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Non-lamellar lipid assembly at interfaces: controlling layer structure by responsive nanogel particles

机译:界面处的非层状脂质组装:通过响应性纳米凝胶颗粒控制层结构

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摘要

Biological membranes do not only occur as planar bilayer structures, but depending on the lipid composition, can also curve into intriguing three-dimensional structures. In order to fully understand the biological implications as well as to reveal the full potential for applications, e.g. for drug delivery and other biomedical devices, of such structures, well-defined model systems are required. Here, we discuss the formation of lipid non-lamellar liquid crystalline (LC) surface layers spin-coated from the constituting lipids followed by hydration of the lipid layer. We demonstrate that hybrid lipid polymer films can be formed with different properties compared with the neat lipid LC layers. The nanostructure and morphologies of the lipid films formed reflect those in the bulk. Most notably, mixed lipid layers, which are composed of glycerol monooleate and diglycerol monooleate with poly(N-isopropylacrylamide) nanogels, can form films of reverse cubic phases that are capable of responding to temperature stimulus. Owing to the presence of the nanogel particles, changing the temperature not only regulates the hydration of the cubic phase lipid films, but also the lateral organization of the lipid domains within the lipid self-assembled film. This opens up the possibility for new nanostructured materials based on lipid–polymer responsive layers.
机译:生物膜不仅以平面双层结构形式存在,而且取决于脂质的组成,还可以弯曲成有趣的三维结构。为了充分了解生物学意义并揭示其全部应用潜力,例如对于这种结构的药物输送和其他生物医学装置,需要定义明确的模型系统。在这里,我们讨论了从构成脂质旋涂的脂质非层状液晶(LC)表面层的形成,然后将脂质层水化。我们证明,与纯脂质LC层相比,杂化脂质聚合物膜可以形成不同的性能。形成的脂质膜的纳米结构和形态反映了大部分。最值得注意的是,由甘油单油酸酯和甘油二油酸酯与聚(N-异丙基丙烯酰胺)纳米凝胶组成的混合脂质层可以形成能够响应温度刺激的立方相反相薄膜。由于纳米凝胶颗粒的存在,改变温度不仅调节立方相脂质膜的水合作用,而且调节脂质自组装膜中脂质结构域的侧向组织。这为基于脂质-聚合物响应层的新型纳米结构材料开辟了可能性。

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