• Title/Summary/Keyword: whey protein concentrate

검색결과 54건 처리시간 0.121초

Effects of Calcium Powder Mixtures and Binding Ingredients as Substitutes for Synthetic Phosphate on the Quality Properties of Ground Pork Products

  • Cho, Min Guk;Jeong, Jong Youn
    • 한국축산식품학회지
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    • 제38권6호
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    • pp.1179-1188
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    • 2018
  • This study aimed to investigate the combined effect of using natural calcium mixtures and various binding ingredients as replacers for synthetic phosphate in ground pork products. We performed seven treatments: control (0.3% phosphate blend), treatment 1 (0.5% natural calcium mixtures [NCM, which comprised 0.2% oyster shell calcium and 0.3% egg shell calcium powder] and 0.25% egg white powder), treatment 2 (0.5% NCM and 0.25% whey protein concentrate), treatment 3 (0.5% NCM and 0.25% concentrated soybean protein), treatment 4 (0.5% NCM and 0.25% isolated soybean protein), treatment 5 (0.5% NCM and 0.25% carrageenan), and treatment 6 (0.5% NCM and 0.25% collagen powder). All the treatment mixtures had higher pH and lower cooking loss than the control, which was treated with phosphate. We found that NCM and binding ingredients had no negative effects on the moisture content, lightness, and yellowness of the cooked ground pork products. Treatments 3 and 4 showed significantly lower CIE $a^*$ values than the control. Treatments 2 and 6 improved the textural properties of the products. In conclusion, the combination of NCM with whey protein concentrate or collagen powder could be suitable for producing phosphate-free meat products.

Bioavailability of Iron-fortified Whey Protein Concentrate in Iron-deficient Rats

  • Nakano, Tomoki;Goto, Tomomi;Nakaji, Tarushige;Aoki, Takayoshi
    • Asian-Australasian Journal of Animal Sciences
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    • 제20권7호
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    • pp.1120-1126
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    • 2007
  • An iron-fortified whey protein concentrate (Fe-WPC) was prepared by addition of ferric chloride to concentrated whey. A large part of the iron in the Fe-WPC existed as complexes with proteins such as ${\beta}$-lactoglobulin. The bioavailability of iron from Fe-WPC was evaluated using iron-deficient rats, in comparison with heme iron. Rats were separated into a control group and an iron-deficiency group. Rats in the control group were given the standard diet containing ferrous sulfate as the source of iron throughout the experimental feeding period. Rats in the iron-deficiency group were made anemic by feeding on an Fe-deficient diet without any added iron for 3 wk. After the iron-deficiency period, the iron-deficiency group was separated into an Fe-WPC group and a heme iron group fed Fe-WPC and hemin as the sole source of iron, respectively. The hemoglobin content, iron content in liver, hemoglobin regeneration efficiency (HRE) and apparent iron absorption rate were examined when iron-deficient rats were fed either Fe-WPC or hemin as the sole source of iron for 20 d. Hemoglobin content was significantly higher in the rats fed the Fe-WPC diet than in rats fed the hemin diet. HRE in rats fed the Fe-WPC diet was significantly higher than in rats fed the hemin diet. The apparent iron absorption rate in rats fed the Fe-WPC diet tended to be higher than in rats fed the hemin diet (p = 0.054). The solubility of iron in the small intestine of rats at 2.5 h after ingestion of the Fe-WPC diet was approximately twice that of rats fed the hemin diet. These results indicated that the iron bioavailability of Fe-WPC was higher than that of hemin, which seemed due, in part, to the different iron solubility in the intestine.

Comparison of Allergic Parameters between Whey Protein Concentrate and Its Hydrolysate in Rat Basophilic Leukemia (RBL)-2H3 Cells

  • Kim, Hana;Ahn, Sung-Il;Jhoo, Jin-Woo;Kim, Gur-Yoo
    • 한국축산식품학회지
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    • 제38권4호
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    • pp.780-793
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    • 2018
  • This study was conducted to compare the anti-allergic effects of a whey protein concentrate (WPC) and WPC hydrolysate. WPC hydrolysate was prepared using enzymatic digestion for 8 h with trypsin and ${\alpha}$-chymotrypsin, after which it was freeze-dried. The allergic parameters assessed in rat basophilic leukemia (RBL)-2H3 cells were degranulation and release of ${\beta}$-hexosaminidase, release of tumor necrosis factor $(TNF)-{\alpha}$, and changes in the expression of $IL-1{\beta}$, IL-4, and IL-10 by real time polymerase chain reaction (PCR). During preparation of the WPC hydrolysate, hydrolysis increased rapidly from 0 to 10 min and then gradually increased slowly from 1 h onwards, achieving a final degree of hydrolysis of 78.50%. The SDS-PAGE analysis revealed a reduction in the intensity of several protein bands in the WPC hydrolysate compared to the WPC. IgE-induced ${\beta}$-hexosaminidase release from RBL-2H3 cells was decreased to a higher degree following treatment with the hydrolysate compared to WPC treatment. W500 ($500{\mu}g/mL$ WPC) showed the least inhibition of ${\beta}$-hexosaminidase release, but there was no significant difference between W500 and W1000 ($1,000{\mu}g/mL$) (p<0.05). H1000 ($1,000{\mu}g/mL$ WPC hydrolysate) inhibited ${\beta}$-hexosaminidase release by 39%. Compared to the control, treatment with H1000 decreased $TNF-{\alpha}$ secretion to 11.87 pg/mL. The gene expression levels of IL-1${\beta}$, IL-4, and IL-13 were all significantly decreased in hydrolysate (p<0.05). In the case of $IL-1{\beta}$ and IL-4, the expression levels in W1000 treated cells were decreased by 73.67% and 65%, respectively, and that of IL-13 was decreased by 66.43% compared to the control.

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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Functional Properties of Peptides in Mixed Whey and Soybean Extracts after Fermentation by Lactic Acid Bacteria

  • Dong-Gyu Yoo;Yu-Bin Jeon;Se-Hui Moon;Ha-Neul Kim;Ji-Won Lee;Cheol-Hyun Kim
    • Journal of Dairy Science and Biotechnology
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    • 제41권3호
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    • pp.113-125
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    • 2023
  • In this study, we explored the synergistic effects of whey protein concentrate (WPC) and soybean protein components after fermentation with lactic acid bacteria isolated from kimchi, and identified several peptides with desirable physiological functions, proteolysis, and immune effects. Antioxidant activity was determined using 2,2'-azino-bis-3-ethylbenzothiazoline-6-sulphonic acid, 1,1-diphenyl-2-picrylhydrazyl, ferric-reducing antioxidant power, and hydroxyl radical scavenging assays, followed by cross-validation of the four antioxidant activities. These assays revealed that samples with a 8:2 and 9:1 whey to soy ratio possessed higher antioxidant activity than the control samples. Antibacterial potency testing revealed high antibacterial activity in the 9:1 and 8:2 samples. Cytotoxicity testing of samples using 3-(4, 5-dimethyl thiazol-2-yl)-2, 5-diphenyl tetrazolium bromide revealed that only the 10:0, 1:9, and 0:10 samples had <80% viable cells, indicating no significant cytotoxicity. Nitric oxide (NO) assays revealed that NO expression was reduced in 8:2, 5:5, and 0:10 protein ratio fermentations, indicating low inflammatory reaction stimulatory potential. Cytokine expression was confirmed using an enzyme-linked immunosorbent assay kit. The 8:2 sample had the lowest inflammatory cytokine (interleukin [IL]-1α, IL-6, and tumor necrosis factor-α) levels compared with the lipopolysaccharide-treated group. Amino acid profiling of the 8:2 sample identified 17 amino acids. These results suggest that inoculating and fermenting Lactobacillus plantarum DK203 and Lactobacillus paracasei DK209 with an 8:2 mixture of WPC and soybean protein releases bioactive peptides with excellent anti-inflammatory and antioxidant properties, making them suitable for functional food development.

유청 단백질에서 유도되는 생리활성 펩타이드에 관한 연구 (Isolation of Mitogenic Glycophosphopeptides from Cheese Whey Protein Concentrate)

  • 윤숭섭
    • Journal of Dairy Science and Biotechnology
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    • 제15권1호
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    • pp.33-44
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    • 1997
  • 1. CWPC중의 새로운 생리활성물질의 검색 Mouse 임파세포의 증식효과를 지표로 하는 면역기능을 검토하여 CWPC중의 면역 부활작용을 갖는 새로운 성분의 검색을 실시하였다. CWPC를 여러 가지 분획법으로 분획하여 mouse 임파세포의 증식효과를 지표로 면역 활성성분을 검색하였다. 그 결과 gel filtration, 음이온교환법을 사용하여 분획한 당을 다량 포함한 부분에 강한 면역 부활담당세포에 대하여 증식활성을 나타내는 물질을 발견하였다. 이 물질은 SDS-PAGE상에서 분자량이 약 16kDa에 위치하여 Ca, p및 당쇄를 포함한 물질이며, 이것을 GPP로 하였다. GPP에는 우유케이신의 trypsin분해물이며 Ca와 무기인을 풍부하게 포함하는 ${\beta}$-CPP와 유사한 phosphoserin 영역을 갖는 성분과 갖지 않는 성분의 2종류가 존재하며, 각각의 면역 부활활성이 인정되었다. 각 성분의 아미노산 분석, 당 분석의 결과에서 지금까지 보고된 우유중의 면역담당세포에 대한 증식활성을 갖는 물질과는 상이한 성분인 것으로 밝혀졌다. 더우기 이 활성물질(GPP)은 PP cell에서도 동등한 활성이 있는 것으로 판단되었다. 이러한 결과를 종합하여 보면 CWPC중에는 지금까지 알려지지 않았던 새로운 면역 부활물질이 존재하며, 그 성분에는 CPP와 유사한 phophoserine영역이 존재하는 성분이 포함되어 있고, N-글리코실 결합의 당쇄가 존재하는 것으로 시사되었다. 이 성분은 전신면역의 지표인 비장세포에 대해서만이 아니고, 장관면역계에 중요한 역할을 담당하는 PP Cell에서도 활성이 있는 것으로 보아 전신 및 국부적인 면역기능의 부활성분으로서 응용의 가능성이 시사되었다.

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Anti-obesity Effect of Fermented Whey Beverage using Lactic Acid Bacteria in Diet-induced Obese Rats

  • Hong, Sung-Moon;Chung, Eui-Chun;Kim, Cheol-Hyun
    • 한국축산식품학회지
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    • 제35권5호
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    • pp.653-659
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    • 2015
  • High-protein fermented whey beverage (FWB) was manufactured using whey protein concentrate (WPC) and Lactobacillus plantarum DK211 isolated from kimchi. This study was designed to evaluate the anti-obesity activity of FWB in male rats fed a high-fat diet. Male Sprague-Dawley rats were randomly assigned to three groups (n=8 per group). The three groups differed in their diet; one group received a normal diet (ND), another, a high-fat diet (HD), and the third, a HD plus fermented whey beverage (HDFWB), for 4 wk. Supplementation with FWB (the HDFWB group) prevented weight gain and body fat accumulation. The food intake in the HDWFB group was significantly lower (p<0.05) than that of the HD group. The HDWFB group also showed a significant decrease in organ weights (p<0.05), except for the weight of the testis. There was a significant decrease in total cholesterol, LDL-cholesterol, and triglycerides in the HDFWB group compared with the HD group (p<0.05), but there was no significant difference in serum HDL-cholesterol levels among the experimental groups. Rats ingesting FWB (the HDFWB group) also showed a significant decrease in blood glucose levels, and plasma levels of insulin, leptin, and ghrelin compared to HD group (p<0.05). These results indicate that FWB has beneficial effects on dietary control, weight control, and reduction in fat composition and serum lipid level; consequently, it may provide antiobesity and hypolipidemic activity against high fat diet-induced obesity in rats.

Comparative Efficacy of Plant and Animal Protein Sources on the Growth Performance, Nutrient Digestibility, Morphology and Caecal Microbiology of Early-weaned Pigs

  • Yun, J.H.;Kwon, I.K.;Lohakare, J.D.;Choi, J.Y.;Yong, J.S.;Zheng, J.;Cho, W.T.;Chae, B.J.
    • Asian-Australasian Journal of Animal Sciences
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    • 제18권9호
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    • pp.1285-1293
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    • 2005
  • The present study was conducted to evaluate and compare the effects of various animal and plant protein sources on piglet' performance, digestibility of amino acids and gut morphology in weaned pigs until 28 days after weaning. The plant protein sources used were soybean meal (SBM), fermented soy protein (FSP), rice protein concentrate (RPC); and animal protein sources tested were, whey protein concentrate (WPC) and fishmeal (FM). Iso-proteinous (21%) diets were formulated and lysine (1.55%) content was similar in all the diets. The level of each protein source added was 6% by replacing SBM to the same extent from the control diet containing 15% SBM. The ADG was higher (p<0.05) in the groups fed animal proteins as compared with plant proteins at all the levels of measurement, except during 15-28 days. The highest ADG was noted in WPC and FM fed diets and lowest in SBM fed diet. The feed intake was higher in animal protein fed groups than plant proteins at all phases, but the feed:gain ratio was not affected by protein sources except during overall (0 to 14 day) measurement which was improved (p<0.05) in animal protein fed diets compared to plant protein sources. The digestibilities of gross energy, dry matter and crude protein were higher in animal protein fed groups than for plant protein fed sources. The apparent ileal digestibilities of essential amino acids like Leu, Thr, and Met were significantly (p<0.05) higher in animal proteins fed animals as compared with plant protein fed animals. But the apparent fecal digestibilities of essential amino acids like Arg and Ile were significantly higher (p<0.05) in plant protein diets than animal protein sources. The villous structure studied by scanning electron microscope were prominent, straight finger-like, although shortened and densely located in FM fed group as compared with others. The lactic acid bacteria and C. perfringens counts were higher in caecal contents of pigs fed plant proteins than the animal proteins. Overall, it could be concluded that animal protein sources in the present study showed better effects on growth performance, nutrient digestibility and gut morphology than plant protein sources.

분자량에 따라 분획된 유청단백분해물이 Bifidobacterium bifidum Bb-11의 생장에 미치는 영향 (Effects of Whey Protein Hydrolyzates Fractionated by Molecular Weight on the Growth of Bifidobacterium bifidum Bb-11)

  • 김완섭;박승용;이범진;김평현;고준수
    • 한국축산식품학회지
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    • 제22권1호
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    • pp.59-65
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    • 2002
  • 이 연구는 Whey배지에 Whey protein concentrate 80% (WPC-80)와 Whey protein isolate(WPI)를 첨가하여 B. bifidum Bb-11의 생장촉진효과를 알아보고자 실시하였다. 또 이 단백질들의 구성성분인 $\alpha$-Lactalbumin과 $\beta$-Lactogluburin을 trypsin으로 처리하여 얻어진 분해물을 분자량에 따라 분획하여 각 분획별로 그 효과를 구명하였으며, 그 결과를 요약하면 다음과 같다. WPC 첨가에 의한 효과는 대조구에 비하여 생장촉진효과가 있는 것으로 나타났으나, 첨가농도에 따른 차이는 근소하였다. WPI는 뚜렷한 생장촉진효과를 보여주지 못하였으며, 첨가량이 많을수록 생장이 억제되었다. 두 종류의 유청단백질을 4$0^{\circ}C$에서 6시간 동안 trypsin처리한 후 UF처리에 의하여 분획하고 각 분획들을 Centricon-30 으로 농축한 후, 얻어진 $\alpha$-lactalbumin 분해물 3분획에 대한 단백질농도는 각각 11.63mg, 7.79mg 및 5.21mg 이었고, $\beta$-Lactoglubulin 분해물 3분획은 각각 4.12mg, 5.30 mg 및 9.35mg 이었다. $\alpha$-Lactalbumin분해물 세 분획 모두 대조구에 비하여 높은 생장촉진효과를 나타내었으며, 그중에서 분자량 10,000~3,000Da(F-II)과 3,000Da 이하(F-III)의 두 분획이 모두 높게 나타난 것으로 보아, 분자량 10,000Da 이하의 peptide들이 bifidobacteria의 생장을 향상시키는 것으로 밝혀졌다. $\beta$-Lactoglubulin 분해물 세 분획들도 대조구에 비하여 생장이 좋게 나타났다. 분자량 10,000Da 이하의 peptide를 함유하는 두 분획은 생장이 우수하였으며 배양 24 시간후에는 분자량 3,000Da 이상의 두 분획(F-I, F-II)이 대조구에 비하여 빠르게 생장이 저하된 반면, 분자량 3,000 Da이하의 분획(F-III)에서는 계속적인 생장촉진효과를 보여주었다.

치즈유청으로부터 제조한 유청단백질 가수분해물의 특성에 관한 연구 (Characteristics of Whey Protein (WPC-30) Hydrolysate from Cheese Whey)

  • 윤여창;안성일;정아람;한송이;김명희;이창권
    • Journal of Animal Science and Technology
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    • 제52권5호
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    • pp.435-440
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    • 2010
  • 유청단백질농축물(WPC)은 풍부한 단백질 및 다양한 생리활성 물질들을 함유하고 있음으로 식품의 단백질 보충 및 건강 기능성 향상을 위해 식품산업에서 널리 사용되고 있는 유용한 식품소재 중에 하나이다. 본 연구는 유용 기능성 식품소재로 활용이 가능한 유청단백질의 산업화와 관련된 사항들을 조사하고자 수행하였다. 한외여과를 이용한 WPC 제조과정에서 WPC-30을 포함한 한외여과 기의 국산화 가능성을 확인했다. 한외여과, 분무건조 및 단백질분해 효소를 이용하여 제조한 WPC-30 가수분해물의 이화학적 기능성을 검토한 결과 단백질 가수분해능 및 관능성에 대한 평가는 alcalase 처리했을 때 가장 높은 것으로 나타났으며 거품 형성능은 flavourzyme 처리한 WPC-30 가수분해물에서 가장 높은 결과를 보였다. 또한 다양한 pH조건에서의 단백질의 용해도를 측정한 결과, protamex 처리한 WPC-30 가수분해물에서 가장 높은 용해도를 나타내었다. 그러나 모든 WPC-30 가수분해물의 용해도는 알차리 조건에서는 유의적으로 개선되는 효과를 보였다. 이들 결과들을 총체적으로 검토한 결과, 효소를 이용한 유청단백질의 가수분해는 알카리조건에서 alcalase를 사용하는 것이 가장 효과적인 것으로 나타났다.