Perspectives for the Industrial Use of Bacteriocin in Dairy and Meat Industry |
Lee, Na-Kyoung
(Department of Food Science and Biotechnology of Animal Resources, Konkuk University)
Lee, Joo-Yeon (Korea Livestock Products HACCP Management Institute) Kwak, Hyung-Geun (Korea Livestock Products HACCP Management Institute) Paik, Hyun-Dong (Department of Food Science and Biotechnology of Animal Resources, Konkuk University) |
1 | Cho, S. H., Seo, I. W., Choi, J. D., and Joo, I. S. (1990) Antimicrobial and antioxidant activity of grapefruit and seed extract on fishery products. Bull. Korean Fish Soc. 23, 289- 296 과학기술학회마을 |
2 | Holck, A. L., Axelsson, L., Hhne K., and Krckel L. (1994) Purification and cloning of sakacin 674, a bacteriocin from Lactobacillus sake LB674. FEMS Microbiol. Lett. 15, 143-149 |
3 | Nes, I. F. and Holo, H. (2000) Class II antimicrobial peptides from lactic acid bacteria. Biopolymers 55, 50-61 DOI |
4 | Oh, S. J., Heo, H. J., Park, D. J., Kim, S. H., Lee, S. J., and Imm, J. Y. (2006) Effect of encapsulated bacteriocin on acid production and growth of starter cultures in yoghurt. Food Sci. Biotechnol. 15, 903-907 과학기술학회마을 |
5 | Park, H. J., Lee, N.-K., Kim, K.-T., Ha, J.-U., Lee, D. S., and Paik, H.-D. (2003) Inhibition of Listeria monocytogenes in vacuum or modified atmosphere-packed ground beef by lactococcal bacteriocins. Nutraceut. Food 8, 196-199 과학기술학회마을 DOI ScienceOn |
6 | Ryan, M. P., Meaney, W. J., Ross, R. P., and Hill, C. (1998) Evaluation of lacticin 3147 and a teat seal containing this bacteriocin for inhibition of mastitis pathogen. Appl. Environ. Microbiol. 64, 2287-2290 PUBMED |
7 | Schillinger, U., Geisen, R., and Holzapfel, W. H. (1996) Potential of antagonisitic microorganisms and bacteriocins for the biological preservation of foods. Trends Food Sci. Technol. 7, 158-222 DOI ScienceOn |
8 | Wong, J. W., Hashimoto, K., and Shibamoto, T. (1995) Antioxidant activities of rosemary and sage extract and vitamin E in a model meat system. J. Agric. Food Chem. 43, 2707-2712 DOI ScienceOn |
9 | Jung, M.-Y. and Paik, H.-D. (2000) Identification and partial characterization of lacticin JW3, a bacteriocin produced by Lactococcus lactis JW3 isolated from commercial swiss cheese products. Food Sci. Biotechnol. 9, 116-123 과학기술학회마을 |
10 | Yoon, Y. C., Park, H.-J., Han, J.-J., Chung, C.-I., and Paik, H.-D. (2006) Control of Listeria monocytogenes in milk by lacticin JW3, a bacteriocin produced by Lactococcus lactis JW3 isolated from cheese. Milk Sci. Int. 11, 6-10 |
11 | Paik, H.-D., Kim, H.-J., Nam, K.-J., Kim, C.-J., Lee, S.-E., and Lee, D.-S. (2006) Effect of nisin on the storage of sous vide processed Korean seasoned beef. Food Control 17, 994-1000 DOI ScienceOn |
12 | Drosinos, E. H., Mataragas, M., Nasis, P., Galiotou, M., and Metaxopoulos J. (2005) Growth and bacteriocin production kinetics of Leuconostoc mesenteroides E131. J. Appl. Microbiol. 99, 1314-1323 DOI ScienceOn |
13 | Ghalfi, H., Benkerroum, N., Doguiet, D. D. K., Bensaid, M., and Thonart, P. (2007) Effectiveness of cell-adsorbed bacteriocin produced by Lactobacillus curvatus CWBI-B28 and selected essential oils to control Listeria monocytogenes in pork meat during cold storage. Lett. Appl. Microbiol. 44, 268-273 DOI ScienceOn |
14 | 이나경, 김성미, 백현동 (2001) 한국전통발효식품에 관련 된 박테리오신의 연구동향. 미생물과 산업 pp. 23-28 |
15 | Delgado, A., Lpez, F. N. A. Brio, D., Peres, C., Fevereiro, P., and Garrido-Fernndez, A. (2007) Optimum bacteriocin production by Lactobacillus plantarum 17.2b requires absence of NaCl and apparently follows a mixed metabolite kinetics. J. Biotechnol. 130, 193-201 DOI ScienceOn |
16 | Jacobsen, T., Budde, B. B., and Koch, A. G. (2003) Application of Leuconostoc carnosum for biopreservation of cooked meat products. J. Appl. Microbiol. 95, 242-249 DOI ScienceOn |
17 | Moon, G.-S., Kim, W. J., and Kim, M. H. (2002) Synergistic effects of bacteriocin-producing Pediococcus acidilactici K10 and organic acids on inhibiting Escherichia coli O157:H7 and applications in ground beef. J. Microbiol. Biotechnol. 12, 936-942 과학기술학회마을 |
18 | Alpas, H. and Bozoglu, F. (2002) Recovery of Escherichia coli O157:H7 and Salmonella in milk and cream of chicken soup from high hydrostatic pressure (HHP) and bacteriocin application upon storage. High Pressure Res. 22, 685-687 DOI |
19 | Lee, S. S. Hsu, J. T., Mantovani, H. C., and Russell, J. B. (2002) The effect of bovicin HC5, a bacteriocin from Streptococcus bovis HC5, on ruminal methane production in vitro. FEMS Microbiol. Lett. 217, 51-55 DOI PUBMED |
20 | Santos Nascimento, J., Santos, K. R. N., Gentilini, E., Sordelli, D., and Bastos, M. C. F. (2002) Phenotypic and genetic characterisation of bacteriocin-producing strains of Staphylococcus aureus involved in bovine mastitis. Vet. Microbiol. 85, 133-144 DOI ScienceOn |
21 | Hugas, M., Pags, F., Garriga, M., and Monfort, J. M. (1998) Application of bacteriocinogenic Lactobacillus sakei CTC 494 to prevent growth of Listeria in fresh and cooked meat products packed with different atmospheres. Food Microbiol. 15, 639-650 DOI ScienceOn |
22 | Benkerroum, R. and Sandine, W. E. (1988) Inhibitory action of nisin against Listeria monocytogenes. J. Dairy Sci. 71, 3237-3254 DOI PUBMED ScienceOn |
23 | Ahn, C. (1993) Molecular genetics of bacteriocin production in lactic acid bacteria. Bioindustry 6, 12-23 |
24 | Daeschel, M. A. (1989) Antimicrobial substances from lactic acid bacteria for use as food preservatives. Food Technol. 43, 164-167 |
25 | Coventry, M. J., Muirhed, K., and Hickey, M. W. (1995) Partial characterisation of pediocin PO2 and comparison with nisin for biopreservation of meat products. Int. J. Food Microbiol. 26, 133-145 DOI ScienceOn |
26 | Martnez, J. M., Martnez, I. M., Herranz, C., Surez,A. M., Cintas, L. M., Fernez. M. F., Rodrguez, J. M., and Hernndez, P. E. (2000) Use of genetic and immunological probes for pediocin PA-1 gene detection and quantification of bacteriocin production in Pediococcus acidilactici strains of meat origin. Food Agric. Immunol. 12, 299-310 DOI |
27 | Martn, M., Gutirrez, J., and Criado, R., Herranz, C., Cintas, L. M., and Hernndex, P. E. (2007) Cloning, production and expression of the bacteriocin enterocin A produced by Enterococcus faecium PLBC21 in Lactococcus lactis. Appl. Microbiol. Biotechnol. 76, 667-675 DOI |
28 | Montville, T. J. and Winkowski, K. (1997) Biologicallybased preservation systems and probiotic bacteria. In: Food microbiology: fundamentals and frontiers. Doyle, M. P., Beuchat, L. R. and Montville,T.J. (eds) American Society for Microbiology Press, Washington, DC, pp 557-577 |
29 | Stoyanova, L. G. and Levina, N. A. (2006) Components of fermentation medium regulate bacteriocin synthesis by the recombinant strain Lactococcus lactis subsp. lactis F-116. Microbiology 75, 286-291 DOI |
30 | Wirawan, R. E., Klesse, N. A., Jack, R. W., and Tagg, J. R. (2006) Molecular and genetic characterization of a novel nisin variant produced by Streptococcus uberis. Appl. Environ. Microbiol. 72, 1148-1156 DOI ScienceOn |
31 | Kim, W. S., Hall, R. J., and Dunn, N. W. (1997) The effect of nisin concentration and nutrient depletion on nisin production of Lactococcus lactis. Appl. Microbiol. Biotechnol. 48, 449-453 DOI |
32 | Kotel'nikova, E. A. and Gelfand, M. S. (2002) Transcriptional regulation in the system of genes responsible for bacteriocin production in Streptococcus equi. Russ. J. Genet. 38, 761-765 DOI |
33 | Hugo, M. P., Edith, P. A., Carlos, R. G., Amelia F. G. S., and Isabel, G. L. (2005) Effect of extrinsic parameters on the production of bacteriocin by Lactobacillus buchneri, isolated from Mexican raw sausages. Int. J. Food Prop. 8, 69-78 DOI ScienceOn |
34 | Beuchat, L. R., Clavero, M. R. S., and Jaquette, C. B. (1997) Effect of nisin and temperature on survival, growth, and enterotoxin production characteristics of psychrotrophic Bacillus cereus in beef gravy. Appl. Environ. Microbiol. 63, 1953-1958 PUBMED |
35 | Cheigh, C.-I., Choi, H.-J., Park, H., Kim, S.-B., Kook, M.-C., Kim, T.-S., Hwang, J.-K., and Pyun, Y.-R. (2002) Influence of growth conditions on the production of a nisin-like bacteriocin by Lactococcus lactis subsp. lactis A164 isolated from kimchi. J. Biotechnol. 95, 225-235 DOI ScienceOn |
36 | Houlihan, A. J., Mantovani, H. C., and Russell, J. B. (2004) Effect of pH on the activity of bovicin HC5, a bacteriocin from Streptococcus bovis HC51. FEMS Microbiol. Lett. 231, 27-32 DOI ScienceOn |
37 | Montville, T. J., Winkowski, K., and Ludescher, R. D. (1995) Models and mechanisms for bacteriocin actions and application. Int. Dairy J. 5, 797-814 DOI ScienceOn |
38 | Lee, J. R., Hur, S. J., Joo, S. T., and Park, G. B. (2001) The effect of chitosan supplementation on pH, shear force, moisture, and color of pork. Korean J. Food Sci. Ani. Resour. 21, 200-207 과학기술학회마을 |
39 | Morris, S. L., Walsh, R. C., and Hansen, J. N. (1984) Identification and characterization of some bactericidal membrane sulfhydryl groups which are targets of bacteriostatic and antibiotic action. J. Biol. Chem. 201, 581-585 |
40 | Villani, F., Aponte, M., Blaitta, G., Mauriello, G., Pepe, O., and Moschetti, G. (2001) Detection and characterization of a bacteriocin, garviecin L1-5, produced by Lactococcus garvieae isolated from raw cow's milk. J. Appl. Microbiol. 90, 430-439 DOI ScienceOn |
41 | Verellen, T. J., Bruggeman, G., Van Reenen, C. A., Dicks, L. M. T., and Vamdamme, E. J. (1998) Fermentation optimization of plantaricin 423, a bacteriocin produced by Lactobacillus plantarum 423. J. Ferment. Bioeng. 86, 174-179 DOI ScienceOn |
42 | Li, C., Bai, J., Cai, Z., and Ouyang, F. (2002) Optimization of a cultural medium for bacteriocin production by Lactococcus lactis using response surface methodology. J. Biotechnol. 93, 27-34 DOI ScienceOn |
43 | Mauriello, G., Ercolini, D., La Storia, A., Casaburi, A., and Villani, F. (2004) Development of polythene films for food packaging activated with an antilisterial bacteriocin from Lactobacillus curvatus 32Y. J. Appl. Microbiol. 97, 314-322 DOI ScienceOn |
44 | Benkerroum, N., Ghouati, Y., Ghalfi, H., Elmejdoub, T., Roblain, D., Jacques, P., and Thonart, P. (2002) Biocontrol of Listeria monocytogenes in a model cultured milk (lben) by in situ bacteriocin production from Lactococcus lactis ssp. lactis. Int. J. Dairy Technol. 55, 145-151 DOI ScienceOn |
45 | Chen, H. and Hoover, D. G. (2003) Bacteriocins and their food applications. Compr. Rev. Food Sci. F. 2, 82-100 |
46 | Byun, P. H., Jung, J. H., Kim, W. J., and Yoon, S. K. (2001) Effects of garlic addition on lipid oxidation of ground pork during storage. Korean J. Soc. Food Cookery Sci. 17, 117-122 과학기술학회마을 |
47 | Ha, J.-I., Hong, K.-S., Song, S.-W., Jung, S.-C., Min, Y.-S., Shin, H.-C., Lee, G.-O., Lim, K.-J., and Park, J.-M. (2003) Survey of antimicrobial agents used in livestock and fishes. Kor. J. Vet. Publ. Hlth. 27, 205-217 과학기술학회마을 |
48 | Joerger, R. D. (2003) Alternatives to antibiotics: bacteriocins, antimicrobial peptide and bacteriophages. Poultry Sci. 82, 640-647 DOI PUBMED |
49 | Kim, H.-J., Kim, J.-H., Son, J. H., Seo, H-J., Park, S.-J., Paek, N.-S., and Kim, S.-K. (2004) Characterization of bacteriocin produced by Lactocbacillus bulgaricus. J. Microbiol. Biotechnol. 14, 503-508 |
50 | Kim, Y. S., Kim, M. J., Kim, P., and Kim, J. H. (2006) Cloning and production of a novel bacteriocin, lactococcin K, from Lactococcus lactis subsp. lactis MY23. Biotechnol Lett. 28, 357-362 DOI |
51 | Twomey, D. P., Wheelock, A. I., Flynn, J., Meaney, W. J., Hill, C., and Ross, R. P. (2000) Protection against Staphylococcus aureus mastitis in dairy cow using a bismuth-based teat seal containing the bacteriocin, lacticin 3147. J. Dairy Sci. 83, 1981-1988 DOI PUBMED ScienceOn |
52 | Yousef, A. E., Luchansky, J. B., Degnan, A. J., and Doyle, M. P. (1991) Behavior of Listeria monocytogens in wiener exudates in the presence of Pediococcus acidilactici H or pediocin AcH during storage at 4 or . Appl. Environ. Microbiol. 57, 1461-1467 PUBMED |
53 | Xavier, B. M. and Russell, J. B. (2006) Bacterial competition between a bacteriocin-producing and a bacteriocin-negative strain of Streptococcus bovisin batch and continuous culture. FEMS Microbiol. Ecol. 58, 317-322 DOI ScienceOn |
54 | Ross, R. P., Galvin, M., McAuliffe, O., Morgan, S. M., Ryan, M. P., Twomey, D. P., Meaney, W. J., and Hill, C. (1999) Developing applications for lactococcal bacteriocins. Anton. van Leeuw. 76, 337-346 DOI ScienceOn |
55 | Ingolf, F. N. and Holo, H. (2000) Class II antimicrobial peptides from lactic acid bacteria. Biopolymers 55, 50-61 DOI |
56 | Kim, Y. M., Paik, H.-D., and Lee, D. S. (2002) Shelf-life characteristics of fresh oysters and ground beef as affected by bacteriocin-coated plastic packaging film. J. Sci. Food Agric. 82, 998-1002 DOI ScienceOn |
57 | Rodrgguez, E., Arqus, J. L., Gaya, P., Nuez, M., and Medina, M. (2001) Control of Listeria monocytogenes by bacteriocinproducing lactic acid bacteria by colony hybridization in semi-hard raw milk cheese. J. Dairy Res. 68, 131-137 DOI ScienceOn |
58 | Tkel, C, Avrolu, M. D., S¸ imek, o., and Akwlik, M. (2007) Isolation and partial characterization of novel bacteriocin produced by Lactococcus lactis ssp. lactis MC38. J. Food Safety 27, 17-29 |
59 | Aasen, I. M., Moretro, T., Katla, T., and Axelsson, L. (2000) Influence of complex nutrients, temperature and pH on bacteriocin production by Lactobacillus sakei CCUG 42687. Appl. Microbiol. Biotechnol. 53, 159-166 DOI |
60 | Laukov, A., Juri, P., Vasilkov, Z., and Papajov, I. (2000) Treatment of sanitary-important bacteria by bacteriocin substance V24 in cattle dung water. Lett. Appl. Microbiol. 30, 402-405 DOI ScienceOn |