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Synthesis and characterization of nanoscale biomimetic polymer vesicles and polymer membranes for bioelectronic applications

机译:用于生物电子应用的纳米级仿生聚合物囊泡和聚合物膜的合成与表征

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An amphiphilic ABA triblock copolymer was synthesized using poly(2-ethyl-2-oxazoline) (PEtOz) as hydrophilic block [A] and poly(dimethylsiloxane) (PDMS) as hydrophobic block [B]. The cationic ring-opening polymerization of 2-ethyl-2-oxazoline was initiated by benzyl chloride in the presence of NaI. PEtOz-PDMS-PEtOz was characterized in aqueous solution using transmission electron microscopy (TEM). The block copolymers formed vesicles with a [B] block hydrophobic component thickness of 4 nm, which is thin enough for successful reconstitution of proteins. The mean diameters of the vesicles were measured to be in the range of 150-250 nm, with a narrow distribution. The electrochemical properties of planar PEtOz-PDMS-PEtOz membrane films spread across a Teflon aperture were investigated by electrochemical impedance spectroscopy (EIS). The impedance data showed an increase of planar membrane capacitance (C-MEM) from 2.58 x 10(-7) to 2.71 x 10(-7) F cm(-2) and a decrease of membrane resistance (R-MEM) from 12 to 10.8 &UOmega; cm(2). The increase Of CMEM over time in buffer solution can be explained by an increase of the dielectric constant as a result of membrane electrolyte incorporation and/or by the formation and growth of defect in the free-standing films. In contrast to the formation of thin-walled vesicles, the spread triblock copolymer formed a free-standing membrane with a 9 nm thickness. Based on the two possible conformations (bridge midblock conformation and loop midblock conformation) that the triblock copolymer can have, we can conclude that PEtOz-PDMS-PEtOz formed 4 nm thick polymer vesicles with intercalated loop midblock structure in aqueous solution, while 9 nm thick free-standing polymer films with bilayer loop midblock conformation or with bridge midblock conformation were formed by aperture spreading.
机译:使用聚(2-乙基-2-恶唑啉)(PEtOz)作为亲水性嵌段[A]和聚(二甲基硅氧烷)(PDMS)作为疏水性嵌段[B]合成两亲ABA三嵌段共聚物。在NaI存在下,苄基氯引发2-乙基-2-恶唑啉的阳离子开环聚合。 PEtOz-PDMS-PEtOz在水溶液中使用透射电子显微镜(TEM)进行表征。嵌段共聚物形成具有[B]嵌段疏水性成分厚度为4nm的囊泡,其足够薄以成功地重构蛋白质。测量的囊泡的平均直径在150-250nm范围内,具有窄的分布。通过电化学阻抗谱(EIS)研究了分布在特氟龙孔上的平面PEtOz-PDMS-PEtOz膜的电化学性能。阻抗数据显示平面膜电容(C-MEM)从2.58 x 10(-7)增加到2.71 x 10(-7)F cm(-2),膜电阻(R-MEM)从12减小至10.8&UOmega;厘米(2)。缓冲溶液中CMEM随时间的增加可以解释为膜电解质掺入导致介电常数增加和/或自支撑膜中缺陷的形成和生长。与形成薄壁囊泡相反,散布的三嵌段共聚物形成了厚度为9 nm的自支撑膜。基于三嵌段共聚物可以具有的两种可能的构象(桥中嵌段构象和环中嵌段构象),我们可以得出结论:PEtOz-PDMS-PEtOz在水溶液中形成了4纳米厚的插层环中嵌段结构的聚合物囊泡,而厚度为9纳米通过孔扩展形成具有双层环中嵌段构型或具有桥中嵌段构型的自立式聚合物膜。

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