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参与多物种生物膜形成的微生物细胞表面蛋白和分泌代谢产物。

Microbial cell surface proteins and secreted metabolites involved in multispecies biofilms.

作者信息

Demuyser Liesbeth, Jabra-Rizk Mary Ann, Van Dijck Patrick

机构信息

VIB Department of Molecular Microbiology, KU Leuven, Leuven, Belgium; Laboratory of Molecular Cell Biology, KU Leuven, Leuven, Belgium.

出版信息

Pathog Dis. 2014 Apr;70(3):219-30. doi: 10.1111/2049-632X.12123. Epub 2014 Jan 27.

Abstract

A considerable number of infectious diseases involve multiple microbial species coexisting and interacting in a host. Only recently however the impact of these polymicrobial diseases has been appreciated and investigated. Often, the causative microbial species are embedded in an extracellular matrix forming biofilms, a form of existence that offers protection against chemotherapeutic agents and host immune defenses. Therefore, recent efforts have focused on developing novel therapeutic strategies targeting biofilm-associated polymicrobial infections, a task that has proved to be challenging. One promising approach to inhibit the development of such complex infections is to impede the interactions between the microbial species via inhibition of adhesion. To that end, studies have focused on identifying specific cell wall adhesins and receptors involved in the interactions between the various bacterial species and the most pathogenic human fungal species Candida albicans. This review highlights the important findings from these studies and describes the available tools and techniques that have provided insights into the role of secreted molecules orchestrating microbial interactions in biofilms. Specifically, we focus on the interactions that take place in oral biofilms and the implications of these interactions on oral health and therapeutic strategies.

摘要

相当数量的传染病涉及多种微生物在宿主体内共存并相互作用。然而,直到最近,这些多微生物疾病的影响才得到认识和研究。通常,致病微生物物种嵌入形成生物膜的细胞外基质中,这种存在形式可提供针对化学治疗剂和宿主免疫防御的保护。因此,最近的努力集中在开发针对生物膜相关多微生物感染的新型治疗策略上,事实证明这项任务具有挑战性。一种抑制此类复杂感染发展的有前景的方法是通过抑制粘附来阻碍微生物物种之间的相互作用。为此,研究集中在识别参与各种细菌物种与最具致病性的人类真菌物种白色念珠菌之间相互作用的特定细胞壁粘附素和受体。本综述重点介绍了这些研究的重要发现,并描述了有助于深入了解生物膜中协调微生物相互作用的分泌分子作用的现有工具和技术。具体而言,我们关注口腔生物膜中发生的相互作用以及这些相互作用对口腔健康和治疗策略的影响。

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