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靶向持续性生物膜感染:在模型选择过程中重新审视感染部位的拓扑结构。

Targeting Persistent Biofilm Infections: Reconsidering the Topography of the Infection Site during Model Selection.

作者信息

Kolodkin-Gal Ilana, Cohen-Cymberknoh Malena, Zamir Gideon, Tsesis Igor, Rosen Eyal

机构信息

Department of Plant Pathology and Microbiology, The Hebrew University of Jerusalem, Rehovot 7610001, Israel.

Pediatric Pulmonary Unit and Cystic Fibrosis Center, Hadassah Medical Center and Faculty of Medicine, Hebrew University of Jerusalem, Jerusalem 9112001, Israel.

出版信息

Microorganisms. 2022 Jun 6;10(6):1164. doi: 10.3390/microorganisms10061164.

Abstract

The physiology of an organism in the environment reflects its interactions with the diverse physical, chemical, and biological properties of the surface. These principles come into consideration during model selection to study biofilm-host interactions. Biofilms are communities formed by beneficial and pathogenic bacteria, where cells are held together by a structured extracellular matrix. When biofilms are associated with a host, chemical gradients and their origins become highly relevant. Conventional biofilm laboratory models such as multiwall biofilm models and agar plate models poorly mimic these gradients. In contrast, ex vivo models possess the partial capacity to mimic the conditions of tissue-associated biofilm and a biofilm associated with a mineralized surface enriched in inorganic components, such as the human dentin. This review will highlight the progress achieved using these settings for two models of persistent infections: the infection of the lung tissue by and the infection of the root canal by . For both models, we conclude that the limitations of the conventional in vitro systems necessitate a complimentary experimentation with clinically relevant ex vivo models during therapeutics development.

摘要

生物体在环境中的生理机能反映了其与表面各种物理、化学和生物学特性的相互作用。在选择研究生物膜与宿主相互作用的模型时,需要考虑这些原理。生物膜是由有益菌和病原菌形成的群落,其中细胞通过结构化的细胞外基质聚集在一起。当生物膜与宿主相关联时,化学梯度及其来源就变得高度相关。传统的生物膜实验室模型,如多壁生物膜模型和琼脂平板模型,很难模拟这些梯度。相比之下,体外模型具有部分能力来模拟与组织相关的生物膜以及与富含无机成分的矿化表面(如人类牙本质)相关的生物膜的条件。本综述将重点介绍在两种持续性感染模型中使用这些设置所取得的进展:由……引起的肺组织感染和由……引起的根管感染。对于这两种模型,我们得出结论,在治疗方法开发过程中,传统体外系统的局限性使得有必要使用与临床相关的体外模型进行补充实验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc87/9231179/31d3206493e3/microorganisms-10-01164-g001.jpg

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