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首页> 外文期刊>Biophysical Journal >Giant unilamellar vesicles formed by hybrid films of agarose and lipids display altered mechanical properties
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Giant unilamellar vesicles formed by hybrid films of agarose and lipids display altered mechanical properties

机译:由琼脂糖和脂质的混合膜形成的巨大单层囊泡显示出改变的机械性能

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摘要

Giant unilamellar vesicles (GUVs) are presumably the current most popular biomimetic membrane model. Preparation of GUVs in physiological conditions using the classical electroformation method is challenging. To circumvent these difficulties, a new method was recently reported, by which GUVs spontaneously swell from hybrid films of agarose and lipids. However, agarose is left encapsulated in the vesicles in different amounts. In this work, we thoroughly characterize the mechanical properties of these agarose-GUVs in response to electric pulses, which induce vesicle deformation and can lead to membrane poration. We show that the relaxation dynamics of deformed vesicles, both in the presence and absence of poration, is significantly slowed down for agarose-GUVs when compared to agarose-free GUVs. In the presence of poration, agarose polymers prevent complete pore closure and lead to high membrane permeability. A fraction of the vesicles were found to encapsulate agarose in the form of a gel-like meshwork. These vesicles rupture and open up after electroporation and the meshwork is expelled through a macropore. When the agarose-GUVs are heated above the melting temperature of agarose for 2 h before use, vesicle response is (partially) recovered due to substantial release of encapsulated agarose during temperature treatment. Our findings reveal potential artifactual behavior of agarose-GUVs in processes involving morphological changes in the membrane as well as poration.
机译:巨大的单层囊泡(GUV)可能是当前最流行的仿生膜模型。在生理条件下使用经典的电形成方法制备GUV极具挑战性。为了克服这些困难,最近报道了一种新方法,通过该新方法,琼脂糖和脂质的混合膜会自发膨胀GUV。然而,琼脂糖以不同的量留在囊泡中。在这项工作中,我们彻底表征了这些琼脂糖-GUV响应电脉冲的机械性能,这些电脉冲会引起囊泡变形并可能导致膜渗透。我们显示,与无琼脂糖的GUV相比,琼脂糖GUV的变形囊泡的松弛动力学,无论存在还是不存在渗透,都显着减慢。在存在孔隙的情况下,琼脂糖聚合物会阻止孔完全封闭并导致高的膜渗透性。发现一部分囊泡以凝胶状网状形式封装琼脂糖。这些囊泡在电穿孔后破裂并打开,网状结构通过大孔排出。在使用前将琼脂糖-GUV加热至高于琼脂糖的熔化温度2小时时,由于在温度处理过程中囊封的琼脂糖的大量释放,囊泡反应(部分)得以恢复。我们的发现揭示了琼脂糖-GUV在膜的形态变化和渗透过程中潜在的人为行为。

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