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葡萄糖聚合物(右旋糖酐)溶液中混合磷脂酰胆碱/磷脂酰丝氨酸脂质囊泡聚集的自由能势

Free energy potential for aggregation of mixed phosphatidylcholine/phosphatidylserine lipid vesicles in glucose polymer (dextran) solutions.

作者信息

Evans E, Metcalfe M

出版信息

Biophys J. 1984 Apr;45(4):715-20. doi: 10.1016/S0006-3495(84)84213-7.

Abstract

The energetics of lipid vesicle-vesicle aggregation in dextran (36,000 mol wt) solutions have been studied with the use of micromechanical experiments. The affinities (free energy reduction per unit area of contact) for vesicle-vesicle aggregation were determined from measurements of the tension induced in an initially flaccid vesicle membrane as it adhered to another vesicle. The experiments involved controlled aggregation of single vesicles by the following procedure: two giant (approximately 20 micron diam) vesicles were selected from a chamber on the microscope stage that contained the vesicle suspension and transferred to a second chamber that contained a dextran (36,000 mol wt) salt solution (120 mM); the vesicles were then maneuvered into position for contact. One vesicle was aspirated with sufficient suction pressure to create a rigid sphere outside the pipette; the other vesicle was allowed to spread over the rigid vesicle surface. The aggregation potential (affinity) was derived from the membrane tension vs. contact area. Vesicles were formed from mixture of egg lecithin (PC) and phosphatidylserine (PS). For vesicles with a PC/PS ratio of 10:1, the affinity showed a linear increase with concentration of dextran; the values were on the order of 10(-1) ergs/cm2 at 10% by weight in grams. Similarly, pure PC vesicle aggregation was characterized by an affinity value of 1.5 X 10(-1) ergs/cm2 in 10% dextran by weight in grams. In 10% by weight in grams solutions of dextran, the free energy potential for vesicle aggregation decreased as the surface charge (PS) was increased; the affinity extrapolated to zero at a PC/PS ratio of 2:1. When adherent vesicle pairs were transferred into a dextran-free buffer, the vesicles did not spontaneously separate. They maintained adhesive contact until forceably separated, after which they would not read here. Thus, it appears that dextran forms a "cross-bridge" between the vesicle surfaces.

摘要

利用微机械实验研究了葡聚糖(分子量36,000)溶液中脂质囊泡 - 囊泡聚集的能量学。囊泡 - 囊泡聚集的亲和力(单位接触面积的自由能降低)是通过测量初始松弛的囊泡膜在与另一个囊泡粘附时所产生的张力来确定的。实验通过以下步骤进行单个囊泡的可控聚集:从显微镜载物台上装有囊泡悬浮液的腔室中选取两个巨大的(直径约20微米)囊泡,并转移到另一个装有葡聚糖(分子量36,000)盐溶液(120 mM)的腔室中;然后将囊泡移动到接触位置。用足够的抽吸压力抽吸一个囊泡,使其在移液管外形成一个刚性球体;让另一个囊泡铺展在刚性囊泡表面。聚集势(亲和力)由膜张力与接触面积得出。囊泡由卵磷脂(PC)和磷脂酰丝氨酸(PS)的混合物形成。对于PC/PS比例为10:1的囊泡,亲和力随葡聚糖浓度呈线性增加;在10%(重量)时,其值约为10^(-1)尔格/平方厘米。同样,纯PC囊泡聚集的特征是在10%(重量)的葡聚糖中亲和力值为1.5×10^(-1)尔格/平方厘米。在10%(重量)的葡聚糖溶液中,随着表面电荷(PS)增加,囊泡聚集的自由能势降低;在PC/PS比例为2:1时,亲和力外推至零。当粘附的囊泡对转移到无葡聚糖缓冲液中时,囊泡不会自发分离。它们保持粘附接触,直到被强行分开,之后不会再重新粘附。因此,似乎葡聚糖在囊泡表面之间形成了一个“交联桥”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/785e/1434910/0b8f3b60f301/biophysj00206-0069-a.jpg

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