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首页> 外文期刊>Journal of Colloid and Interface Science >ADSORPTION OF POLY(ETHYLENE GLYCOL) AMPHIPHILES TO FORM COATINGS WHICH INHIBIT PROTEIN ADSORPTION
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ADSORPTION OF POLY(ETHYLENE GLYCOL) AMPHIPHILES TO FORM COATINGS WHICH INHIBIT PROTEIN ADSORPTION

机译:吸附聚乙烯醇形成形成抑制蛋白吸附的涂层

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The adsorption of poly(ethylene glycol) (PEG)-esterified fatty acids at methylated silica, phosphatidic acid, and phosphatidylcholine surfaces was investigated with in situ ellipsometry. For a series of PEG-fatty acid esters of ethoxy groups and acyl tails of type C-i:j-EO(151) (16 less than or equal to i less than or equal to 18, 0 less than or equal to j less than or equal to 2)adsorption at methylated silica was independent of bulk micellization, and a plateau was reached below the critical micellization concentration (CMC). The plateau adsorbed amount for the investigated fatty acid esters was only weakly dependent on the nature of the hydrophobic moiety. Instead, saturation adsorption was largely determined by the interactions between PEG chains. Adsorption isotherms were therefore essentially identical on all three of the quite different surfaces. At saturation adsorption, the adsorbed layer thickness was 10-15 nm, while the average adsorbed layer concentration was 0.07 g/cm(3). Formation of the PEG-surfactant coatings thus appeared to involve significant molecular alterations of PEG from a random coil, The ability of the PEG-ester coatings to inhibit protein adsorption was also investigated. At the adsorption plateau, all coatings investigated displayed quite good ability to inhibit adsorption by a number of serum proteins. For the surfaces studied this ability decreased below 0.2 CMC. These findings are discussed in relation to the ability of PEG-derivatized lipids to control the in vivo fate of colloidal drug carriers. (C) Academic Press, Inc. [References: 75]
机译:用原位椭圆光度法研究了聚(乙二醇)(PEG)酯化脂肪酸在甲基化二氧化硅,磷脂酸和磷脂酰胆碱表面的吸附。对于一系列类型为Ci:j-EO(151)的乙氧基和酰基尾的PEG脂肪酸酯(16小于或等于i小于或等于18,0小于或等于j小于或等于2)在甲基化二氧化硅上的吸附与本体胶束化无关,并且在临界胶束化浓度(CMC)以下达到平稳。研究的脂肪酸酯的平台吸附量仅弱地依赖于疏水部分的性质。相反,饱和吸附主要由PEG链之间的相互作用决定。因此,在完全不同的三个表面上的吸附等温线基本相同。在饱和吸附下,吸附层厚度为10-15 nm,而平均吸附层浓度为0.07 g / cm(3)。 PEG表面活性剂涂层的形成因此似乎涉及到来自随机线圈的PEG的显着分子变化。还研究了PEG-酯涂层抑制蛋白质吸附的能力。在吸附平台,研究的所有涂层均表现出相当好的抑制多种血清蛋白吸附的能力。对于所研究的表面,该能力降低到低于0.2 CMC。讨论了与PEG衍生化的脂质控制胶体药物载体的体内命运的能力有关的这些发现。 (C)Academic Press,Inc. [参考:75]

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