• Title/Summary/Keyword: Biogenic amines

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Analysis and management of new hazard chemicals in foods (식품 중 신종유해물질의 관리 및 분석)

  • Choi, Dongmi;Hu, Soojung;Suh, Junghyuck;Yoon, Taehyung;Kim, Eunju;Choi, Jangduck;Park, Sung-Kug;Lee, Kwangho
    • Analytical Science and Technology
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    • v.22 no.2
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    • pp.172-185
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    • 2009
  • To help understanding about hazard chemicals occurring newly in food, it has been reviewed characteristics, mechanism, food standards and analytical trend of the hazard chemicals occurring avoidably in food manufacturing process. The new hazard chemicals in food are classified by 4 regarding mechanism such as heat, fermentation, additives and unknowns. The new hazard chemicals by heat process are acrylamide, furan, HCAs and PAHs. By the fermentation, ethylcarbamate and biogenic amines are occurred. According to food additives, 3-MCPD, benzene and nitrosamines can be produced. And the last group is the illegal compounds including anti-impotence drug analogues and anti-obesity drug analogues. To analyze the new hazard chemicals in food, GC or LC with UVD, FLD or MSD are used mainly after sample pretreatment by LLE, SPE or headspace method.

Characteristic Analysis and Production of Short-Ripened Korean Traditional Soy Sauce Added with Rice Bran (미강 첨가량에 따른 단기숙성 간장의 제조 및 특성 분석)

  • Jeong, Su-Ji;Shin, Mee-Jin;Jeong, Seong-Yeop;Yang, Hee-Jong;Jeong, Do-Youn
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.43 no.4
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    • pp.550-556
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    • 2014
  • Rice bran contains both excellent nutritional value and functional advantages. Its utilization is limited due to reducing texture and low storage. To satisfy various tastes, Bacillus spp. having high amylase and protease activities were selected. Using the strains, we made whole grain soybean Meju with a reduced manufacturing period by increasing the concentration of total nitrogen. We made soy sauces with mashing ratios of soy bean and rice bran at 10:0, 9:1, 7:3, and 5:5, and then compared their physiochemical properties. After 2 weeks of fermentation, the sugar content increased from 21~22% to 30~32%. However, pH and salinity showed no differences. At a ratio of 9:1, total nitrogen, amino nitrogen content, and total free amino acid contents were the highest at 1.62%, 652.52 mg%, and 8,804.03 mg/kg, respectively, compared to other mashing ratios of soy bean and rice bran. Especially, the contents of aspartic and glutamic acid, which increase delicate flavoring, were higher in our soy sauce compared to those of general traditional soy sauce and brewed soy sauce, which were 504.25 and 1,262.25 mg/kg, respectively. Serine and alanine, which are related to sweet taste, were present at 49.50 and 518.75 mg/kg, respectively, which were the highest among all mixing ratios, at a ratio of 9:1. Compared to general traditional soy sauce and brewed soy sauce, the contents of histamine and tyramine among biogenic amines decreased to 35.85 and 41.04 mg/kg, respectively. Finally, a soy bean and rice bran mixing ratio of 9:1 was determined to be the optimal mixing ratio in the sensory evaluation.

Manufacturing and Quality Characteristics of Puffed Black Bean Fermented by Lactobacillus plantarum Strains Isolated from Kimchi (김치 유래 Lactobacillus plantarum을 이용한 팽화 검은콩 발효물의 제조 및 품질특성)

  • Hwang, Un-Sik;Jeong, So-Yeon;Park, Soo-Yeon;Park, Mi-Sun;Kang, Min-Ji;You, Cheong-Bin;Seo, Hyun-Ji;Lee, Eun-Soo;Yun, Sang-Man;Park, Hoon;Suh, Hee-Jae
    • Journal of Food Hygiene and Safety
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    • v.35 no.6
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    • pp.618-629
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    • 2020
  • The purpose of this study was to optimize the fermentation condition of black bean by lactic acid bacteria (LAB) and to evaluate the quality characteristics of fermented black bean. Lactobacillus plantarum SU22 isolated from kimchi was selected as a starter for the fermentation of black bean because the strain exhibited strong antimicrobial activity against pathogenic bacteria and did not produce biogenic amines or a carcinogenic enzyme, β-glucuronidase. Fermentation was performed with broth containing puffed black bean (PBB) inoculated with 1% (v/v) of L. plantarum SU22 at 37℃ for 48h. The viable cell count of LAB was over 9 Log CFU/mL in PBB (20%) broth fermented with L. plantarum SU22. Fermentation of alcalase-treated PBB (20%) broth with L. plantarum SU22 was found to be the optimal condition, increasing viable cell count of LAB up to 10.30 Log CFU/mL. Under the optimal condition, the total polyphenol content (94.02 mg GAE/g) and DPPH radical scavenging activity (92.50%) were significantly increased, compared to non-fermented control (87.74 mg GAE/g, 83.14%).