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在响应性脂质膜上组装响应性微凝胶。

Assembling responsive microgels at responsive lipid membranes.

作者信息

Wang Meina, Mihut Adriana M, Rieloff Ellen, Dabkowska Aleksandra P, Månsson Linda K, Immink Jasper N, Sparr Emma, Crassous Jérôme J

机构信息

Physical Chemistry, Department of Chemistry, Lund University, SE-221 00 Lund, Sweden;

Physical Chemistry, Department of Chemistry, Lund University, SE-221 00 Lund, Sweden.

出版信息

Proc Natl Acad Sci U S A. 2019 Mar 19;116(12):5442-5450. doi: 10.1073/pnas.1807790116. Epub 2019 Mar 1.

Abstract

Directed colloidal self-assembly at fluid interfaces can have a large impact in the fields of nanotechnology, materials, and biomedical sciences. The ability to control interfacial self-assembly relies on the fine interplay between bulk and surface interactions. Here, we investigate the interfacial assembly of thermoresponsive microgels and lipogels at the surface of giant unilamellar vesicles (GUVs) consisting of phospholipids bilayers with different compositions. By altering the properties of the lipid membrane and the microgel particles, it is possible to control the adsorption/desorption processes as well as the organization and dynamics of the colloids at the vesicle surface. No translocation of the microgels and lipogels through the membrane was observed for any of the membrane compositions and temperatures investigated. The lipid membranes with fluid chains provide highly dynamic interfaces that can host and mediate long-range ordering into 2D hexagonal crystals. This is in clear contrast to the conditions when the membranes are composed of lipids with solid chains, where there is no crystalline arrangement, and most of the particles desorb from the membrane. Likewise, we show that in segregated membranes, the soft microgel colloids form closely packed 2D crystals on the fluid bilayer domains, while hardly any particles adhere to the more solid bilayer domains. These findings thus present an approach for selective and controlled colloidal assembly at lipid membranes, opening routes toward the development of tunable soft materials.

摘要

在流体界面上进行的定向胶体自组装在纳米技术、材料科学和生物医学科学领域可能会产生重大影响。控制界面自组装的能力依赖于本体相互作用和表面相互作用之间的精细相互作用。在这里,我们研究了由不同组成的磷脂双层构成的巨型单层囊泡(GUVs)表面上热响应性微凝胶和脂质凝胶的界面组装。通过改变脂质膜和微凝胶颗粒的性质,可以控制吸附/解吸过程以及囊泡表面胶体的组织和动力学。在所研究的任何膜组成和温度下,均未观察到微凝胶和脂质凝胶穿过膜的转运。具有流体链的脂质膜提供了高度动态的界面,能够容纳并介导形成二维六方晶体的长程有序排列。这与由具有固体链的脂质组成膜时的情况形成鲜明对比,在那种情况下不存在晶体排列,并且大多数颗粒从膜上解吸。同样,我们表明,在分离的膜中,柔软的微凝胶胶体在流体双层区域上形成紧密堆积的二维晶体,而几乎没有任何颗粒附着在更固体的双层区域上。因此,这些发现提出了一种在脂质膜上进行选择性和可控胶体组装的方法,为开发可调谐软材料开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/006d/6431181/b98f2ec75ec4/pnas.1807790116fig01.jpg

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