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AFM characterization of solid-supported lipid multilayers prepared by spin-coating

机译:通过旋涂制备的固体负载脂质多层膜的AFM表征

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摘要

Lipids are the principal components of biologically relevant structures as cellular membranes. They have been the subject of many studies due to their biological relevance and their potential applications. Different techniques, such as Langmuir-Blodgett and vesicle-fusion deposition, are available to deposit ordered lipid films on etched surfaces. Recently, a new technique of lipid film deposition has been proposed in which stacks of a small and well-controlled number of bilayers are prepared on a suitable substrate using a spin-coater.We studied the morphological properties of multi-layers made of cationic and neutral lipids (DOTAP and DOPC) and mixtures of them using dynamic mode atomic force microscopy (AFM). After adapting and optimizing, the spin-coating technique to deposit lipids on a chemically etched Silicon (1,0,0) substrate, a morphological nanometer-scale characterization of the aforementioned samples has been provided. The AFM study showed that an initial layer of ordered vesicles is formed and, afterward, depending on details of the spin-coating preparation protocol and to the dimension of the silicon substrate, vesicle fusion and structural rearrangements of the lipid layers may occur.The present data disclose the possibility to control the lipid's structures by acting on spin-coating parameters with promising perspectives for novel applications of lipid films. (c) 2005 Elsevier B.V. All rights reserved.
机译:脂质是生物学相关结构(如细胞膜)的主要成分。由于它们的生物学意义和潜在应用,它们已成为许多研究的主题。可以使用不同的技术,例如Langmuir-Blodgett和囊泡融合沉积,将有序脂质膜沉积在蚀刻表面上。最近,有人提出了一种新的脂质膜沉积技术,其中使用旋涂机在合适的基材上制备少量且可控数量的双层堆叠体。中性脂质(DOTAP和DOPC)及其混合物,采用动态模式原子力显微镜(AFM)。经过调整和优化后,采用旋涂技术将脂质沉积在化学蚀刻的硅(1,0,0)衬底上,从而提供了上述样品的形态纳米尺度表征。原子力显微镜研究表明,形成了有序囊泡的初始层,然后,根据旋涂制备方案的详细信息以及硅基板的尺寸,可能会发生囊泡融合和脂质层的结构重排。数据公开了通过作用于旋涂参数来控制脂质结构的可能性,具有新颖的脂质膜应用前景。 (c)2005 Elsevier B.V.保留所有权利。

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