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Validation of biofilm formation on human skin wound models and demonstration of clinically translatable bacteria-specific volatile signatures

机译:验证人类皮肤伤口模型上生物膜的形成并证明可临床翻译的细菌特异性挥发性特征

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摘要

Biofilms are major contributors to delayed wound healing and there is a need for clinically relevant experimental models to assess theranostics. Microorganisms release volatile organic compounds (VOCs) and the ability to identify these in infected cutaneous wounds could lead to efficient non-invasive diagnosis. The aims here were to develop and assess bacterial biofilm formation and identify their VOC profiles in an in vitro model and validate in human ex vivo incisional and excisional cutaneous wound models. Biofilm development was assessed using multiple microscopy techniques with biofilm-forming deficient controls and quantified using metabolic and biomass assays; and VOC production measured by gas chromatography-mass spectrometry. The production of most VOCs was affected by biofilm development and model used. Some VOCs were specific either for planktonic or biofilm growth. The relative abundance of some VOCs was significantly increased or decreased by biofilm growth phase (P < 0.05). Some Staphylococcus aureus and Pseudomonas aeruginosa VOCs correlated with biofilm metabolic activity and biomass (R ≤ −0.5; ≥0.5). We present for the first time bacterial biofilm formation in human ex vivo cutaneous wound models and their specific VOC profiles. These models provide a vehicle for human skin-relevant biofilm studies and VOC detection has potential clinical translatability in efficient non-invasive diagnosis of wound infection.
机译:生物膜是造成伤口愈合延迟的主要因素,因此需要临床相关的实验模型来评估治疗学。微生物释放出挥发性有机化合物(VOC),并且能够在感染的皮肤伤口中识别出这些化合物,从而可以有效地进行非侵入性诊断。此处的目的是开发和评估细菌生物膜的形成,并在体外模型中鉴定其VOC特性,并在人离体切开和切除皮肤伤口模型中进行验证。使用具有生物膜形成缺陷的对照的多种显微镜技术评估生物膜的发育,并使用代谢和生物量测定进行定量;通过气相色谱-质谱法测定VOC的产生。大多数VOC的生产受生物膜发展和所用模型的影响。一些挥发性有机化合物对浮游生物或生物膜的生长具有特异性。生物膜生长期某些VOCs的相对丰度显着增加或降低(P <0.05)。一些金黄色葡萄球菌和铜绿假单胞菌的挥发性有机化合物与生物膜代谢活性和生物量相关(R≤-0.5;≥0.5)。我们首次提出了人类离体皮肤伤口模型中细菌生物膜的形成及其特异性VOC特性。这些模型为人类皮肤相关的生物膜研究提供了一种工具,VOC检测在伤口感染的有效非侵入性诊断中具有潜在的临床可翻译性。

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