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在小鼠肺炎模型中,对荚膜多糖和脂多糖O侧链对肺炎克雷伯菌毒力贡献的分子分析。

Molecular analysis of the contribution of the capsular polysaccharide and the lipopolysaccharide O side chain to the virulence of Klebsiella pneumoniae in a murine model of pneumonia.

作者信息

Cortés Guadalupe, Borrell Nuria, de Astorza Beatriz, Gómez Cristina, Sauleda Jaume, Albertí Sebastián

机构信息

Unidad de Investigación, Hospital Universitario Son Dureta, Palma de Mallorca, Spain.

出版信息

Infect Immun. 2002 May;70(5):2583-90. doi: 10.1128/IAI.70.5.2583-2590.2002.

Abstract

Klebsiella pneumoniae is a common cause of gram-negative bacterial nosocomial pneumonia. Two surface polysaccharides, lipopolysaccharide (LPS) O side chain and capsular polysaccharide (CPS), are critical for the microorganism in causing sepsis, but little is known about their role in pneumonia. To investigate their contribution in the pathogenesis of K. pneumoniae pneumonia, we characterized the host response to bacterial challenge with a highly virulent clinical isolate or with isogenic insertion-duplication mutants deficient in CPS or LPS O side chain in a murine model of pneumonia. Animals challenged intratracheally with the wild-type or LPS O side chain-deficient strain developed pneumonia and became bacteremic before death. Extensive lung lesions as well as pleuritis, vasculitis, and edema were observed by histopathological examination, and polymorphonuclear infiltration was also demonstrated. In contrast, none of the animals challenged with the unencapsulated strain developed pneumonia or bacteremia. Examination of tissue from this group did not identify lung lesions, and none of the infected animals died. Analysis of the early host defense mechanisms that contributed to the clearance of the unencapsulated mutant showed that the levels of C3 deposited on the unencapsulated mutant surface were threefold higher than those for the wild-type and LPS O side chain-deficient strains. Furthermore, phagocytosis of the unencapsulated mutant by human alveolar macrophages (AM) was more efficient than that of the wild-type and LPS O side chain-deficient strains. We conclude that CPS, but not LPS O side chain, is essential for Klebsiella pneumonia because it modulates the deposition of C3 and protects the microorganisms against human AM phagocytosis.

摘要

肺炎克雷伯菌是革兰氏阴性菌医院获得性肺炎的常见病因。两种表面多糖,脂多糖(LPS)O侧链和荚膜多糖(CPS),对该微生物引起败血症至关重要,但它们在肺炎中的作用却鲜为人知。为了研究它们在肺炎克雷伯菌肺炎发病机制中的作用,我们在小鼠肺炎模型中,用一种高毒力临床分离株或缺乏CPS或LPS O侧链的同基因插入-重复突变体,对宿主对细菌攻击的反应进行了表征。经气管内接种野生型或LPS O侧链缺陷菌株的动物发生了肺炎,并在死亡前发生了菌血症。组织病理学检查观察到广泛的肺部病变以及胸膜炎、血管炎和水肿,并且还证实了多形核细胞浸润。相比之下,接种无荚膜菌株的动物均未发生肺炎或菌血症。对该组动物的组织检查未发现肺部病变,且没有感染动物死亡。对有助于清除无荚膜突变体的早期宿主防御机制的分析表明,沉积在无荚膜突变体表面的C3水平比野生型和LPS O侧链缺陷菌株高三倍。此外,人肺泡巨噬细胞(AM)对无荚膜突变体的吞噬作用比野生型和LPS O侧链缺陷菌株更有效。我们得出结论,CPS而非LPS O侧链对克雷伯菌肺炎至关重要,因为它调节C3的沉积并保护微生物免受人AM吞噬。

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