• Title/Summary/Keyword: Korean cheese

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CHEMICAL AND MICROBIOLOGICAL ANALYSIS OF GOAT MILK, CHEESE AND WHEY BY NIRS

  • Perez Marin, M.D.;Garrido Varo, A.;Serradilla, J.M.;Nunez, N.;Ares, J.L.;Sanchez, J.
    • Proceedings of the Korean Society of Near Infrared Spectroscopy Conference
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    • 2001.06a
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    • pp.1513-1513
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    • 2001
  • Present Food Legislation compels dairy industry to carry out analyses in order to guarantee the food safety and quality of products. Furthermore, in many cases industry pays milk according to bacteriological or/and nutritional quality. In order to do these analyses, several expensive instruments are needed (Milkoscan, Fossomatic, Bactoscan). NIRS technology Provides a unique instrument to deal with all analytical requirements. It offers as main advantages its speed and, specially, its versatility, since not only allows determine all the parameters required in milk analysis, but also allows analyse other dairy products, like cheese or whey. The objective of this study is to develop NIRS calibration equations to predict several quality parameters in goat milk, cheese and whey. Three sets of 123 milk samples, 190 cheese samples and 109 whey samples, have been analysed in a FOSS NIR Systems 6500 I spectrophotometer equipped with a spinning module. Milk and whey were analysed by folded transmission, using circular cells with gold surface and pathlength of 0.1 m, while intact cheese was analysed by reflectance using standard circular cells. NIRS calibrations were obtained for the prediction of chemical composition in goat milk, for fat (r$^2$=0.92; SECV=0.20%), total solids (r$^2$=0.95: SECV=0.22%), protein (r$^2$=0.94; SECV=0.07%), casein (r$^2$=0.93; SECV=0.07%) and lactose (r$^2$=0.89; SECV=0.05%). Moreover, equations have been performed to determine somatic cells (r$^2$=0.81; SECV=276.89%) and total bacteria (r$^2$=0.58; SECV=499.32%) counts in goat milk. In the case of cheese, calibrations were obtained for the prediction of fat (r$^2$=0.92; SECV=0.57), total solids (r$^2$=0.80; SECV=0.92%) and protein (r$^2$=0.70; SECV=0.63%). In whey, fat (r$^2$=0.66; SECV=0.08%), total solids (r$^2$=0.67; SECV=0.19%) and protein (r$^2$=0.76; SECV=0.07%) NIRS equations were obtained. These results proved the viability of NIRS technology to predict chemical and microbiological parameters and somatic cells count in goat milk, as well as chemical composition of goat cheese and whey.

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Effects of Food Grade Porcine Pancreatic Lipase on Neutral Volatile Compound Profiles in Cheddar Cheese (식용 돼지췌장 리파제가 체다치즈의 중성 휘발성 성분 생산에 미치는 영향)

  • Kwak, Hae-Soo;Jeon, Ike-J.;Chung, Byung-Soo
    • Korean Journal of Food Science and Technology
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    • v.22 no.2
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    • pp.206-214
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    • 1990
  • Effects of commercial food grade porcine pancreatic lipase on the neutral volatile compounds in Cheddar cheese were studied The enzyme was incorporated into the cheese at two different levels of concentration and ripened at various temperatures. The production of 2-butanone increased at higher amount of lipase and higher temperature, but the production of 2-pentanone was inconsistent trends during ripening periods. The concentration of acetaldehyde was the highest among aldehydes and was increased consistently during ripening Periods. In alcohol production ethanol was the most abundant but no further consistent trend was observed after 6 wk. The production of ethyl butyrate was the most abundant ester and related io lipase activities as well as ripening temperatures. Dimethyl sulfide was the only sulfur compound and appeared not to be related to the addition of lipase or ripening temperatures . Statistical analysis suggested that ethyl butyrate was most correlated to aged Cheddar flavor during cheese ripening.

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Quality Characteristics of Restructured Pork Jerky according to Addition of Sliced Cheese (슬라이스 치즈 첨가에 의한 재구성 돈육포의 품질 특성)

  • Yang, Cheul-Young
    • The Korean Journal of Food And Nutrition
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    • v.20 no.3
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    • pp.304-310
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    • 2007
  • This study was carried out to evaluate the phsicochemical, rheological and sensory characteristics of the restructured pork jerky with the addition of sliced cheese(4, 8 and 12%). The TC-1, TC-2 and TC-3 samples had lower moisture contents than the control, Crude protein and fat contents were significantly difference among all treatment (p<0.05). The crude ash and salinity values of TC-1, TC-2 and TC-3 were higher than the control. With the addition of sliced cheese(l2%), the manufacturing yield and water absorption ability were high among all the different treatments, but the control showed significantly higher values than TC-1, TC-2 and TC-3. The pH ranged from 5.62-6.01 in all treatments and the TC-3 sample had the highest pH, The water activity range was 0.70 - 0.74, and the various treatments had slightly higher than the control. The hardness of the TC-3( J 2%) treatment was the lowest among all the treatment. The strength values increased according to increases in sliced cheese, but there were no significant differences(p>0.05). The sensory evaluation for color and flavor received the highest scores in working males 6.96(TC-2) and student males 7.50(TC-2), respectively. The texture scores ranged from 7.07-7.63 and were the highest of all sensory evaluation factors, For overall acceptance the highest scores were received from student males(TC-3), student females(TC-2), working males(TC-2) and working females(TC-l), respectively.

The Development of Imitated Cheese Using Whole Milk Powder and Fermented Milk (전지분유와 발효유를 이용한 치즈 유사품개발)

  • Jo, Ae-Ri;Noh, Hae-Won;Kim, Kee-Sung;Chung, Keun-Hee;Jeon, Woo-Min
    • Food Science of Animal Resources
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    • v.30 no.1
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    • pp.102-109
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    • 2010
  • Imitated cheese was prepared from whole milk powder and fermented milk and the moisture content, general components, noncasein nitrogen, nonprotein nitrogen and free amino acids were analyzed to determine the optimal ripening conditions needed to produce imitated cheese that was similar to natural cheese. The moisture content of the imitated cheese was 40.27% one day after being produced. The cheese was ripened using two different methods; at $12^{\circ}C$ with vacuum sealing and at $12^{\circ}C$ and 95% RH with a spray of Penicillium camemberti. The lactose content decreased rapidly from 24.64 to 5.43% at the $4^{th}$ wk of ripening when it was ripened with Penicillium camemberti. The degradation of protein by mold ripening in the imitated cheese was more rapid than that of vacuum sealing. The flavor and body texture were optimal at the $4^{th}$ wk ripening. The noncasein nitrogen and nonprotein nitrogen content increased from 28.10 to 54.05, and from 6.58 to 23.06 mg/mL, respectively, when ripened with P. camemberti. When the cheese was ripened at $12^{\circ}C$, 95% R.H with P. camemberti after 4 wks, all free amino acids increased significantly except asparagines. The total free amino acid and bitter amino acid concentrations increased from 8.40 to 34.87, and from 1.53 to 10.02 nmol/mg, respectively. When the imitated cheese was prepared, the protein degradation and flavor of the cheese was better when ripened with P. camemberti.

Potential of Antifungal Lactic Acid Bacteria Isolated from Kimchi as Cheese Starters (김치 분리 항진균 유산균의 치즈 스타터로서 이용 가능성)

  • Oh, Hyun Hee;Huh, Chang Ki;Choi, Ha Nuel;Yang, Hee Sun;Bae, In Hyu;Lee, Jai Sung;Jeong, Yong Seob;Lee, Nam Keun;Jung, Hoo Kil
    • Journal of Dairy Science and Biotechnology
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    • v.31 no.2
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    • pp.133-141
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    • 2013
  • This study was performed to identify the cheese starter potential of antifungal lactic acid bacteria isolated from Kimchi. Eight fungi were isolated from cheese or the cheese ripening room, and identified as Penicillium and Cladosporium by ITS-5.8S rDNA analysis. Twenty-two lactic acid bacteria species with antifungal activity were isolated from Kimchi, and identified as Lactobacillus and Pediococcus by 16S rRNA sequence analysis. Six lactic acid bacteria species were selected (L. sakei subsp. ALJ011, L. sakei subsp. ALI033, L. sakei subsp. ALGy039, P. pentosaceus ALJ015, P. pentosaceus ALJ024, and P. pentosaceus ALJ026) based on higher antifungal activity from the initial 22 species. Out of the six identified species, L. sakei subsp. ALI033 had the highest antifungal activity. For growth of the six lactic acid bacteria, optimal temperature and pH were $30{\sim}37^{\circ}C$ and 7.0, respectively. Proteolytic activities of the six lactic acid bacteria were almost as strong as the commercial strain Str. thermophilus Body-1. Coagulative activities of L. sakei subsp. ALI033, P. pentosaceus ALJ015, and P. pentosaceus ALJ024 were higher than those of L. sakei subsp. ALJ011, L. sakei subsp. ALGy039, and P. pentosaceus ALJ026. The acid resistance of L. sakei subsp. was higher than that of P. pentosaceus. The major organic acid component of the lactic acid bacteria culture medium was lactic acid.

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Changes in Chemical Components of Soybean Cheese during Ripening in Ethanol-Brine Solution (대두치이즈 액침숙성중 화학성분의 변화)

  • 김길환;이양희
    • Microbiology and Biotechnology Letters
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    • v.9 no.3
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    • pp.153-157
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    • 1981
  • After Penicillium candidum and Actinomucor elegans were inooculated to soybean curd and incubated for 4-6 days at 10-13$^{\circ}C$, respectively, and the fresh soybean cheeses were soaked in ethanol-brine solution which was composed with 10% ethanol and 5% sodium chloride, for 16 weeks at above temperature. Total nitrogen content of soybean cheese was reduced by eloping the ripening time, but in soaking solution the content was increased. In amino nitrogen and reducing sugar of the cheese and the solution, the contents were continuously increased to the certain period, and after that time the rate was stupid. Nitrogen in the cheese inoculated with Act. elegans was highly hydrolysed and amino nitrogen and reducing sugar were much more produced than that inoculated with Pen. candidum.

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Microbiological Safety Concerns with Dairy Products from Farmstead Plants (목장형 유가공업의 미생물학적 안전성에 대한 고찰)

  • Lee, Jeeyeon;Yoon, Yohan
    • Journal of Dairy Science and Biotechnology
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    • v.35 no.4
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    • pp.215-220
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    • 2017
  • The consumption of natural cheese in Korea has dramatically increased since 1997. However, most of the cheeses consumed in Korea are imported. Thus, surplus milk has accumulated in Korea. To solve this problem, the Ministry of Agriculture, Food and Rural Affairs established a policy to create a farmstead dairy industry. Although the law governing the industry was established in 2016, food safety guidelines have not been prepared. Milk and cheese are prone to contamination with mycotoxins such as aflatoxin M1 and ochratoxin A, antibiotic residues such as penicillin and tetracycline, and pathogenic bacteria including Listeria monocytogenes, Escherichia coli, Salmonella, and Staphylococcus aureus. L. monocytogenes infections have a very high mortality rate; hence, special attention should be paid to preventing contamination of milk and cheese with this organism. To ensure the microbiological safety of farmstead dairy products, the HACCP model has been used. However, this model is not suitable for current processing environments of farmstead dairy products because of the small size of the operations. In addition, scientific data on the microbiological safety of farmstead dairy product are limited and are urgently needed.

Isolation and Characterization of Halophilic Kocuria salsicia Strains from Cheese Brine

  • Youn, Hye-Young;Seo, Kun-Ho
    • Food Science of Animal Resources
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    • v.42 no.2
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    • pp.252-265
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    • 2022
  • Kocuria salsicia can survive in extreme environments and cause infections, including catheter-related bacteremia, in humans. Here, we investigated and evaluated the characteristics of nine K. salsicia strains (KS1-KS9) isolated from cheese brine from a farmstead cheese-manufacturing plant in Korea from June to December, 2020. Staphylococcus aureus American Type Culture Collection (ATCC) 29213 was used as a positive control in the growth curve analysis and biofilm-formation assays. All K. salsicia isolates showed growth at 15% salt concentration and temperatures of 15℃, 25℃, 30℃, 37℃, and 42℃. KS6 and KS8 showed growth at 5℃, suggesting that they are potential psychrotrophs. In the biofilm-formation analysis via crystal violet staining, KS6 exhibited the highest biofilm-forming ability at various temperatures and media [phosphate buffered saline, nutrient broth (NB), and NB containing 15% sodium chloride]. At 25℃ and 30℃, KS3, KS6, and KS8 showed higher biofilm-forming ability than S. aureus ATCC 29213. The antimicrobial resistance of the isolates was evaluated using the VITEK® 2 system; most isolates were resistant to marbofloxacin and nitrofurantoin (both 9/9, 100%), followed by enrofloxacin (7/9, 77.8%). Five of the nine isolates (5/9, 55.6%) showed multidrug resistance. Our study reports the abilities of K. salsicia to grow in the presence of high salt concentrations and at relatively low temperatures, along with its multidrug resistance and tendency to form biofilms.

Evaluation of Benzoic Acid Level of Fermented Dairy Products during Fermentation (발효과정에서 생성되는 발효유제품의 안식향산 함량 수준 평가)

  • Lim, Sang-Dong;Park, Mi-Sun;Kim, Kee-Sung;Yoo, Mi-Young
    • Food Science of Animal Resources
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    • v.33 no.5
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    • pp.640-645
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    • 2013
  • The purpose of this study was to utilize the results as a basic data of benzoic acids in animal products that didn't mention in the quality standard of National Veterinary Research and Quarantine Service (NVRQS) to solve the conflict of international trade and administration. Set-Pak method listed in the quality standard of NVRQS, faster than auto distillation methods with same recovery selected as a pre treatment for the determination of benzoic acid. The regression curve of benzoic acid with Sep-Pak method was linear with the $R^2$ value of 0.999 and the limit of detection (LOD) and limit of quantitation (LOQ) was 0.058 mg/kg and 0.176 mg/kg, respectively. The benzoic acid in the fermented milk was detected after the fermentation stage by addition of starter culture with the level of 2.28~10.48 mg/kg and 0~16.5 mg/kg in the commercial fermented milk products without detection by the addition of syrup. In case of cheese products, the benzoic acids level was influenced by the curd formation (Camembert cheese) and the quality of natural cheese (processed cheese), by the way, the benzoic acid level of commercial natural cheese was 0~4.2 mg/kg, processed cheese was 0~20.8 mg/kg, respectively. Based on this result, it may be possible to utilize as a basic data for the systematic control the level of natural benzoic acids in raw material, processing and final products of animal origin.

Antilisterial activity of fresh cheese fermented by Lactobacillus paracasei BK57 (Lactobacillus paracasei BK57 균주로 발효시킨 프레쉬 치즈의 항리스테리아 활성)

  • Lim, Eun-Seo;Lee, Eun-Woo
    • Korean Journal of Microbiology
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    • v.51 no.4
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    • pp.407-418
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    • 2015
  • This study is focused on establishing the optimal conditions to enhance the production of antilisterial substances by Lactobacillus paracasei BK57 isolated from Baikkimchi. In addition, the growth and in situ lactic acid and bacteriocin production of this strain were investigated during the manufacture of fresh cheese. And then the efficacy of using Lactobacillus starter as a protective culture to improve the safety of fresh cheese against Listeria monocytogenes KCTC 3569 was estimated. Maximum growth rate and activity of antibacterial substances were obtained in Lactobacilli MRS broth at $37^{\circ}C$ with controlled pH 6.0 after 30 h of incubation under aerobic condition. However, the growth rate and antimicrobial activity of bacteriocin produced in whole milk supplemented with yeast extract (2.0%) as a substrate were lower than those obtained in MRS broth. Live cells and cell-free culture supernatant of BK57 strain were effective in the suppression of L. monocytogenes in milk, whereas the inhibitory of the bacteriocin obtained from BK57 strain was higher in BHI broth than in milk. During storage at $4^{\circ}C$ and $15^{\circ}C$ for 6 days, no significant difference was found in the cell viability and antimicrobial activity of BK 57 strain in fresh cheese. In samples held at two temperatures, there was at least a 15% reduction in the numbers of the pathogen in fresh cheese artificially contaminated with approximately $10^5CFU/ml$ of L. monocytogenes within 6 days. Our results demonstrated the usefulness of L. paracasei BK57 having antilisterial activity as a biopreservative in the cheese making process.