Browse > Article

The Effects of Exopolysaccharide Produced by Streptococcus thermophilus BODY1 on Infection of Rotavirus in MA-104 Cell  

Song, Jin-Ook (Department of Science & Technology Education, Cyber Graduate School, Joongbu University)
Kim, Yong-Hui (Department of Hotel & Foodservice Industry, Joongbu University)
Publication Information
Food Science of Animal Resources / v.26, no.4, 2006 , pp. 532-539 More about this Journal
Abstract
This study was conducted to evaluate the inhibitory effects of exopolysaccharide(EPS) produced by Streptococcus thermophilus BODY1 on rotavirus(RV). EPS was isolated from a commercial lactic acid bacteria, Str. thermophilus BODY1. The results obtained were as follows : At 0.1% of EPS, inhibitory effects of EPS on the MA-104 cell using MTT assay were, $Wa\;51.58{\pm}8.08%,\;KU \;63.09{\pm}7.58%,\;S2\;51.23{\pm}5.43%,\;YO\; 51.45{\pm}5.67%,\;K-21\;52.84{\pm}5.49%,\;NCDV\;57.50{\pm}10.85%,\;UK\;51.64{\pm}4.74%,\;KK3\;54.53{\pm}8.44%,\;JBR\;58.67{\pm}7.51%,\;S97\;50.63{\pm}5.17%,\;OSU\;55.48{\pm}5.75%,\;and\;RRV\;54.36{\pm}8.72%$, respectively. At 0.1/128%, the effects were $Wa\;5.5{\pm}6.45%,\;KU\;10.33{\pm}8.39%,\;S2\;0.98{\pm}8.39%,\;YO\;4.25{\pm}2.86%,\;K-21\;4.25{\pm}6.60%,\;NCDV\;4.01{\pm}4.12%,\;UK\;6.55{\pm}7.09%,\;KK3\;5.19{\pm}4.86%,\;JBR\;11.11{\pm}8.11%,\;S97\;6.75{\pm}6.95%,\;OSU\;10.14{\pm}8.54%,\;and\;RRV\;3.66{\pm}8.57%$, respectively. These results indicate that EPS have inhibitory effects on various serotype and sources of RV from different animals.
Keywords
exopolysaccharide(EPS); rotavirus(RV); MTT assay;
Citations & Related Records
연도 인용수 순위
  • Reference
1 Bass, D. M., Baylor, M. R., Chen, C., Meng, L., and Greenberg, H. B. (1992) Liposome mediated transfection of intact viral particles reveals that plasma membrane determines permissivity of tissue culture cells to rotavirus. J. Clin. Invest. 90, 2313-2320   DOI
2 De Vuyst, Vanderveken, L. F., Van de Ven, S., and Degeest, B. (1998) Production by and isolation of exopolysaccharides from Streptococcus thermophilus grown in a milk medium and evidence for their growth-associated biosynthesis. J. Applied Microbiology. 84(6), 1059-68   DOI   ScienceOn
3 Feng, N., Bums, J. W., Bracy, L., and Greenberg, H. B. (1994) Comparison of mucosal and systemic humoral immune responses and subsequent protection in mice orally inoculated with a homologous rotavirus. J. Viral. 68(2), 7766-7773
4 Gouvea, V., Decastro, L., Timenetsky, M. D., Greenberg, H. B., and Santos, N.(1994) Rotavirus serotype G5 associated with diarrhea in Brazilian children. J. Clin. Microbial. 32, 1408-1409
5 Kaga, E., lizuka, M., Nakagomi, T., and Nakagomi, O. (1994) The distribution of G(VP7) and P(VP4) serotypes among human rotaviruses recovered from Japanese children with diarrhea. Microbial. Immunol. 38, 317-320   DOI
6 Kaljot, K. T., Shaw, R. D., Rubin, D. H., and Greenberg, B. H. (1988) Infectious rotavirus enters cells direct cell membrane penetration, not by endocytosis. J. Viral. 62(4), 1136-1144
7 Weber, J. M., Ruzindana-Umunyana, A., Imbeault, L., and Sircar, S. (2003) Inhibition of adenovirus infection and adenain by green tea catechins. Antiviral Research 58, 167-173   DOI   ScienceOn
8 浦澤正三, 谷口孝喜, 小林宣道 (1992) ロタウイルスの血淸型. ウイルス. 42(2), 145-153
9 Beveridge, T. J. and Graham, L. L. (1991) Surface layers of bacteria. Microbial. Rev., 55, 684-705
10 Chiarini, A., Arista, S., Giammanco, A., and Sinatra, A. (1983) Rotavirus persistence in cell culture : select of resistant cells in the presence of fetal calf serum. J. Gen. Virol. 64, 1101-1110   DOI   ScienceOn
11 송진욱, 조홍찬, 이영건, 이종익, 박범석, 김용휘, 차광종, 유제현 (2000) 감초산이 송아지 로타바이러스의 MA-104 세포 감염에 미치는 영향. 한국 BRM 학회지. 10(1), 115-126
12 Noel, J., Mansoor, A., Thaker, D., Hermann, J., Perronhenry, D., and Cubiti, W. D. (1994) Identification of adenoviruses in faeces from patients with diarrhoea at the hospitals for sick children, London, 1989-1992. J. Med. Viral. 43, 84-90   DOI
13 Feng, N., Bums, J. W., Bracy, L., and Greenberg, H. B. (1994) Comparison of mucosal and systemic humoral immune responses and subsequent protection in mice orally inoculated with a homologous rotavirus. J. Viral. 68(2), 7766-7773
14 Ruas-Madiedo, P., Hufenholtz, J., and Zoon, P. (2002) An overview of the functionality of exopolysaccharides produced by lactic acid bacteria. International Dairy Journal. 12, 163-171   DOI   ScienceOn
15 차광종, 유대열, 유제현, 이종기. (1999) 락토페린이 국내분리 유아 로타바이러스의 MA-104 세포 감염에 미치는 영향. 대한바이러스학회지 29(2), 87-97
16 유제현, 이영건, 주지선, 김유성, 김순재, Ebina, T. Nakagomi, O., Urasawa, S., Taniguchi, K., Greenberg, H. B.. (1996) 제주도 Bovine Rotavirus 의 분리와 그 특성. 대한바이러스학회지 26(2), 181-189
17 Wiseman, A. (1983) Principles of biotechnology. Blackie & Son Ltd., London. p. 23
18 Tabassum, S., Shears, P., and Hart, C. A. (1994) Genomic characterization of rotavirus strains obtained from hospitalized children with diarrhoea in Bangladesh. J. Med. Virol. 43, 50-56   DOI   ScienceOn
19 Bishop, R. F., Davidson, G. P., Holmes, I. H., and Ruck, B. J. (1973) Virus particles in epithelial cells of duodenal mucosa from children with viral gastroenteritis. Lancet. 2, 1281-1283
20 Kapikian, A. Z. and Chanock, R. M. (1990) Rotaviruses. Virology 2, 2nd ed.: In B. N. Fields and D. M. Knipe (ed), Raven press, New York. p 1353-1404