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基于表面的单囊泡阵列的传感应用。

Sensing-applications of surface-based single vesicle arrays.

机构信息

Bio-Nanotechnology Laboratory, Department of Neuroscience and Pharmacology, University of Copenhagen, 2100 Copenhagen, Denmark.

出版信息

Sensors (Basel). 2010;10(12):11352-68. doi: 10.3390/s101211352. Epub 2010 Dec 13.

Abstract

A single lipid vesicle can be regarded as an autonomous ultra-miniaturised 3D biomimetic "scaffold" (Ø≥13 nm) ideally suited for reconstitution and interrogation of biochemical processes. The enclosing lipid bilayer membrane of a vesicle can be applied for studying binding (protein/lipid or receptor/ligand interactions) or transmembrane events (membrane permeability or ion channel activation) while the aqueous vesicle lumen can be used for confining few or single macromolecules and probe, e.g., protein folding, catalytic pathways of enzymes or more complex biochemical reactions, such as signal transduction cascades. Immobilisation (arraying) of single vesicles on a solid support is an extremely useful technique that allows detailed characterisation of vesicle preparations using surface sensitive techniques, in particular fluorescence microscopy. Surface-based single vesicle arrays allow a plethora of prototypic sensing applications in a high throughput format with high spatial and high temporal resolution. In this review we present a series of applications of single vesicle arrays for screening/sensing of: membrane curvature dependent protein-lipid interactions, bilayer tension, reactions triggered in the vesicle lumen, the activity of transmembrane protein channels and biological membrane fusion reactions.

摘要

单个脂质体可以被视为自主的超微型 3D 仿生“支架”(Ø≥13nm),非常适合用于重新构建和研究生化过程。脂质体的封闭双层膜可用于研究结合(蛋白/脂质或受体/配体相互作用)或跨膜事件(膜通透性或离子通道激活),而水性脂质体腔可用于限制少量或单个大分子和探针,例如,蛋白质折叠、酶的催化途径或更复杂的生化反应,如信号转导级联。将单个脂质体固定在固体载体上是一种非常有用的技术,它允许使用表面敏感技术(特别是荧光显微镜)对脂质体制剂进行详细的表征。基于表面的单个脂质体阵列允许以高通量格式、高空间分辨率和高时间分辨率进行大量原型传感应用。在这篇综述中,我们介绍了一系列用于筛选/检测的单个脂质体阵列的应用:依赖于膜曲率的蛋白-脂质相互作用、双层张力、在脂质体腔中引发的反应、跨膜蛋白通道的活性和生物膜融合反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2c5/3231067/0dc201d7c510/sensors-10-11352f1.jpg

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