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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Preparation and Characterization of Multilayer Coated Microdroplets: Droplet Deformation Simultaneously Probed by Atomic Force Spectroscopy and Optical Detection
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Preparation and Characterization of Multilayer Coated Microdroplets: Droplet Deformation Simultaneously Probed by Atomic Force Spectroscopy and Optical Detection

机译:多层包衣微滴的制备与表征:原子力光谱和光学检测同时探测液滴的形变

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摘要

We report the preparation and characterization of multilayer coated droplets in an emulsion. Stability and control of mass transport across the interface are the key issues for such coated microdroplets. Shelf fife of cosmetic, pharmaceutical, and food formulations can be improved by increasing stability. Moreover, such emulsions have potential applications in drug delivery and storage. A primary oil-in-water emulsion with caseinate as an emulsifier was prepared. On the basis of attractive electrostatic interactions, polyelectrolytes with opposite charges were added layer by layer. The oil droplets (particle size around 10 mu m) were successively coated with casein, pectin, whey proteins, pectin, whey proteins, and pectin. Laser diffraction spectroscopy, particle charge measurements, and confocal laser scanning microscopy were applied to characterize the multilayer droplets. The complementary results indicate that the inner layers merge and the packing density of the interface increases. AFM-induced mechanical compression of single oil droplets coated with casein and pectin is monitored by an inverted optical microscope, and simultaneously AFM force curves are recorded. Thus, the deformation of the droplet is reflected by its lateral expansion and the force curve. Force volume imaging is applied to probe the lateral distribution of mechanical properties of the droplet.
机译:我们报告了乳液中多层涂层液滴的制备和表征。对于这种包被的微滴,关键在于通过界面的稳定性和对通过界面的质量传输的控制。化妆品,药​​品和食品配方的货架特性可以通过增加稳定性来改善。而且,此类乳剂在药物递送和储存中具有潜在的应用。制备了以酪蛋白酸酯为乳化剂的水包油型初级乳液。在有吸引力的静电相互作用的基础上,逐层添加带相反电荷的聚电解质。依次用酪蛋白,果胶,乳清蛋白,果胶,乳清蛋白和果胶包被油滴(粒径约10μm)。激光衍射光谱,粒子电荷测量和共聚焦激光扫描显微镜用于表征多层液滴。补充结果表明,内层合并,界面的堆积密度增加。 AFM诱导的酪蛋白和果胶包衣的单个油滴的机械压缩通过倒置光学显微镜进行监控,同时记录AFM力曲线。因此,液滴的变形通过其横向膨胀和力曲线反映出来。施加力体积成像以探测液滴的机械性能的横向分布。

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