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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Patterned Molecular Films of Alkanethiol and PLL-PEG on Gold-Silicate Interfaces: How to Add Functionalities while Retaining Effective Antifouling
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Patterned Molecular Films of Alkanethiol and PLL-PEG on Gold-Silicate Interfaces: How to Add Functionalities while Retaining Effective Antifouling

机译:金 - 硅酸盐接口上的链烷醇和PLL-PEG的图案化分子薄膜:如何添加功能,同时保持有效防污

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Spatial control of surface functionalization and interactions is essential for microarray-based analysis. This study reports the fabrication of two-dimensional molecular films with site-specific functionalities, forming microarrays at discrete locations. Arrays of microsized gold disks were produced on a silicate membrane using microfabrication. On these arrays, orthogonal self-assembly of molecules was performed that can specifically bind to gold or silicate. The gold array elements were functionalized with a range of alkanethiols and the silicate with polymeric poly-L-lysine-grafted-poly(ethylene glycol) (PLL-PEG). The surface functionalization on the gold disk array and the surrounding substrate was characterized at each step using X-ray photoelectron spectroscopy (XPS) to show that alkanethiols are specifically attached to the gold. PLL-PEG was used to provide resistance against nonspecific protein and cell adsorption and attached exclusively to the silicate. The effectiveness of the surface chemistry was validated by the selective self-assembly of a gold nanoparticle monolayer array on the gold regions. In a more sophisticated example, selective adhesion of MCF-7 cells to anti-EpCAM antibody modified gold areas of the gold-silicate surface was demonstrated to give a cell microarray. This study provides a general approach to fabricate chemical patterns on silicon-based devices with the convergence of microfabrication and material-specific surface modification, which may be useful to expand the functionalities and potential applications for patterned biomolecular films. Importantly, the ability to pattern surfaces with different surface chemistries is not limited to planar surfaces using this orthogonal surface-coupling approach.
机译:表面官能化和相互作用的空间控制对于基于微阵列的分析至关重要。该研究报告了与位点特异性功能的二维分子膜的制造,在离散位置形成微阵列。使用微型制备在硅酸盐膜上产生微晶金盘阵列。在这些阵列上,进行分子的正交自组装,其可以特异性结合金或硅酸盐。金阵列元件用一系列链烷醇和聚合物聚-L-赖氨酸接枝 - 聚(乙二醇)(PLL-PEG)的硅酸盐官能化。使用X射线光电子谱(XPS)在每个步骤中表征金盘阵列和周围基板上的表面官能化,表明链烷醇特定地连接到金中。 PLL-PEG用于提供抗非特异性蛋白质和细胞吸附的抵抗力,并专门连接到硅酸盐。通过在金区域上的金纳米粒子单层阵列的选择性自组装验证了表面化学的有效性。在更复杂的实例中,对MCF-7细胞的选择性粘附到抗EPCAM抗体改性的金 - 硅酸盐表面的变形状区域,得到细胞微阵列。该研究提供了一种通过微制造和材料特异性表面改性的硅基器件上制造化学模式的一般方法,这可能是扩大用于图案化生物分子薄膜的功能和潜在应用的可用性。重要的是,利用不同表面化学物质的表面的能力不限于使用这种正交的表面耦合方法的平面表面。

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