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1997 | 49 | 3-4 |

Tytuł artykułu

Wplyw temperatury hodowli Staphylococcus aureus na przyleganie komorek do kolagenu

Warianty tytułu

Języki publikacji

PL

Abstrakty

EN
The aim of this study was the investigation of adhesion of 88 S. aureus clinical isolates to collagen. The experiments were extended to determine the influence of growth temperature on collagen adhesin - collagen interaction. Bacterial adhesion to collagen was estimated by using immunoenzymatic assay at absorbance of 492 nm and compared with standard curves obtained for 8 different densities of each strain. The amount of collagen adhesin was indicated by colour reaction intensity measured by immunoenzymatic assay. Hydrophobicity of S. aureus strains was measured by aggregation in (NH4)2SO4 test. Almost all S. aureus strains isolated from bone and joint infections adhered to collagen whereas only a part of soft tissue infections isolates showed this feature. The comparison of adhesive properties of S. aureus cells cultured at 21ºC, 37°C and 42°'C did not make it possible to indicate the optimal culture temperature for S. aureus adhesion to collagen. However, the intensive colour reaction of cells cultured at 37°C with anti-collagen adhesin antibodies proves the production of the highest amount of this adhesin under the mentioned conditions. The influence of growth temperature as well as solid and/or liquid medium on the change of S. aureus hydrophobic properties was not observed. The obtained results show that the S- aureus growth temperature can be one of the factors influencing the staphylococci cells adhesion to collagen.

Wydawca

-

Rocznik

Tom

49

Numer

3-4

Opis fizyczny

s.123-130,rys.,tab.,bibliogr.

Twórcy

  • Uniwersytet Lodzki, 90-237 Lodz, ul.Banacha 12-16
autor
autor

Bibliografia

  • 1. Ascencio F., Johansson G., Wadström T.: Arch. Microbiol., 1995, 164, 223.
  • 2. Butcher W.G., Close J., Krajewska-Pietrasik D., Switalski L.M. : Chemotherapy, 1994, 40, 114.
  • 3. Cheung A.L., Fischetti V.A.: Infect. Immun., 1988, 56, 1061.
  • 4. Clark B.A., Rissing J.P., Buxton T.B., Best N.H., Best G.K.: Microb. Pathogen., 1994, 17, 239.
  • 5. Gospodarek E.: Med. Dośw. Microbiol., 1994, 46, 13.
  • 6. Gross R.: FEMS Microbiol. Rev., 1993, 104, 301.
  • 7. Hook M., Switalki L.M., Wadström T., Lindberg M. w: Fibronectin. Mosher D.M., Academic Press, 1989, 295.
  • 8. Holderbaum D., Spech T., Ehrhart L.A., Keys T., Hall G.S.: J. Clin. Microbiol., 1987, 25, 2258.
  • 9. Homonylo McGavin M., Krajewska-Pietrasik D., Ryden C., Höök M. : Infect. Immun., 1993, 61, 2479.
  • 10. Krajewska-Pietrasik D., Różalska B., Różalski A.: Post. Mikrobiol., 1993, 32, 271.
  • 11. Kuusela P.: Nature (London), 1978, 276, 718.
  • 12. Lindahl M., Faris A., Wadström T., Hjerten S.: Biochim. Biophys. Acta, 1981, 677, 471.
  • 13. Litwin C.M., Calderwood S.B.: Clin. Microbiol. Rev., 1993, 6, 137.
  • 14. Lopez J.D., Reis M., Brentani R.R.: Science, 1985, 229, 275.
  • 15. Mekalanos J.J. : J. Bacteriol., 1992, 174, 1.
  • 16. Patti J.M., Bremell T., Krajewska-Pietrasik D., Abdelnour A., Tarkowski A., Ryden C, Höök M.: Infect. Immun., 1994, 62, 152.
  • 17. Skurnik M., Toivanen P.: Trends in Microbiol., 1993, 1, 148.
  • 18. Switalski L.M., Patti J.M., Butcher W.G., Gristina A.G., Speziale P., Höök M.: Mol. Microbiol., 1993, 7, 99.
  • 19. Switalski L.M., Speziale P., Höök M: J. Biol. Chem., 1989, 264, 21080.
  • 20. Wadström T.: w Microbial Cell Surface Hydrophobicity. Doyle R. J., Rosenberg M., American Society for Microbiology, Washington DC., 1990, 315.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-f3cf06ab-e258-4b62-a099-8b4ac5ccc3d8
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