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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Effects of poly (ethylene glycol) chains conformational transition on the properties of mixed DMPC/DMPE-PEG thin liquid films and monolayers
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Effects of poly (ethylene glycol) chains conformational transition on the properties of mixed DMPC/DMPE-PEG thin liquid films and monolayers

机译:聚乙二醇链构象转变对混合DMPC / DMPE-PEG薄膜和单层薄膜性能的影响

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Foam thin liquid films (TLF) and monolayers at the air-Water interface formed by DMPC mixed with DMPE-bonded poly (ethylene glycol)s (DMPE-PEG(550), DMPE-PEG(2000) and DMPE-PEG(5000)) were obtained. The influence of both (i) PEG chain size (evaluated in terms of Mw) and mushroom-to-brush conformational transition and (ii) of the liposome/micelle ratio in the film-forming dispersions, on the interfacial proper-ties of mixed DMPC/DMPE-PEG films was compared. Foam film studies demonstrated that DMPE-PEG addition to foam TLFs caused (i) delayed kinetics of film thinning and black spot expansion and (ii) film stabilization. At the mushroom-to-brush transition, due to steric repulsion increased DMPE-PEG films thickness reached 25 nm while pure DMPC films were only 8 nm thick Newton black films. It was possible to differentiate DMPE-PEG(2000/5000) from DMPE-PEG(550) by the ability to change foam TLF formation mechanism, which could be of great importance for "stealth" liposome design. Monolayer studies showed improved formation kinetics and equilibrium surface tension decrease for DMPE-PEG monolayers compared with DMPC pure films. SEM observations revealed "smoothing" and "sealing" of the defects in the solid-supported layer surface by DMPE-PEGs adsorption, which could explain DMPE-PEGs ability to stabilize TLFs and to decrease monolayer surface tension. All effects in monolayers, foam TLFs and solid-supported layers increased with the increase of PEG Mw and DMPE-PEG concentration. However, at the critical DMPE-PEG concentration (where mushroom-to-brush conformational transition occurred) maximal magnitude of the effects was reached, which only slightly changed at further DMPE-PEG content and micelle/liposome ratio increase. (C) 2007 Elsevier B.V. All rights reserved.
机译:由DMPC与DMPE键合的聚乙二醇(DMPE-PEG(550),DMPE-PEG(2000)和DMPE-PEG(5000)混合形成的空气-水界面处的泡沫薄膜(TLF)和单层)。 (i)PEG链大小(以Mw评估)和蘑菇-刷子构象过渡以及(ii)成膜分散液中脂质体/胶束比率的变化对混合液界面性质的影响比较了DMPC / DMPE-PEG膜。泡沫薄膜研究表明,向泡沫TLF中添加DMPE-PEG会导致(i)薄膜变薄和黑点膨胀的动力学延迟,以及(ii)薄膜稳定。在蘑菇到刷子的过渡处,由于空间排斥,DMPE-PEG膜的厚度增加到25 nm,而纯DMPC膜的厚度只有8 nm的牛顿黑膜。可以通过改变泡沫TLF形成机理的能力将DMPE-PEG(2000/5000)与DMPE-PEG(550)区别开来,这对于“隐身”脂质体设计可能非常重要。单层研究表明,与DMPC纯膜相比,DMPE-PEG单层的形成动力学得到改善,平衡表面张力降低。 SEM观察表明,通过DMPE-PEG吸附,固相支撑层表面的缺陷“变得光滑”和“密封”,这可以解释DMPE-PEG稳定TLF和降低单层表面张力的能力。随着PEG Mw和DMPE-PEG浓度的增加,单层,泡沫TLF和固体支持层中的所有作用均增加。但是,在临界DMPE-PEG浓度(发生蘑菇到刷子的构象转变)时,达到了最大的作用效果,在进一步的DMPE-PEG含量和胶束/脂质体比率增加的情况下,仅发生了轻微的变化。 (C)2007 Elsevier B.V.保留所有权利。

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