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首页> 外文期刊>Analytical chemistry >DIRECT IN SITU MEASUREMENT OF PHOSPHOLIPID HYDRATION IN AN AQUEOUS ENVIRONMENT USING A QUARTZ CRYSTAL MICROBALANCE
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DIRECT IN SITU MEASUREMENT OF PHOSPHOLIPID HYDRATION IN AN AQUEOUS ENVIRONMENT USING A QUARTZ CRYSTAL MICROBALANCE

机译:石英晶体微平衡法直接测量水溶液中的磷脂水化

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摘要

Hydration of phospholipid head groups is essential for stabilizing bilayer structures in au aqueous environment Here we describe a new, easy, and rapid method that can directly and quantitatively determine phospholipid hydration in both water vapor and liquid water; i.e., a quartz crystal microbalance is employed which enables hydration to be determined in only 1 h using just 1 mu g of phospholipids under various environmental conditions, Dipalmitoylphosphatidylethanolamine (DPPE) was examined with varying temperature, KCI concentration, and phase of water, where it was found that DPPE hydration in liquid water markedly increases upon raising the temperature, even when the phospholipid is in a gel phase, being maximal around its phase transition temperature (63.5 degrees C), Furthermore, KCl addition increased DPPE hydration in a temperature-dependent manner. The method presented is demonstrated to be capable of determining phospholipid hydration under physiological conditions; hence, it is suitable for investigating hydration phenomena involved in biological processes.
机译:磷脂头基的水合对于在水环境中稳定双层结构必不可少。在这里,我们描述了一种新的,简便,快速的方法,该方法可以直接和定量地确定水蒸气和液态水中的磷脂水合。即,使用石英晶体微量天平,在各种环境条件下,仅用1μg磷脂就能在1小时内测定水合作用,在不同温度,KCI浓度和水相下检查了双棕榈酰磷脂酰乙醇胺(DPPE),已发现,即使磷脂处于凝胶相,液态水中DPPE的水合度也会随着温度的升高而显着增加,在其相变温度(63.5摄氏度)附近达到最大值。此外,氯化钾的添加在一定的温度范围内增加了DPPE的水合度。方式。已证明所提出的方法能够在生理条件下测定磷脂的水合作用。因此,它适用于研究生物过程中涉及的水合现象。

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