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可定制的 3D 打印扩散室,用于在复杂环境中研究细菌病原体表型。

Customizable 3D printed diffusion chambers for studies of bacterial pathogen phenotypes in complex environments.

机构信息

Department of Forensic Science, Virginia Commonwealth University, Richmond, VA 23284, United States of America.

H.E.J. Research Institute, University of Karachi, Karachi, Pakistan.

出版信息

J Microbiol Methods. 2019 Jul;162:8-15. doi: 10.1016/j.mimet.2019.05.002. Epub 2019 May 11.

Abstract

Gaps in our understanding of the natural ecology and survival mechanisms of pathogenic bacteria in complex microenvironments such as soil typically occur due to the difficulty in characterizing biochemical profiles and morphological characteristics as they exist in environmental samples. Conversely, accurate simulation of the abiotic and biotic chemistries of soil habitats within the laboratory is often a significant challenge. Herein, we present the fabrication of customizable and precisely engineered 3D printed diffusion chambers that can be used to incubate bacterial cultures directly in soil matrices within a controlled laboratory experiment, and study the dynamics between bacterial cells and soil components. As part of the design process, different types of 3D printing materials were evaluated for ease of sterilization, structural integrity throughout the experiment, as well as cost/ease of production. To demonstrate potential applications for environmental studies, the diffusion chamber was used to incubate cultures of Bacillus cereus T-strain and Escherichia coli strain O157 directly in soil matrices. We show that the chamber facilitates diffusion of abiotic/biotic components of the soil with target cells without contamination from in situ microbial communities, while allowing for single cell and ensemble level phenotypic analyses of bacteria cultured with and without soil matrices.

摘要

由于难以描述土壤等复杂微环境中致病菌的生化特征和形态特征,我们对其在自然生态环境中的生存机制通常缺乏了解。相反,在实验室中准确模拟土壤生境的非生物和生物化学特性往往是一个重大挑战。在此,我们提出了一种可定制且精确设计的 3D 打印扩散室的制造方法,可用于在控制的实验室实验中直接在土壤基质中培养细菌培养物,并研究细菌细胞与土壤成分之间的动态关系。在设计过程中,我们评估了不同类型的 3D 打印材料,以评估其在消毒、整个实验过程中的结构完整性以及成本/生产难易程度方面的便利性。作为环境研究潜在应用的一部分,我们使用扩散室直接在土壤基质中培养蜡状芽孢杆菌 T 株和大肠杆菌 O157 菌株。我们表明,该腔室可促进土壤中生物/非生物成分与靶细胞的扩散,而不会受到原位微生物群落的污染,同时还允许对有和没有土壤基质培养的细菌进行单细胞和整体水平的表型分析。

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