Analiza własności nanomechanicznych krętków Borrelia burgdorferi pod wpływem działania czynników litycznych w modelu in vitro z zastosowaniem mikroskopu sił atomowych (AFM)

ARTYKUŁ PRZEGLĄDOWY

Analiza własności nanomechanicznych krętków Borrelia burgdorferi pod wpływem działania czynników litycznych w modelu in vitro z zastosowaniem mikroskopu sił atomowych (AFM)

Małgorzata Tokarska-Rodak 1 , Maria Kozioł-Montewka 2 , Krzysztof Skrzypiec 3 , Tomasz Chmielewski 4 , Ewaryst Mendyk 3 , Stanisława Tylewska-Wierzbanowska 5

1. Pope John Paul II State School of Higher Education in Biala Podlaska,Institute of Health Sciences, Poland
2. Department of Medical Microbiology, Medical University, Lublin, Poland
3. Analytical Laboratory, Faculty of Chemistry, Maria Curie-Sklodowska University, Lublin, Poland
4. National Institute of Public Health – National Institute of Hygiene, Laboratory of Rickettsiae, Chlamydiae and Spirochaetes, Warszawa, Poland;
5. National Institute of Public Health – National Institute of Hygiene, Laboratory of Rickettsiae, Chlamydiae and Spirochaetes, Warszawa, Poland

Opublikowany: 2015-11-12
DOI: 10.5604/17322693.1179650
GICID: 01.3001.0009.6592
Dostępne wersje językowe: pl en
Wydanie: Postepy Hig Med Dosw 2015; 69 : 1222-1227

 

Abstrakt

Przypisy

  • 1. Alban P.S., Johnson P.W., Nelson D.R.: Serum starvation inducedchanges in protein synthesis and morphology of Borrelia burgdorferi.Microbiology, 2000; 146: 119-127
    Google Scholar
  • 2. Bárcena-Uribarri I., Thein M., Bonde M., Bergström S., Ben R.:Porins in the Genus Borrelia. In: Lyme disease. Ed.: A. Karami, INTECH,2012; 139-160
    Google Scholar
  • 3. Barratt-Due A., Thorgersen E.B., Lindstad J. K., Pharo A., BrekkeO.L., Christiansen D., Lambris J.D., Mollnes T.E.: Selective inhibitionof TNF-α or IL-1β does not affect E. coli-induced inflammation in humanwhole blood. Mol. Immunol., 2010; 47: 1774-1782
    Google Scholar
  • 4. Fikrig E., Narasimhan S.: Borrelia burgdorferi – traveling incognito?Microbes Infect., 2006; 8: 1390-1399
    Google Scholar
  • 5. Krajczy P., Skerka C., Kirschfink M., Zipfel P.F., Brade V.: Immuneevasion of Borrelia burgdorferi: insufficient killing of the pathogens bycomplement and antibody. Int. J. Med. Microbiol., 2002; 291 (Suppl.33): 141-146
    Google Scholar
  • 6. Krajczy P., Skerka C., Kirschfink M., Zipfel P.F., Brade V.: Mechanismof complement resistance of pathogenic Borrelia burgdorferiisolates. Int. Immunopharmacol., 2001; 1: 393-401
    Google Scholar
  • 7. Miklossy J., Kasas S., Zurn A.D., McCall S., Yu S., McGeer P.L.: Persistingatypical and cystic forms of Borrelia burgdorferi and local inflammationin Lyme neuroborreliosis. J. Neuroinflamm., 2008; 5: 40
    Google Scholar
  • 8. Mollnes T.E., Brekke O.L., Fung M., Fure H., Christiansen D., BergsethG., Videm V., Lappegard K.T., Köhl J., Lambris J.D.: Essential role ofthe C5a receptor in E. coli induced oxidative burst and phagocytosisrevealed by a novel lepirudin-based human whole blood model ofinflammation. Blood, 2002; 100: 1869-1877
    Google Scholar
  • 9. Pollack R.J., Telford S.R.3rd, Spielman A.: Standardization of mediumfor culturing Lyme disease spirochetes. J. Clin. Microbiol.,1993; 31: 1251-1255
    Google Scholar
  • 10. Polyakov P., Soussen C., Duan J., Duval J.F., Brie D., Francius G.:Automated force volume image processing for biological samples.PLoS One, 2011; 6: e18887
    Google Scholar
  • 11. Powell L.C., Sowedan A., Khan S., Wright C.J., Hawkins K., OnsoyenE., Myrvold R., Hill K.E., Thomas D.W.: The effect of alginateoligosaccharides on the mechanical properties of Gram-negativebiofilms. Biofouling, 2013; 29: 413-421
    Google Scholar
  • 12. Sapi E., Bastian S.L., Mpoy C.M., Scott S., Rattelle A., Pabbati N.,Poruri A., Burugu D., Theophilus P.A., Pham T.V., Datar A., DhaliwalN.K., MacDonald A., Rossi M.J., Sinha S.K., Luecke D.F.: Characterizationof biofilm formation by Borrelia burgdorferi in vitro. PLoS One,2012; 7: e48277
    Google Scholar
  • 13. Sprong T., Møller A.S., Bjerre A., Wedege E., Kierulf P., van derMeer J.W., Brandtzaeg P., van Deuren M., Mollnes T.E.: Complementactivation and complement-dependent inflammation by Neisseriameningitidis are independent of lipopolysaccharide. Infect. Immun.,2004; 72: 3344-3349
    Google Scholar
  • 14. Steere A.C., Duray P.H., Butcher E.C.: Spirochetal antigens andlymphoid cell surface markers in Lyme synovitis. Comparison withrheumatoid synovium and tonsillar lymphoid tissue. ArthritisReum., 1988; 31: 487-495
    Google Scholar
  • 15. Suhonen J., Hartiala K., Tuominen-Gustafsson H., Viljanen M.K.:Sublethal concentrations of complement can effectively opsonizeBorrelia burgdorferi. Scand. J. Immunol., 2002; 56: 554-560
    Google Scholar
  • 16. Suhonen J., Hartiala K., Tuominen-Gustafsson H., Viljanen M.K.:Borrelia burgdorferi – induced oxidative burst, calcium mobilization,and phagocytosis of human neutrophils are complement dependent.J. Infect. Dis., 2000; 181: 195-202
    Google Scholar
  • 17. Tripathi P., Beaussart A., Alsteens D., Dupres V., Claes I., von OssowskiI., de Vos W.M., Palva A., Lebeer S., Vanderleyden J., DufrêneY.F.: Adhesion and nanomechanics of pili from the probiotic Lactobacillusrhamnosus GG. ACS Nano., 2013; 7: 3685-3697
    Google Scholar
  • 18. van Dam A.P., Oei A., Jaspars R., Fijen C., Wilske B., Spanjaard L.,Dankert J.: Complement-mediated serum sensitivity among spirochetesthat cause Lyme disease. Infect. Immun., 1997; 65: 1228-1236
    Google Scholar
  • 19. Velayati A.A., Farnia P., Masjedi M.R., Zhavnerko G.K., MerzaM.A., Ghanavi J., Tabarsi P., Farnia P., Poleschuyk N.N., Ignatyev G.:Sequential adaptation in latent tuberculosis bacilli: observationby atomic force microscopy (AFM). Int. J. Clin. Exp. Med., 2011; 4:193-199
    Google Scholar
  • 20. Yao X., Jericho M., Pink D., Beveridge T.: Thickness and elasticityof gram-negative murein sacculi measured by atomic force microscopy.J. Bacteriol., 1999; 181: 6865-6875
    Google Scholar
  • 21. Zdybicka-Barabas A., Mak P., Klys A., Skrzypiec K., Mendyk E.,Fiołka M.J., Cytryńska M.: Synergistic action of Galleria mellonellaanionic peptide 2 and lysozyme against Gram-negative bacteria.Biochim. Biophys. Acta, 2012; 1818: 2623-2635
    Google Scholar
  • 22. Zdybicka-Barabas A., Stączek S., Mak P., Mak P., Skrzypiec K.,Mendyk E., Cytryńska M.: Synergistic action of Galleria mellonellaapolipophorin III and lysozyme against Gram-negative bacteria.Biochim. Biophys. Acta, 2013; 1828: 1449-1456
    Google Scholar

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