首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Adsorption of Egg Phosphatidylcholine to an Air/Water and Triolein/Water Bubble Interface: Use of the 2-Dimensional Phase Rule To Estimate the Surface Composition of a Phospholipid/Triolein/Water Surface as a Function of Surface Pressure
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Adsorption of Egg Phosphatidylcholine to an Air/Water and Triolein/Water Bubble Interface: Use of the 2-Dimensional Phase Rule To Estimate the Surface Composition of a Phospholipid/Triolein/Water Surface as a Function of Surface Pressure

机译:鸡蛋磷脂酰胆碱在空气/水和三油精/水气泡界面上的吸附:使用二维相规则估算磷脂/三油精/水表面的表面组成随表面压力的变化

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Phospholipid monolayers play a critical role in the structure and stabilization of biological interfaces, including all membranes, the alveoli of the lungs, fat droplets in adipose tissue, and lipoproteins. The behavior of phospholipids in bilayers and at an air-water interface is well understood. However, the study of phospholipids at oil—water interfaces is limited due to technical challenges. In this study, egg phosphatidylcholine (EPC) was deposited from small unilamellar vesicles onto a bubble of either air or triolein (TO) formed in a low-salt buffer. The surface tension (γ) was measured using a drop tensiometer. We observed that EPC binds irreversibly to both interfaces and at equilibrium exerts ~12 and 15 mN/m of pressure (Π) at an air and TO interface, respectively. After EPC was bound to the interface, the unbound EPC was washed out of the cuvette, and the surface was compressed to study the n/area relationship. To determine the surface concentration (Γ), which cannot be measured directly, compression isotherms from a Langmuir trough and drop tensiometer were compared. The air—water interfaces had identical characteristics using both techniques; thus, Γ on the bubble can be determined by overlaying the two isotherms. Both TO and EPC are surface-active, so in a mixed TO/EPC monolayer, both molecules will be exposed to water. Since TO is less surface-active than EPC, as Π increases, the TO is progressively ejected. To understand the n/area isotherm of EPC on a TO bubble, a variety of TO-EPC mixtures were spread at the air—water interface. The isotherms show an abrupt break in the curve caused by the ejection of TO from the monolayer into a new bulk phase. By overlaying the compression isotherm above the ejection point with a TO bubble compression isotherm, Γ can be estimated. This allows determination of Γ of EPC on a TO bubble as a function of Π.
机译:磷脂单层在包括所有膜,肺泡,脂肪组织中的脂肪滴和脂蛋白在内的生物界面的结构和稳定性中起着关键作用。磷脂在双层中以及在空气-水界面处的行为是众所周知的。然而,由于技术挑战,对油-水界面处的磷脂的研究受到限制。在这项研究中,卵磷脂酰胆碱(EPC)从小的单层囊泡沉积到在低盐缓冲液中形成的空气或三油精(TO)的气泡上。使用下落张力计测量表面张力(γ)。我们观察到EPC不可逆地结合到两个界面上,并且在平衡状态下,空气和TO界面分别施加约12和15 mN / m的压力(Π)。将EPC结合到界面后,将未结合的EPC从比色杯中冲洗掉,并压缩表面以研究n /面积关系。为了确定无法直接测量的表面浓度(Γ),比较了Langmuir槽和下落张力计的压缩等温线。使用这两种技术,空气-水界面具有相同的特性;因此,气泡上的Γ可以通过覆盖两个等温线来确定。 TO和EPC都具有表面活性,因此在混合的TO / EPC单层中,两个分子都将暴露于水。由于TO的表面活性不如EPC,因此随着Π的增加,TO逐渐弹出。为了了解TO气泡上EPC的正/等温等温线,各种TO-EPC混合物在空气-水界面处扩散。等温线显示了由单层TO喷射到新的本体相中引起的曲线突然断裂。通过将压缩等温线与TO气泡压缩等温线叠加在喷射点上方,可以估算出Γ。这允许确定在气泡上的EPC的Γ与Π的关系。

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