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Phase behavior, collapse transitions, and permeability of natural and synthetic monolayers.

机译:天然和合成单层的相行为,塌陷转变以及渗透性。

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Binary disaturated phosphatidylcholine(PC)/PEG-lipid systems have been widely used in bilayer and monolayer studies for the production of liposomes/vesicles and lipid-coated microbubbles both with applications in biomedical research. In this study, surface pressure (pi)-A isotherms, pi vs. 2D isothermal surface compressibility (ks) plots, molecular area vs. composition, and fluorescence images of Langmuir monolayers of DMPC, DPPC, and DSPC mixed with DSPE-PEG2000 were used to construct binary pi-composition (XDSPE-PEG2000) phase diagrams that showed syntectic, eutectic, peritectic, and monotectic phase transformations. We statistically characterize the chain length dependence of the collapse/shedding mechanisms during the dissolution of microbubbles coated with monolayers of disaturated PC/DSPE-PEG2000. We also obtain the gas transport resistance of the PC/DSPE-PEG2000 shell coating dissolving microbubbles under controlled conditions by modeling the dissolution of air microbubbles in an aqueous media. Combining the monolayer and microbubble dissolution results, we show how acyl chain condensation in DSPE-PEG2000, not present in the previously studied systems, dramatically impacts the dissolution behavior in this mixed system.;Furthermore, we propose a novel design for drug delivery by conjugating lipid-coated microbubbles and vesicles via DNA hybridization. Lastly, we used our experience on model lipid monolayer systems to explain the phase behavior and obtain surface tension measurements of microbubbles generated in seawater collected offshore.
机译:二元不饱和磷脂酰胆碱(PC)/ PEG-脂质系统已广泛用于双层和单层研究中,以生产脂质体/囊泡和脂质包覆的微泡,两者均在生物医学研究中应用。在这项研究中,表面压力(pi)-A等温线,pi与2D等温表面可压缩性(ks)图,分子面积与组成以及DMPC,DPPC和DSPC与DSPE-PEG2000混合的Langmuir单层的荧光图像为用于构建二元pi组成(XDSPE-PEG2000)相图,该图显示了共晶,共晶,包晶和单晶相变。我们从统计学上表征了在溶解有饱和PC / DSPE-PEG2000单层的微泡溶解过程中,塌陷/脱落机制的链长依赖性。我们还通过模拟空气微泡在水性介质中的溶解,在受控条件下获得了溶解微泡的PC / DSPE-PEG2000外壳涂料的气体传输阻力。结合单层和微泡的溶出度结果,我们证明了在先前研究的系统中不存在的DSPE-PEG2000中的酰基链缩合如何显着影响这种混合系统中的溶出行为。此外,我们提出了一种通过共轭药物递送的新颖设计通过DNA杂交的脂质包裹的微泡和囊泡。最后,我们使用在脂质单层模型系统上的经验来解释相行为并获得在海上收集的海水中产生的微气泡的表面张力测量值。

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