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类骨环境中菌株依赖性生物膜的形成

Strain-Dependent Biofilm Formation in Bone-Like Environment.

作者信息

Lamret Fabien, Varin-Simon Jennifer, Velard Frédéric, Terryn Christine, Mongaret Céline, Colin Marius, Gangloff Sophie C, Reffuveille Fany

机构信息

Université de Reims Champagne-Ardenne, Laboratory BIOS EA 4691, Reims, France.

Plateforme en Imagerie Cellulaire et Tissulaire, Université de Reims Champagne-Ardenne, Reims, France.

出版信息

Front Microbiol. 2021 Sep 7;12:714994. doi: 10.3389/fmicb.2021.714994. eCollection 2021.

Abstract

species is an important threat for hospital healthcare because of frequent colonization of indwelling medical devices such as bone and joint prostheses through biofilm formations, leading to therapeutic failure. Furthermore, bacteria within biofilm are less sensitive to the host immune system responses and to potential antibiotic treatments. We suggested that the periprosthetic bone environment is stressful for bacteria, influencing biofilm development. To provide insights into biofilm properties of three strains [including one methicillin-resistant (MRSA)] under this specific environment, we assessed several parameters related to bone conditions and expected to affect biofilm characteristics. We reported that the three strains harbored different behaviors in response to the lack of oxygen, casamino acids and glucose starvation, and high concentration of magnesium. Each strain presented different biofilm biomass and live adherent cells proportion, or matrix production and composition. However, the three strains shared common responses in a bone-like environment: a similar production of extracellular DNA and engagement of the SOS response. This study is a step toward a better understanding of periprosthetic joint infections and highlights targets, which could be common among strains and for future antibiofilm strategies.

摘要

由于生物膜的形成,[细菌名称]经常在诸如骨和关节假体等植入式医疗设备上定植,这对医院医疗保健构成了重大威胁,导致治疗失败。此外,生物膜内的细菌对宿主免疫系统反应和潜在的抗生素治疗不太敏感。我们认为假体周围的骨环境对细菌来说压力很大,会影响生物膜的形成。为了深入了解在这种特定环境下三种菌株[包括一种耐甲氧西林金黄色葡萄球菌(MRSA)]的生物膜特性,我们评估了几个与骨条件相关的参数,并预期这些参数会影响生物膜的特征。我们报告称,这三种菌株在应对缺氧、酪蛋白氨基酸和葡萄糖饥饿以及高浓度镁时表现出不同的行为。每种菌株呈现出不同的生物膜生物量和活黏附细胞比例,或基质产生和组成。然而,这三种菌株在类似骨的环境中具有共同的反应:细胞外DNA的产生相似以及SOS反应的参与。这项研究朝着更好地理解假体周围关节感染迈出了一步,并突出了一些靶点,这些靶点可能在菌株之间是共同的,可用于未来的抗生物膜策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4372/8453086/aff0a4744d49/fmicb-12-714994-g001.jpg

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