Acknowledgement
This paper was supported by the project research funds of the Ministry of SMEs and Startups in 2020~2021.
References
- M. J. Son et al. (2008). Characterization of dextran produced from Leuconostoc citreum S5 strain isolated from Korean fermented vegetable. Eur. Food Res. Techno, 22, 697-706. DOI : 10.1007/s00217-007-0579-y
- M. S. Ammor & B. Mayo. (2007). Selection criteria for lactic acid bacteria to be used as functional starter cultures in dry sausage production, An update. Meat Sci, 76, 138-146. DOI : 10.12691/jaem-7-1-3
- L. G. Stoianova, E. A. Ustiugova & A. I. Netrusov. (2012). Antibacterial metabolites of lactic acid bacteria: their diversity and properties. Prikl Biokhim Mikrobiol, 48, 259-275
- A Savadogo, ATC. Ouattar, HN. I. Bassole & S. A. Traore. (2006). Bacteriocins and lactic acid bacteria - a minireview. Afr J Biotechnol. 5, 678-683. DOI : 10.5897/AJB05.388
- A. Ljungh & T. Wadstrom. (2009). Lactobacillus molecular biology: from genomics to probiotics. Caister academic Press, 11, 294-295.
- G. Tannock. (2005). Probiotics and prebiotics: Scientific Aspects (1st ed.). Caister Academic Press. 217-223. DOI : 10.1155/2008/175285
- LG. Stoianova, EA. Ustiugova & AI. Netrusov. (2012). Antibacterial metabolites of lactic acid bacteria: their diversity and properties. Prikl Biokhim Mikrobiol. 48, 259-275.
- S. Noguchi, M. Hattori, H. Sugiyama, A. Hanaoka, S. Okada & T. Yoshida. (2012). Lactobacillus plantarum NRIC1832 Enhances IL-10 Production from CD4+ T Cells in Vitro. Biosci Biotechnol Biochem. 76, 1925-1931. DOI : 10.1271/bbb.120404
- J. Rafter. (2004). The effects of probiotics on colon cancer development. Nutr Res Rev. 17, 277-284. DOI : 10.1079/NRR200484
- T. H Chiu,, S. J. Tsai, T. Y. Wu, S. C. Fu & Y. T. Hwang. (2012). Improvement in antioxidant activity, angiotensin-converting enzyme inhibitory activity and in vitro cellular properties of fermented pepino milk by Lactobacillus strains containing the glutamate decarboxylase gene. J Sci Food Agric. 15;93(4), 859-66. DOI : 10.1002/jsfa.5809
- Y. Masuda, T. Takahashi, K. Yoshida, Y. Nishitani, M. Mizuno & H. Mizoguchi. (2012). Antiallergic effect of lactic acid bacteria isolated from seed mash used for brewing sake is not dependent on the total IgE levels. Journal of Bioscience and Bioengineering 114(3), 292-296. DOI : 10.1016/j.jbiosc.2012.04.017
- LG. Castanheira, JM. Castro, Martins-Filho, OA. JR. Nicoli, LQ. Vieira & LC. Afonso. (2007). Lactobacillus delbrueckii as a potential skin adjuvant for induction of type 1 immune responses. Front Biosci. 12, 1300-1307. DOI : 10.2741/2148
- H. S. Lee et al. (2012). Fermenting red ginseng enhances its safety and efficacy as a novel skin care anti-aging ingredient: in vitro and animal study. J Med Food. 15, 1015-1023. DOI : 10.1089/jmf.2012.2187
- K. H. Lee, Y. J. Bong, H. A. Lee, H. Y. Kim & K. Y. Park. (2016). Probiotic Effects of Lactobacillus plantarum and Leuconostoc mesenteroides Isolated from Kimchi. Journal of the Korean Society of Food Science and Nutrition. 45, 12-19. DOI : 10.3746/jkfn.2016.45.1.012
- B. C. Lee & H. S. Kim. (2021). Antioxidant and Anti-inflammatory Effects of Fermented Eggplant Fruit Extracts with Leuconostoc mesenteroides KD20. Jounal of The Korean Society of cosmetology.,27, 1278-1285. https://doi.org/10.52660/JKSC.2021.27.5.1278
- J. H. Kang. (2018). Fermentation of Momordica charantia Extract using Leuconostoc mesenteroidesies and Physiological Activity of Product. Journal of the Korean Applied Science and Technology. v.35 no.4, 1250-1259. DOI : 10.12925/jkocs.2018.35.4.1250
- M. H Han & G. S Moon. (2020). Development of Skin Health Promoting Materials Using Leuconostoc mesenteroides. Microbiology and Biotechnology Letters. 48, 455-462. DOI : 10.48022/mbl.2005.05005
- C. K. Zhoh, M. H. Lee, I. Y. Kim & J. Y. Shin. (2016). Skin Improvement Effect of Fermented Snail Extract. Journal of the Korean Applied Science and Technology. 33, 30-40. DOI : 10.12925/jkocs.2016.33.1.30j