首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Lipid Transfer in Oil-in-Water Isasome Emulsions: Influence of Arrested Dynamics of the Emulsion Droplets Entrapped in a Hydrogel
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Lipid Transfer in Oil-in-Water Isasome Emulsions: Influence of Arrested Dynamics of the Emulsion Droplets Entrapped in a Hydrogel

机译:水包油的不溶性乳液中的脂质转移:水凝胶中截留的乳液液滴阻滞动力学的影响

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摘要

The transfer kinetics of lipids between internally self-assembled droplets of O/W emulsions is studied. The droplets (isasomes) consist of various liquid-crystalline phases or W/O microemulsions stabilized by a polymeric stabilizer F127. The various internal phases were identified by the relative peak positions in the small-angle X-ray scattering (SAXS) curves. An arrested system composed of isasomes embedded in a gel matrix actually provides an additional possibility to control these systems in terms of the release of various host molecules. These experiments have been applied to examine the kinetics of the internal phase reorganization imposed by the lipids' release and uptake by the droplets embedded in a κ-carrageenan (KC) hydrogel network. Increasing the concentration of the gelling agent slows down the transfer from one droplet to the other through the aqueous phase. We examined the region where the free diffusion is stopped. i.e., the point where the system changes from the ergodic to the nonergodic state and the kinetics is essentially slowed down. This effect can be balanced by the addition of small amounts of free polymeric stabilizer, which speeds up the kinetics. This is even possible in the case of highly arrested dynamics of the emulsion droplets, as found for the highest KC hydrogel concentrations forming nonergodic systems.
机译:研究了O / W乳液内部自组装液滴之间脂质的转移动力学。液滴(脂质体)由各种液晶相或通过聚合物稳定剂F127稳定的W / O微乳组成。通过小角度X射线散射(SAXS)曲线中的相对峰位置来识别各种内部相。实际上,由包裹在凝胶基质中的伊索体组成的阻滞系统实际上提供了控制各种系统释放各种宿主分子的额外可能性。这些实验已应用于检查由脂质释放和嵌入κ-卡拉胶(KC)水凝胶网络中的液滴吸收引起的内相重组动力学。增加胶凝剂的浓度减慢了从一个液滴到另一液滴通过水相的转移。我们检查了自由扩散停止的区域。即,系统从遍历状态变为非遍历状态并且动力学基本减慢了。可以通过添加少量的游离聚合物稳定剂来平衡这种作用,这可以加快动力学。如在形成非遍历系统的最高KC水凝胶浓度中发现的那样,在乳液液滴高度滞留的动力学情况下,这甚至是可能的。

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