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Visualization of Biofilm Formation in Candida albicans Using an Automated Microfluidic Device

机译:使用自动化的微流控设备在白色念珠菌中生物膜形成的可视化

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摘要

Candida albicans is the most common fungal pathogen of humans, causing about 15% of hospital-acquired sepsis cases. A major virulence attribute of C. albicans is its ability to form biofilms, structured communities of cells attached to biotic and abiotic surfaces. C. albicans biofilms can form on host tissues, such as mucosal layers, and on medical devices, such as catheters, pacemakers, dentures, and joint prostheses. Biofilms pose significant clinical challenges because they are highly resistant to physical and chemical perturbations, and can act as reservoirs to seed disseminated infections. Various in vitro assays have been utilized to study C. albicans biofilm formation, such as microtiter plate assays, dry weight measurements, cell viability assays, and confocal scanning laser microscopy. All of these assays are single end-point assays, where biofilm formation is assessed at a specific time point. Here, we describe a protocol to study biofilm formation in real-time using an automated microfluidic device under laminar flow conditions. This method allows for the observation of biofilm formation as the biofilm develops over time, using customizable conditions that mimic those of the host, such as those encountered in vascular catheters. This protocol can be used to assess the biofilm defects of genetic mutants as well as the inhibitory effects of antimicrobial agents on biofilm development in real-time.
机译:白色念珠菌是人类最常见的真菌病原体,约占医院获得性败血症病例的15%。白色念珠菌的主要毒力属性是其形成生物膜,附着于生物和非生物表面的细胞结构化社区的能力。白色念珠菌生物膜可以在宿主组织(例如粘膜层)和医疗设备(例如导管,起搏器,假牙和关节假体)上形成。由于生物膜对物理和化学扰动具有高度抵抗力,并且可以充当种子传播感染的储存库,因此生物膜面临着重大的临床挑战。各种体外测定法已被用于研究白色念珠菌生物膜的形成,例如微量滴定板测定法,干重测量,细胞生存力测定法和共聚焦扫描激光显微术。所有这些测定都是单终点测定,其中在特定时间点评估生物膜的形成。在这里,我们描述了一种在层流条件下使用自动化微流控设备实时研究生物膜形成的协议。该方法允许使用模拟宿主条件的可自定义条件(例如在血管导管中遇到的条件)来观察生物膜随着时间的发展而形成的生物膜。该协议可用于实时评估遗传突变体的生物膜缺陷以及抗微生物剂对生物膜发育的抑制作用。

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