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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Fluorescence microscopic characterization of ionic polymer bead-supported phospholipid bilayer membrane systems
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Fluorescence microscopic characterization of ionic polymer bead-supported phospholipid bilayer membrane systems

机译:离子聚合物微珠负载的磷脂双层膜系统的荧光显微表征

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Supported phospholipid membrane structures on cationic organic polymer beads were prepared using mixtures of dioleoylphosphatidylserine (PS) and egg yolk phosphatidylcholine (PC). Confocal fluorescence microscopic observations using a fluorescent membrane probe (N-4-nitrobenzo-2-oxa-1,3-diazole-phosphatidylethanolamine) revealed that the phospholipid molecules in the PS/PC-bead complexes were along the outer surface of the beads, but not inside the beads. The anionic PS on the most outer surface of the PS/PC-bead complexes was responsible for the binding of a positively charged macromolecule, rhodamine isothiocyanate dextran (M_w 70,000) by electrostatic attractive forces. The fluidity of the membranes in the PS/PC-bead complexes was investigated by the fluorescence recovery after a photobleaching technique. The lateral diffusion coefficients (D) for the PS/PC-bead complexes were one-half or less than that for 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine giant unilamellar vesicles without solid supporting materials. Such a constrain of the phospholipid bilayer membrane in the complexes appeared to be due to its immobilization on the cationic polymer bead by electrostatic attractive forces between the PS and ammonium group on the surface of the bead. The D values for the complexes were dependent on the phospholipid composition; the PS(25mol%)/PC(75mol%)-bead complex produced a more fluid membrane than the PS(50mol%)/PC(50mol%)-bead one. Thus, the fluidity of the phospholipid bilayer membranes formed on the cationic polymer beads was significantly affected by the anionic phospholipid fraction used for the preparation of the complexes.
机译:使用二油酰基磷脂酰丝氨酸(PS)和蛋黄磷脂酰胆碱(PC)的混合物,制备了阳离子有机聚合物微珠上支持的磷脂膜结构。使用荧光膜探针(N-4-硝基苯并-2-氧杂-1,3-二唑-磷脂酰乙醇胺)进行的共聚焦荧光显微镜观察表明,PS / PC-珠复合物中的磷脂分子沿着珠的外表面,但不在珠子里面。 PS / PC-珠粒复合物最外表面上的阴离子PS通过静电吸引力负责带正电荷的大分子若丹明异硫氰酸酯葡聚糖(M_w 70,000)的结合。通过光漂白技术后的荧光回收率研究了PS / PC-珠粒复合物中膜的流动性。 PS / PC-珠粒复合物的侧向扩散系数(D)比没有固体支撑材料的1-棕榈酰基-2-油酰基-sn-甘油-3-磷酸胆碱巨型单层大囊泡的一半或更低。络合物中磷脂双层膜的这种约束似乎是由于其通过珠和珠表面上的铵基团之间的静电引力而固定在阳离子聚合物珠上。复合物的D值取决于磷脂的组成。 PS(25mol%)/ PC(75mol%)-珠复合物比PS(50mol%)/ PC(50mol%)-珠复合物产生的流体膜更大。因此,在阳离子聚合物珠上形成的磷脂双层膜的流动性显着地受到用于制备复合物的阴离子磷脂级分的影响。

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