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Fabrication of Biomimetically Patterned Surfaces and Their Application to Probing Plant-Bacteria Interactions

机译:仿生图案表面的制备及其在探测植物与细菌相互作用中的应用

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摘要

We have developed a two-step replica molding method for rapid fabrication of biomimetically patterned plant surfaces (BPS) using polydimethyisiloxane (PDMS-BPS) and agarose (AGAR-BPS). Beyond providing multiple identical specimens that faithfully reproduce leaf surface microstructure, this approach also offers unique chemical, physical, and biological features. PDMS-BPS provide good structural durability for SEM examination, have surface wettability comparable to plant surfaces for coating development, and allow for real-time monitoring of biosynthesis through incorporation into microfluidic devices. AGAR-BPS are compatible with bacterial growth, recovery, and quantification, and enable investigation of the effects of surface topography on spatially varying survival and inactivation of Escherichia coli cells during biocide treatment. Further development and application of these biomimetically patterned surfaces to study (and possibly modify) other aspects of plant-bacteria interactions can provide insight into controlling pathogen contamination in a wide range of applications.
机译:我们已经开发了一种两步仿品成型方法,可使用聚二甲基硅氧烷(PDMS-BPS)和琼脂糖(AGAR-BPS)快速制造仿生图案的植物表面(BPS)。除了提供可忠实复制叶片表面微结构的多个相同标本外,该方法还具有独特的化学,物理和生物学特性。 PDMS-BPS为SEM检查提供了良好的结构耐久性,其表面润湿性可与用于涂层开发的植物表面相媲美,并且可以通过并入微流体设备来实时监控生物合成。 AGAR-BPS与细菌的生长,恢复和定量兼容,并能够在杀菌剂处理过程中研究表面形貌对空间变化的存活和大肠杆菌细胞失活的影响。这些仿生图案表面的进一步开发和应用以研究(并可能修改)植物与细菌相互作用的其他方面,可以为在广泛的应用中控制病原体污染提供见识。

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