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Microstructured Block Copolymer Surfaces for Control of Microbe Adhesion and Aggregation

机译:用于控制微生物粘附和聚集的微结构嵌段共聚物表面

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The attachment and arrangement of microbes onto a substrate is influenced by both the biochemical and physical surface properties. In this report, we develop lectin-functionalized substrates containing patterned, three-dimensional polymeric structures of varied shapes and densities and use these to investigate the effects of topology and spatial confinement on lectin-mediated microbe immobilization. Films of poly(glycidyl methacrylate)-block-4,4-dimethyl-2-vinylazlactone (PGMA-b-PVDMA) were patterned on silicon surfaces into line arrays or square grid patterns with 5 μm wide features and varied pitch. The patterned films had three-dimensional geometries with 900 nm film thickness. After surface functionalization with wheat germ agglutinin, the size of Pseudomonas fluorescens aggregates immobilized was dependent on the pattern dimensions. Films patterned as parallel lines or square grids with a pitch of 10 μm or less led to the immobilization of individual microbes with minimal formation of aggregates. Both geometries allowed for incremental increases in aggregate size distribution with each increase in pitch. These engineered surfaces combine spatial confinement with affinity-based capture to control the extent of microbe adhesion and aggregation, and can also be used as a platform to investigate intercellular interactions and biofilm formation in microbial populations of controlled sizes.
机译:微生物在基质上的附着和排列受生化和物理表面性质的影响。在本报告中,我们开发了包含各种形状和密度的图案化三维聚合物结构的凝集素功能化基质,并使用这些底物来研究拓扑结构和空间限制对凝集素介导的微生物固定的影响。将聚(甲基丙烯酸缩水甘油酯)-嵌段-4,4-二甲基-2-乙烯基氮杂内酯(PGMA-b-PVDMA)薄膜在硅表面上制成线阵列或方格图案,图案的宽度为5μm,间距可变。图案化的膜具有膜厚为900nm的三维几何形状。用小麦胚芽凝集素进行表面功能化后,固定的荧光假单胞菌聚集体的大小取决于图案尺寸。间距为10μm或更小的图案为平行线或正方形网格的薄膜导致单个微生物的固定化,聚集体的形成极少。两种几何形状都允许随着间距的增加而使总体尺寸分布逐渐增加。这些工程化的表面将空间限制与基于亲和力的捕获相结合,以控制微生物的粘附和聚集程度,还可以用作研究大小受控的微生物种群中细胞间相互作用和生物膜形成的平台。

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