Department of Biomaterials, Sahlgrenska Academy, University of Gothenburg, P.O. Box 412, 40530, Gothenburg, Sweden.
BIOMATCELL VINN Excellence Center of Biomaterials and Cell Therapy, University of Gothenburg, P.O. Box 412, 40530, Gothenburg, Sweden.
J Biomed Mater Res A. 2017 Dec;105(12):3400-3412. doi: 10.1002/jbm.a.36171. Epub 2017 Sep 26.
The combination of increased healthcare access, universal aging, and infallible therapy demands, synergistically drive the need for the development of biomaterial technologies that mitigate the challenge of biomaterial-associated infections (BAI). Staphylococcus epidermidis and Staphylococcus aureus account for the majority of BAI due to their ability to accumulate in adherent multilayered biofilm. This investigation details the development of gene expression assays to evaluate the genetic processes of attachment, accumulation, maturation, and dispersal phases of biofilms on biomaterials in vitro, while abiding by the Minimum Information for Publication of Quantitative Real-Time PCR Experiments (MIQE) guidelines. The biofilm formation of S. epidermidis on polyurethane (PU) central venous catheters and S. aureus on machined titanium (Ti) was examined in terms of gene expression at early and late time points. The results provided insight into how each stage of biofilm formation is orchestrated over time on these biomaterials in vitro. Furthermore, the results suggested that mechanical RNA extraction, organic solvents, elimination of genomic DNA, and preamplification are advisable strategies to implement for biofilm gene expression analysis. It is concluded that this method can be employed for the assessment of biofilm-biomaterial interactions at the molecular level. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 3400-3412, 2017.
医疗保健机会的增加、普遍老龄化以及可靠治疗需求的综合作用,共同推动了生物材料技术的发展,以减轻与生物材料相关的感染 (BAI) 的挑战。表皮葡萄球菌和金黄色葡萄球菌因其能够在附着的多层生物膜中积累而成为大多数 BAI 的原因。本研究详细介绍了基因表达分析的开发,以评估体外生物材料上生物膜的附着、积累、成熟和分散阶段的遗传过程,同时遵守定量实时 PCR 实验发表的最低信息 (MIQE) 指南。表皮葡萄球菌在聚氨酯 (PU) 中心静脉导管和金黄色葡萄球菌在机加工钛 (Ti) 上的生物膜形成,从早期和晚期时间点的基因表达方面进行了研究。结果深入了解了生物膜形成的每个阶段如何在这些体外生物材料上随时间协调。此外,结果表明,机械 RNA 提取、有机溶剂、基因组 DNA 的消除和预扩增是生物膜基因表达分析中实施的明智策略。结论是,该方法可用于评估生物膜-生物材料相互作用在分子水平上。© 2017 威利父子公司。J 生物医学材料研究 A 部分:105A:3400-3412,2017。