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通过宿主-病原体相互作用的临床前模型分离感染性心内膜炎诱导中的关键步骤。

Isolating Crucial Steps in Induction of Infective Endocarditis With Preclinical Modeling of Host Pathogen Interaction.

作者信息

Schwarz Christian, Hoerr Verena, Töre Yasemin, Hösker Vanessa, Hansen Uwe, Van de Vyver Hélène, Niemann Silke, Kuhlmann Michael T, Jeibmann Astrid, Wildgruber Moritz, Faber Cornelius

机构信息

Translational Research Imaging Center, Department of Clinical Radiology, University Hospital Muenster, Muenster, Germany.

Institute of Medical Microbiology, University Hospital Jena, Jena, Germany.

出版信息

Front Microbiol. 2020 Jun 18;11:1325. doi: 10.3389/fmicb.2020.01325. eCollection 2020.

Abstract

Animal models of infective endocarditis (IE), especially in rodents, are commonly used to investigate the underlying pathogenesis, disease progression, potential diagnostic approaches, and therapeutic treatment. All these models are based on surgical interventions, and imply valve trauma by placing a polyurethane catheter at the aortic root. While the influence of endothelial damage and inflammation on the induction of IE has been studied intensively, the role of the catheter, as permanent source of bacteremia, and the interplay with bacterial virulence factors during the formation of IE is poorly understood. In our study, we aimed at identifying which set of preconditions is required for induction and formation of IE: (1) tissue injury, (2) permanent presence of bacteria, and (3) presence of the full bacterial repertoire of adhesion proteins. We investigated the manifestation of the disease in different modifications of the animal model, considering different degrees of endothelial damage and the presence or absence of the catheter. In four infection models the induction of IE was assessed by using two bacterial strains with different expression patterns of virulence factors - 6850 and Newman. magnetic resonance imaging showed conspicuous morphological structures on the aortic valves, when an endothelial damage and a continuous bacterial source were present simultaneously. Cellular and inflammatory pathophysiology were characterized additionally by histology, real-time quantitative polymerase chain reaction analysis, and bacterial counts, revealing strain-specific pathogenesis and manifestation of IE, crucially influenced by bacterial adherence and toxicity. The severity of IE was dependent on the degree of endothelial irritation. However, even severe endothelial damage in the absence of a permanent bacterial source resulted in reduced valve infection. The spread of bacteria to other organs was also dependent on the pathogenic profile of the infectious agent.

摘要

感染性心内膜炎(IE)的动物模型,尤其是啮齿动物模型,常用于研究潜在的发病机制、疾病进展、潜在诊断方法和治疗手段。所有这些模型都基于外科手术干预,通过在主动脉根部放置聚氨酯导管来造成瓣膜损伤。虽然内皮损伤和炎症对IE诱导的影响已得到深入研究,但导管作为持续性菌血症来源的作用以及在IE形成过程中与细菌毒力因子的相互作用却知之甚少。在我们的研究中,我们旨在确定诱导和形成IE所需的一组前提条件:(1)组织损伤,(2)细菌的持续存在,(3)完整的细菌粘附蛋白库的存在。我们研究了动物模型不同变体中疾病的表现,考虑了不同程度的内皮损伤以及导管的有无。在四个感染模型中,通过使用两种具有不同毒力因子表达模式的细菌菌株——6850和纽曼,评估了IE的诱导情况。当同时存在内皮损伤和持续细菌来源时,磁共振成像显示主动脉瓣上有明显的形态结构。此外,通过组织学、实时定量聚合酶链反应分析和细菌计数对细胞和炎症病理生理学进行了表征,揭示了菌株特异性的发病机制和IE的表现,这受到细菌粘附和毒性的关键影响。IE的严重程度取决于内皮刺激的程度。然而,即使在没有持续性细菌来源的情况下,严重的内皮损伤也会导致瓣膜感染减少。细菌向其他器官的扩散也取决于感染病原体的致病特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea19/7314968/eaa0da45765b/fmicb-11-01325-g001.jpg

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