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Partitioning of Oleic Acid into Phosphatidylcholine Membranes Is Amplified by Strain

机译:菌株可将油酸分配到磷脂酰胆碱膜中。

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Partitioning of fatty acids into phospholipid membranes is studied on giant unilamellar vesicles (GUVs) utilizing phase-contrast microscopy. With use of a micropipet, an individual GUV is transferred from a vesicle suspension in a mixed glucose/ sucrose solution into an isomolar glycerol solution with a small amount of oleic acid added. Oleic acid molecules intercalate into the phospholipid membrane and thus increase the membrane area, while glycerol permeates into the vesicle interior and thus via osmotic inflation causes an increase of the vesicle volume. The conditions are chosen at which a vesicle swells as a sphere. At sufficiently low oleic acid concentrations, when the critical membrane strain is reached, the membrane bursts and part of vesicle content is ejected, upon which the membrane reseals and the swelling commences again. The radius of the vesicle before and after the burst is determined at different concentrations of oleic acid in suspension. The results of our experiments show that the oleic acid partitioning increases when the membrane strain is increased. The observed behavior is interpreted on the basis of a tension-dependent intercalation of oleic acid into the membrane.
机译:利用相差显微镜在巨大的单层囊泡(GUV)上研究了脂肪酸向磷脂膜中的分配。使用微量移液器,将单个的GUV从混合葡萄糖/蔗糖溶液中的囊泡悬浮液转移到添加了少量油酸的等摩尔甘油溶液中。油酸分子插入到磷脂膜中,从而增加了膜的面积,而甘油则渗透到囊泡的内部,并因此通过渗透膨胀而引起了囊泡体积的增加。选择囊泡作为球体膨胀的条件。在足够低的油酸浓度下,当达到临界膜应变时,膜破裂,并排出部分囊泡内容物,膜重新密封并再次开始溶胀。在不同的悬浮液中油酸浓度下,测定爆裂前后囊泡的半径。我们的实验结果表明,当膜应变增加时,油酸分配增加。所观察到的行为是基于油酸到膜中的张力依赖性插入来解释的。

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