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通过气泡坍塌实现脂质双层沉积与图案化

Lipid bilayer deposition and patterning via air bubble collapse.

作者信息

Mager Morgan D, Melosh Nicholas A

机构信息

Department of Materials Science and Engineering, Stanford University, Stanford, California 94305, USA.

出版信息

Langmuir. 2007 Aug 28;23(18):9369-77. doi: 10.1021/la701372b. Epub 2007 Aug 7.

Abstract

We report a new method for forming patterned lipid bilayers on solid substrates. In bubble collapse deposition (BCD), an air bubble is first "inked" with a monolayer of phospholipid molecules and then touched to the surface of a thermally oxidized silicon wafer and the air is slowly withdrawn. As the bubble shrinks, the lipid monolayer pressure increases. Once the monolayer exceeds the collapse pressure, it folds back on itself, depositing a stable lipid bilayer on the surface. These bilayer disks have lateral diffusion coefficients consistent with high quality supported bilayers. By sequentially depositing bilayers in overlapping areas, fluid connections between bilayers of different compositions are formed. Performing vesicle rupture on the open substrate surrounding this bilayer patch results in a fluid but spatially isolated bilayer. Very little intermixing was observed between the vesicle rupture and bubble-deposited bilayers.

摘要

我们报告了一种在固体基质上形成图案化脂质双层的新方法。在气泡坍塌沉积(BCD)过程中,首先用单层磷脂分子“标记”一个气泡,然后将其接触到热氧化硅晶片的表面,并缓慢抽出空气。随着气泡收缩,脂质单层压力增加。一旦单层超过坍塌压力,它就会自身折叠,在表面沉积一层稳定的脂质双层。这些双层圆盘具有与高质量支撑双层一致的横向扩散系数。通过在重叠区域顺序沉积双层,可以形成不同组成双层之间的流体连接。在围绕该双层贴片的开放基质上进行囊泡破裂,会形成一个流体但空间隔离的双层。在囊泡破裂双层和气泡沉积双层之间观察到很少的混合。

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