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脂质和嵌段共聚物的混合囊泡:从微观到纳米尺度的相行为。

Hybrid vesicles from lipids and block copolymers: Phase behavior from the micro- to the nano-scale.

机构信息

Laboratoire des IMRCP, Université de Toulouse, CNRS UMR 5623, Université Toulouse III - Paul Sabatier, 118 route de Narbonne, F-31062, Toulouse Cedex 9, France; Department of Chemistry, University of Florence and CSGI, via della Lastruccia 3, 50019, Florence, Italy.

Department of Chemistry, University of Florence and CSGI, via della Lastruccia 3, 50019, Florence, Italy.

出版信息

Colloids Surf B Biointerfaces. 2018 Aug 1;168:18-28. doi: 10.1016/j.colsurfb.2018.01.042. Epub 2018 Feb 1.

Abstract

In recent years, there has been a growing interest in the formation of copolymers-lipids hybrid self-assemblies, which allow combining and improving the main features of pure lipids-based and copolymer-based systems known for their potential applications in the biomedical field. In this contribution we investigate the self-assembly behavior of dipalmitoylphosphatidylcholine (DPPC) mixed with poly(butadiene-b-ethyleneoxide) (PBD-PEO), both at the micro- and at the nano-length scale. Epifluorescence microscopy and Laser Scanning Confocal microscopy are employed to characterize the morphology of micron-sized hybrid vesicles. The presence of fluid-like inhomogeneities in their membrane has been evidenced in all the investigated range of compositions. Furthermore, a microfluidic set-up characterizes the mechanical properties of the prepared assemblies by measuring their deformation upon flow: hybrids with low lipid content behave like pure polymer vesicles, whereas objects mainly composed of lipids show more variability from one vesicle to the other. Finally, the structure of the nanosized assemblies is characterized through a combination of Dynamic Light Scattering, Small Angle Neutron Scattering and Transmission Electron Microscopy. A vesicles-to-wormlike transition has been evidenced due to the intimate mixing of DPPC and PBD-PEO at the nanoscale. Combining experimental results at the micron and at the nanoscale improves the fundamental understanding on the phase behavior of copolymer-lipid hybrid assemblies, which is a necessary prerequisite to tailor efficient copolymer-lipid hybrid devices.

摘要

近年来,人们对共聚物-脂质混合自组装的形成越来越感兴趣,这使得结合和改善基于纯脂质和基于共聚物的系统的主要特性成为可能,这些系统因其在生物医学领域的潜在应用而受到关注。在本研究中,我们研究了二棕榈酰磷脂酰胆碱(DPPC)与聚丁二烯-聚环氧乙烷(PBD-PEO)混合体系在微观和纳米尺度上的自组装行为。荧光显微镜和激光共焦扫描显微镜用于表征微米级混合囊泡的形态。在所有研究的组成范围内,都证明了其膜中存在类似流体的非均相性。此外,微流控装置通过测量其在流动时的变形来表征制备的组装体的力学性能:脂质含量低的混合物表现得像纯聚合物囊泡,而主要由脂质组成的物体在不同囊泡之间表现出更大的可变性。最后,通过动态光散射、小角中子散射和透射电子显微镜相结合的方式对纳米级组装体的结构进行了表征。由于 DPPC 和 PBD-PEO 在纳米尺度上的紧密混合,已经证明了囊泡到蠕虫状转变。在微米和纳米尺度上的实验结果相结合,可以提高对共聚物-脂质混合组装体的相行为的基本理解,这是定制高效共聚物-脂质混合器件的必要前提。

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