References
- Ma CY, Liu WS, Kwok KC, Kwok F. 1997. Isolation and characterization of proteins from soymilk residue (okara). Food Research International 29: 799-805
- Woo EY, Kim MJ, Shin WS, Lee KS. 2001. Production of protein hydrolyzate, that can be used as food additives, from Okara. Korean J Food Sci Technol 33: 769-773
- Shurtlff W, Aoyagi A. 1995. Tofu and Soymilk Production. New Age Food Study Center, Lafayette, CA, USA
- Kang KH, Lee DS. 1991. Studies on the Tofu-residue recycling. Korean Sci Ind 24: 31-35
- Chung SS, Chang HN, Park MY. 1978. Dehydration of soybean residue by hot-air in conjunction with filter pressing. Korean J Food Sci Technol 10: 1-7
- Kim DS, Seol NH, Kim HD. 1996. Change in quality of soybean curd residue as affected by different drying methods. J Korean Soc Food Nutr 25: 453-459
- Sohn JW, Kim WJ. 1985. Some quality changes in soybean curd by addition of dried soymilk residue. Korean J Food Sci Technol 17: 522-525
- Lee Gj. 1984. Changes in carbohydrate composition during the fermentation of soybean curd residue with enzymes. J Korean Biochem 17: 44-50
- Cho MK, Lee WJ. 1996. Preparation of high-fiber bread with soybean curd residue and Makkolli (rice wine) residue. J Korean Soc Food Sci Nutr 25: 632-636
- Yamaguchi F, Ota Y, Hatanaka C. 1996. Extraction and purification of pectic polysaccharides from soybean okara and enzymatic analysis of their structures. Carbohydrate Polymers 30: 265-273 https://doi.org/10.1016/S0144-8617(96)00046-X
- Beak J, Lee IS, Lee SP. 2002. Characterization and fer-mentation characteristics of lactic acid bacteria isolated from soybean curd residue (Biji). J Korean Soc Food Sci Nutr 31: 583-588 https://doi.org/10.3746/jkfn.2002.31.4.583
- Lee MS, Kim KH, Lee GJ. 1987. Microbiological studies and biochemical changes in fermentation soybean curd residue during fermentation. Korean J Food Sci Technol 19: 520- 527
- Im SK, Yoo SM, Kim TY, Chun HK, 2004. Quality charac-teristics of bijijang in different fermentation conditions. Korean J Food Sci Technol 36: 448-455
- Oh SM, Seo JH, Lee SP. 2005. Production of fibrinolytic enzyme and peptides from alkaline fermentation of soybean curd residue by Bacillus firmus NA-1. J Food Sci Nutr 34: 904-909 https://doi.org/10.3746/jkfn.2005.34.6.904
- Seo JH, Lee SP. 2004. Optimization of the production of fibrinolytic enzyme from Bacillus firmus NA-1 in fer-mented soybeans. J Food Sci Nutr 9: 14-20 https://doi.org/10.3746/jfn.2004.9.1.014
- AOAC. 1990. Official Methods of Analysis. 15th ed. Association of official agricultural chemists, Wash-ington DC, USA
- Astrup T, Müllertz S. 1952. The fibrin plate method for estimation fibrinolytic activity. Arch Biochem Biophys 40: 346-351 https://doi.org/10.1016/0003-9861(52)90121-5
- Matsushita S, Iwami N, Nitta Y. 1966. Colorimetric esti-mation of amino acids and peptides with the Folin phenol reagent. Anal Biochem 16: 365-371 https://doi.org/10.1016/0003-2697(66)90168-0
- Sohn KH, Jo MN, Jeon HJ, Park J, Joo MS. 2001. Effect of bean water concentration and incubation time on amy-lase activity and physicochemical characteristrics of Yukwa paste. J Food Sci Technol 33: 288-293
- Park JM, OH HI. 1995. Changes in microflora and enzyme activities of traditional Kochujang Meju during fermen-tation. J Food Sci Technol 27: 1158-1165
- Kim HJ, Lee JJ, Cheigh MJ, Choi SY. 1998. Amylase, protease, peroxidase and ascorbic acid oxidase activity of Kimchi ingredients. J Food Sci Technol 30: 1333-1338
- Genc M, Zorba M, Oza G. 2002. Determination of rheological properties of boza by using physical and sensory analysis. J Food Engineering 52: 95-98 https://doi.org/10.1016/S0260-8774(01)00092-9
- Seo JH, Lee SP. 2004. Production of fibrinolytic enzyme from soybean grit fermented by Bacillus firmus NA-1. J Medicinal Food 7: 442-449 https://doi.org/10.1089/jmf.2004.7.442
- Yoo CK, Seo WS, Lee CS, Kang SM. 1998. Purification and characterization of fibrinolytic enzyme excreted by Bacillus subtilis K-54 isolated from Chung Guk Jang. J Appl Microbiol Biotech 26: 507-514
- Jang SA, Kim MH, Lee MS, Oh TK, Sohn CB. 2000. Pu-rification and characterization of a fibrinolytic enzyme pro-duced by Bacillus sp. S19 from shrimp Jeot-Gal. J Appl Microbiol Biotech 28: 258-263
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