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PEG-grafted phospholipids in vesicles: Effect of PEG chain length and concentration on mechanical properties

机译:囊泡中的PEG接枝磷脂:PEG链长度和浓度对机械性能的影响

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摘要

Incorporation of low molecular weight poly-ethylene glycol (PEG) - grafted phospholipids in vesicle bilayers is known to increase the circulation time of liposomal drug delivery vehicles. Mechanical properties of giant unilamellar DPPC vesicles containing varying concentrations of DSPE-PEG (PEG MW: 550, 1000 and 2000) were measured by micropipette aspiration assay or osmotic swelling. While the area compressibility modulus did not change significantly, the bending modulus and water permeability of the bilayer was found to increase with increasing mole fraction of DSPE-PEG. This increase was more pronounced for higher molecular weight PEG. The measured bending modulus agreed with that predicted by scaling theory only at low mole fractions of DSPE-PEG. The water permeability was also measured as a function of the increase in area per lipid (due to steric repulsion between PEG chains), and for the same area per lipid, the PEG chain with MW 550 provided a greater resistance to water transport across the vesicle membrane compared to PEG 1000 and 2000. Lysis tension of the membrane, determined by osmotic lysis method at different loading rates showed a decrease in membrane strength on inclusion of the polymer lipid. These results suggest that liposome lifetime in the circulation and the rate of drug delivery are affected by the molecular weight and concentration of PEG in the bilayer.
机译:已知掺入低分子量聚乙二醇(PEG) - 接枝磷脂,囊泡双层在囊泡双层中增加脂质体药物递送载体的循环时间。通过微型仪吸入测定或渗透溶胀测量含有不同浓度的DSPE-PEG(PEG MW:550,1000)的巨大浓度DSPE-PEG(PEG MW:550,1000)的机械性能。虽然区域可压缩模量没有显着变化,但发现双层的弯曲模量和水渗透率随着DSPE-PEG的增加而增加。对于较高的分子量PEG来说,这种增加更加明显。测量的弯曲模量与仅在DSPE-PEG的低摩尔分数下通过缩放理论预测的弯曲模量。还测量水渗透性作为每脂质面积增加的函数(由于PEG链之间的空间排斥),并且对于每脂质的相同面积,具有MW 550的PEG链为囊泡的水输送提供了更大的耐水性与PEG 1000和2000相比的膜。膜的裂解张力由不同加载率的渗透裂解方法确定膜强度降低,膜强度含有聚合物脂质。这些结果表明,血液化寿命和药物递送速率受到双层中PEG的分子量和浓度的影响。

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