BIOLOGY OF INTRACELLULAR PARASITISM
BIOLOGY OF INTRACELLULAR PARASITISM
批准号:
3818145
负责人:
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
Newcastle disease virus Q fever Saimiri adhesin alleles bacterial antigens bacterial polysaccharides bactericidal immunity complement complement pathway endocarditis genetic strain hamsters host organism interaction intracellular parasitism laboratory rabbit membrane proteins microorganism immunology nucleic acid hybridization protein sequence surface antigens temperature sensitive mutant tissue /cell culture virulence
中文摘要
研究了伯纳蒂克希菌感染的发病机制
英文摘要
The pathogenesis of Coxiella burnetii infections was studied in
rabbits and in vitro. We studied (a) the pathogenesis of
experimental endocarditis, (b) the effect of human serum complement
on lipopolysaccharide (LPS) phase variants and (c) the role of LPS
in phase variation.
A. Endocarditis. C. burnetii strains from acute Q fever and from
endocarditis patients differ in LPS structure and in their ability
to induce fever in animals. Studies using a rabbit model of
endocarditis showed no differences between the abilities of the
Nine Mile strain (typical of acute Q fever strains) and the
Priscilla strain (typical of endocarditis strains) to colonize
catheter-induced cardiac vegetations. An in vitro assay showed no
differences between these strains in their abilities to adhere to
fibrin-platelet clots.
B. Serum complement-susceptibility. The rough LPS phase variant
was serum sensitive, whereas the smooth and intermediate LPS phase
variants were resistant. The smooth and intermediate phase
variants, however, differed in their interactions with the
complement system, suggesting that the mechanisms by which they
resisted complement-killing were different.
C. Role of LPS in phase variation. The smooth LPS on native phase
I variants sterically blocked the binding of antibodies to surface
proteins shared with phase II cells. Although any of these
surface-exposed proteins which are accessible to antibodies on
phase II cells may therefore confer apparent phase II
serospecificity, these studies suggest that the unique phase
determinant is in the phase II LPS.
The significance of this project lies in defining host defence
mechanisms controlling C. burnetii infections, in determining
whether certain strains have a predilection to cause endocarditis,
and in developing effective antimicrobial therapy for C. burnetii
endocarditis.
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