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二棕榈酰磷脂酰胆碱(或二油酰基磷脂酰胆碱)和磷脂酶 A2 酶对乳液性质的影响。

Influence of dipalmitoylphosphatidylcholine (or dioleoylphosphatidylcholine) and phospholipase A2 enzyme on the properties of emulsions.

机构信息

Department of Interfacial Phenomena, Faculty of Chemistry, Maria Curie-Skłodowska University, Lublin, Poland.

出版信息

J Colloid Interface Sci. 2012 May 1;373(1):75-83. doi: 10.1016/j.jcis.2011.09.037. Epub 2011 Sep 24.

Abstract

The properties of n-tetradecane emulsions with dipalmitoylphosphatidylcholine (DPPC) or dioleoylphosphatidylcholine (DOPC) in 1M ethanol were investigated at 20 and 37°C. The zwitterionic phospholipids having the same headgroup bound to the apolar tail composed of two saturated or unsaturated chains were used as stabilizing agents. Both phospholipids may self-organize into aggregates, which possess different sizes and surface affinities. Electrokinetic properties of the systems at natural pH or pH 8 were investigated taking into account the effective diameter of the droplets as well as the zeta potentials using the dynamic light scattering technique. The effect of both phospholipids decreases the initially negative zeta potential of the n-tetradecane emulsion and is more evident in the case of DPPC especially at a physiological temperature near its main temperature transition. The change of zeta potential by DOPC is visible at both temperatures probably as an effect of a loose packing of this phospholipid on n-tetradecane droplets, because of the presence of double bonds in its molecule. Also, the role of ethanol dipoles on the stability of oil/phospholipid emulsions is obvious. The other aim of paper was the characterization of the phospholipase A(2) influence on DOPC hydrolysis in the emulsion environment in order to emphasize the importance of such methodology. The present work is the first study that explores the effects of both electrolyte ions and ethanol molecules on DOPC hydrolysis by phospholipase. The effect of enzyme on the n-tetradecane/DOPC emulsions was investigated at pH 8 with Na(+) or Ca(2+) ions, which occur in the physiological fluids. The effective diameters do not always correlate with the zeta potentials. A possible reason of such behavior might a mechanism different from the electrostatic stabilization. The particular role of Ca(2+) ions in the emulsions with phospholipids was confirmed. Those investigations provide insight into the properties of the PLA(2) hydrolysis process enhanced by added ethanol. It is believed that the enzyme effect on the phospholipid aggregation behavior at the oil-water interface will be helpful for understanding other biological phenomena.

摘要

在 20°C 和 37°C 下,研究了含有二棕榈酰磷脂酰胆碱 (DPPC) 或二油酰磷脂酰胆碱 (DOPC) 的正十四烷乳液在 1M 乙醇中的性质。使用具有相同头基但与由两个饱和或不饱和链组成的非极性尾部结合的两性离子磷脂作为稳定剂。这两种磷脂都可能自组装成具有不同大小和表面亲和力的聚集体。在考虑到液滴的有效直径以及使用动态光散射技术测量的 zeta 电位的情况下,研究了在自然 pH 值或 pH8 下系统的电动特性。两种磷脂都降低了正十四烷乳液最初的负 zeta 电位,并且在接近其主要温度转变的生理温度下 DPPC 的效果更为明显。DOPC 的 zeta 电位变化在两种温度下都可见,可能是由于其分子中存在双键,导致这种磷脂在正十四烷液滴上的松散堆积所致。此外,乙醇偶极子对油/磷脂乳液稳定性的影响也很明显。本文的另一个目的是研究磷脂酶 A2(PLA2)对乳液环境中 DOPC 水解的影响,以强调这种方法的重要性。目前的工作是首次研究电解质离子和乙醇分子对 PLA 水解的影响。在 pH8 下,用生理液中存在的 Na+或 Ca2+离子研究了酶对正十四烷/DOPC 乳液的影响。有效直径并不总是与 zeta 电位相关。这种行为的一个可能原因可能是一种不同于静电稳定的机制。还证实了 Ca2+离子在含有磷脂的乳液中的特殊作用。这些研究为理解 PLA2 水解过程增强的乙醇的性质提供了深入的了解。人们相信,酶对油水界面处磷脂聚集行为的影响将有助于理解其他生物学现象。

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