application in foods as packaging materials. Methodologies were developed to produce edible films from whey protein isolate (WPI) and concentrate (WPC), and film-forming procedure was optimized. Lipids, butter fat (BF) and candelilla wax (CW), were added into film-forming solutions to produce whey protein/lipid emulsion edible films. Significant reduction in water vapor and oxygen permeabilities of the films could be achieved upon addition of BF and CW. Mechanical properties were also influenced by the lipid type. Microstructures of the films accounted for the differences in their barrier and mechanical properties. Studies with bond-dissociating agents indicated that disulfide and hydrogen bonds, cooperatively, were the primary forces involved in the formation and stability of whey protein/lipid emulsion films. Contribution of hydrophobic interactions was secondary. Thermal properties of the films were studied using differential scanning calorimetry, and the results were used to optimize heat-sealing conditions for the films. Electron spectroscopy for chemical analysis (ESCA) was used to study the nature of the interfacial interaction of sealed films. All films were heat sealable and showed good seal strengths while the plasticizer type influenced optimum heat-sealing temperatures of the films, 130$^{\circ}$C for sorbitol-plasticized WPI films and 110$^{\circ}$C for glycerol-plasticized WPI films. ESCA spectra showed that the main interactions responsible for the heat-sealed joint of whey protein-based edible films were hydrogen bonds and covalent bonds involving C-0-H and N-C components. Finally, solubility in water, moisture contents, moisture sorption isotherms and sensory attributes (using a trained sensory panel) of the films were determined. Solubility was influenced primarily by the plasticizer in the films, and the higher the plasticizer content, the greater was the solubility of the films in water. Moisture contents of the films showed a strong relationship with moisture sorption isotherm properties of the films. Lower moisture content of the films resulted in lower equilibrium moisture contents at all aw levels. Sensory evaluation of the films revealed that no distinctive odor existed in WPI films. All films tested showed slight sweetness and adhesiveness. Films with lipids were scored as being opaque while films without lipids were scored to be clear. Whey protein/lipid emulsion edible films may be suitable for packaging of powder mix and should be suitable for packaging of non-hygroscopic foods$^{(5,6,7,8,)}$.

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우유 성분을 이용한 생치즈와 유청 음료의 개발 (Development of Fresh Cheeses and Whey Drinks Using Milk Components)

  • 박인덕;홍윤호
    • 한국식품과학회지
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    • 제24권3호
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    • pp.209-214
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    • 1992
  • 본 실험에서는 낙농 제품의 국산화를 위한 방안을 모색하고자 다양한 생치즈 및 유청 음료를 개발하여 그 특성을 관찰하였다. 수율은 생치즈에서 22.3%, 유청에서는 77.7%이었다. pH는 생치즈에서 6.46, 변형 생치즈는 첨가된 성분에 따라 $5.90{\sim}6.49$로 약간의 차이를 보였고 순수 유청에서는 6.49, 유산균 발효 유청은 $3.97{\sim}4.91$, 변형 유청은 $6.07{\sim}6.47$로 측정되었다. 적정산도는 생치즈에서 $0.09{\sim}0.26%$, 유청 음료는 $0.09{\sim}0.36%$이었다. 생치즈의 고형성분, 단백질, 유당 함량은 각각 $25.67{\sim}34.18%$, $7.45{\sim}9.11%$, $3.61{\sim}4.14%$를 나타내었고 유청 음료는 각각 $7.39{\sim}7.70%$, $0.88{\sim}0.94%$, $4.93{\sim}6.17%$를 나타내었다. 유청 음료 100 ml당 젖산 함량은 $0.01{\sim}0.38g$으로 유산균 발효 음료에 가장 많았다. 일반 세균군집은 생치즈에서 $0{\sim}30/g$, 유청 음료 중에서 $0{\sim}80/ml$이었다. 호냉성 세균군집은 생치즈에서 $0{\sim}20/g$$이었고, 유청 음료 중에는 $0{\sim}60/ml$이었다. 유산균은 유산균 발효 음료에서만 $97{\sim}401{\times}10^8/ml$ 검출되었다. 대장균, 진균은 두 제품 모두 검출되지 않았다. 생치의 관능검사 결과 딸기 생치즈가 가장 양호하였고, 마늘 생치즈가 가장 열등하게 평가되었다. 유청 음료는 순수 유청이 가장 양호하였고, 인삼유청이 가장 열등하게 평가되었는데 이의 개선을 위한 연구가 요망된다.

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유청(乳淸)과 대두(大豆) 단백질(蛋白質) 공동침전(共同沈澱)에 의해 제조(製造)된 아미노산 강화두부(强化豆腐)의 특성(特性) (Characteristics of Amino Acid Fortified Tofu Manufactured by Coprecipitation of Whey and Soybean Proteins)

  • 위재준;이형주
    • Applied Biological Chemistry
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    • 제26권4호
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    • pp.205-210
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    • 1983
  • 유청(乳淸)과 대두(大豆) 단백질(蛋白質) 공동침전(共同沈澱)에 의해 제조된 아미노산 강화두부(强化豆腐)의 특성(特性)을 조사하기 위하여 유청(乳淸)또는 유청분말(乳淸粉末)과 두유(豆乳)를 혼합하여 두부를 제조하고 이때 얻어지는 강화 두부의 일반조성, 아미노산 조성을 분석하고 물리적 특성도 비교하였다. 강화 두부는 외관이나 특성(特性)에서 재래식 두부와 큰 차이가 없었다. 전고형분 함량은 재래식 두부가 약 19%, 강화 두부가 17.3$\sim$18.1%이고 단백질 함량은 재래식 두부가 13.1% 강화 두부의 경우 10.9$\sim$11.4%로서 모두 재래식 두부가 높았다. 유청의 조지방(粗脂肪) 함량(含量)이 낮으므로 유청의 혼합비율이 높아질수록 두부 중 지방함량은 낮아졌으며 유청(乳淸) 두유(豆乳) 혼합물 중의 유당은 5$\sim$15%가 강화 두부에 이행되었다. 유청과 두유를 3:1로 혼합하여 제조한 경화 두부의 함유황(含硫黃) 아미노산 함량은 3.80g/100g 단백질로서 재래식 두부의 2.54g에 비해 약 50% 강화효과를 보였다.

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COMPARATIVE STUDY ON PANEER MAKING FROM BUFFALO AND COW MILK

  • Masud, T.;Athar, I.H.;Shah, M.A.
    • Asian-Australasian Journal of Animal Sciences
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    • 제5권3호
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    • pp.563-565
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    • 1992
  • The objective of this study is to compare the qualitative and quantitative properties of paneer prepared from buffalo and cow milk. Paneer from buffalo milk had higher total solids as compared to cow. Moreover significant differences were recorded in fat and protein contents among tested samples of milk, cheese and whey respectively. The results of the organoleptic evaluations showed that paneer made from cow milk was liked more as compared to buffalo.

동유럽 국가산 수입 유가공품의 방사능 잔류조사 (Monitoring of the Radioactive Contaminants in Dairy Products Imported from the East European Countries)

  • 이명헌;조미란;김연희;손성완;김상근
    • 대한수의학회지
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    • 제43권3호
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    • pp.399-403
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    • 2003
  • The present studies were conducted to monitor radioactive contamination in dairy products imported from 16 countries located in the East Europe which were affected by the Chernobyl nuclear accident. The 556 samples such as butter, cheese, ice cream, whey protein and hydrolysed milk protein products were collected randomly and determined from 1999 to 2002. All sample were below the Koeran and CODEX maximum tolerance level of radioactivity for $^{131}I$, $^{134}Cs$ and $^{137}Cs$.