26.12.2013 Aufrufe

Candida albicans-induzierte Genexpression in primären ... - OPUS

Candida albicans-induzierte Genexpression in primären ... - OPUS

Candida albicans-induzierte Genexpression in primären ... - OPUS

MEHR ANZEIGEN
WENIGER ANZEIGEN

Sie wollen auch ein ePaper? Erhöhen Sie die Reichweite Ihrer Titel.

YUMPU macht aus Druck-PDFs automatisch weboptimierte ePaper, die Google liebt.

74. Kar<strong>in</strong>, M. and Ben-Neriah, Y. (2000) Phosphorylation meets ubiquit<strong>in</strong>ation: the<br />

control of NF-[kappa]B activity. Annu Rev Immunol, 18, 621-663.<br />

75. Kar<strong>in</strong>, M. and Delhase, M. (2000) The I kappa B k<strong>in</strong>ase (IKK) and NF-kappa<br />

B: key elements of pro<strong>in</strong>flammatory signall<strong>in</strong>g. Sem<strong>in</strong> Immunol, 12, 85-98.<br />

76. Kar<strong>in</strong>, M., Yamamoto, Y. and Wang, Q.M. (2004) The IKK NF-kappa B<br />

system: a treasure trove for drug development. Nat Rev Drug Discov, 3, 17-<br />

26.<br />

77. Kawasaki, K., Akashi, S., Shimazu, R., Yoshida, T., Miyake, K. and Nishijima,<br />

M. (2000) Mouse toll-like receptor 4.MD-2 complex mediates<br />

lipopolysaccharide-mimetic signal transduction by Taxol. J Biol Chem, 275,<br />

2251-2254.<br />

78. Kibbler, C.C., Seaton, S., Barnes, R.A., Gransden, W.R., Holliman, R.E.,<br />

Johnson, E.M., Perry, J.D., Sullivan, D.J. and Wilson, J.A. (2003)<br />

Management and outcome of bloodstream <strong>in</strong>fections due to <strong>Candida</strong> species<br />

<strong>in</strong> England and Wales. J Hosp Infect, 54, 18-24.<br />

79. Kim, H.S., Choi, E.H., Khan, J., Roilides, E., Francesconi, A., Kasai, M., Se<strong>in</strong>,<br />

T., Schaufele, R.L., Sakurai, K., Son, C.G., Greer, B.T., Chanock, S., Lyman,<br />

C.A. and Walsh, T.J. (2005) Expression of genes encod<strong>in</strong>g <strong>in</strong>nate host<br />

defense molecules <strong>in</strong> normal human monocytes <strong>in</strong> response to <strong>Candida</strong><br />

<strong>albicans</strong>. Infect Immun, 73, 3714-3724.<br />

80. Kirschn<strong>in</strong>g, C.J. and Schumann, R.R. (2002) TLR2: cellular sensor for<br />

microbial and endogenous molecular patterns. Curr Top Microbiol Immunol,<br />

270, 121-144.<br />

81. Kirschn<strong>in</strong>g, C.J., Wesche, H., Merrill Ayres, T. and Rothe, M. (1998) Human<br />

toll-like receptor 2 confers responsiveness to bacterial lipopolysaccharide. J<br />

Exp Med, 188, 2091-2097.<br />

82. Kolotila, M.P. and Diamond, R.D. (1990) Effects of neutrophils and <strong>in</strong> vitro<br />

oxidants on survival and phenotypic switch<strong>in</strong>g of <strong>Candida</strong> <strong>albicans</strong> WO-1.<br />

Infect Immun, 58, 1174-1179.<br />

83. Kurt-Jones, E.A., Popova, L., Kw<strong>in</strong>n, L., Haynes, L.M., Jones, L.P., Tripp,<br />

R.A., Walsh, E.E., Freeman, M.W., Golenbock, D.T., Anderson, L.J. and<br />

F<strong>in</strong>berg, R.W. (2000) Pattern recognition receptors TLR4 and CD14 mediate<br />

response to respiratory syncytial virus. Nat Immunol, 1, 398-401.<br />

124

Hurra! Ihre Datei wurde hochgeladen und ist bereit für die Veröffentlichung.

Erfolgreich gespeichert!

Leider ist etwas schief gelaufen!