首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Microcontact printing for creation of patterned lipid bilayers on tetraethylene glycol self-assembled monolayers
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Microcontact printing for creation of patterned lipid bilayers on tetraethylene glycol self-assembled monolayers

机译:微接触印刷可在四甘醇自组装单层膜上形成图案化的脂质双分子层

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摘要

Supported lipid bilayers (SLBs) formed on many different substrates have been widely used in the study of lipid bilayers. However, most SLBs suffer from inhomogeneities due to interactions between the lipid bilayer and the substrate. In order to avoid this problem, we have used microcontact printing to create patterned SLBs on top of ethylene-glycol-terminated self-assembled monolayers (SAMs). Glycol-terminated SAMs have previously been shown to resist absorbance of biomolecules including lipid vesicles. In our system, patterned lipid bilayer regions are separated by lipid monolayers, which form over the patterned hexadecanethiol portions of the surface. Furthermore, we demonstrate that α-hemolysin, a large transmembrane protein, inserts preferentially into the lipid bilayer regions of the substrate.
机译:在许多不同的基质上形成的支持脂质双层(SLB)已被广泛用于脂质双层的研究中。然而,由于脂质双层和底物之间的相互作用,大多数SLB遭受不均匀性的困扰。为了避免此问题,我们已使用微接触印刷在乙二醇末端自组装单层(SAM)的顶部创建了图案化的SLB。先前已显示乙二醇封端的SAM可以抵抗包括脂质囊泡在内的生物分子的吸收。在我们的系统中,图案化的脂质双层区域被脂质单层隔开,脂质单层形成在表面的图案化十六烷硫醇部分上。此外,我们证明了α-溶血素,一种大的跨膜蛋白,优先插入底物的脂质双层区域。

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