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首页> 外文期刊>Advanced Functional Materials >Lipid-Containing Polymer Vesicles with pH/Ca~(2+)- Ion-Manipulated, Size-Selective Permeability
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Lipid-Containing Polymer Vesicles with pH/Ca~(2+)- Ion-Manipulated, Size-Selective Permeability

机译:pH / Ca〜(2 +)-离子操纵的尺寸选择性渗透性的含脂质聚合物囊泡

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摘要

Polymeric vesicles attained from the self-assembly of distearin (a diacylglyc-erol lipid)-conjugated poly(acrylic acid) (PAAc) with various distearin contents in the aqueous phase show the capability of control over the vesicular-wall permeability to hydrophtlic solutes of varying sizes by a simple manipulation of the external pH. The pH sensitivity of the vesicle membranes in size-selective permeability is largely dependent upon the lipid content of copolymer. By the addition of CaCl_2 in aqueous vesicle suspensions, the pH-evolved assembly structure and the membrane permeability can be immobilized with promoted resistance to further pH alteration, along with an additional counterion screening effect that reduces the pH required for the onset of polar solutes of certain sizes to pass through the membranes. Small-angle X-ray scattering (SAXS) measurements of the vesicle structure in the aqueous phase indicate that the pH-regulated permeability to polar solutes is virtually governed by the extent of hydration and swelling of the vesicle membranes, and the lipid residues within each vesicle wall are packed into the ≈4-5 repeating lamellar islet structure surrounded by PAAc segments.
机译:由二硬脂酸酯(二酰基甘油-芥子油脂质)-共轭聚丙烯酸(PAAc)在水相中具有多种二硬脂酸酯含量的自组装而获得的聚合物囊泡,具有控制囊泡壁对疏水性溶质的渗透性的能力。通过简单地控制外部pH来改变大小。囊膜对大小选择性渗透性的pH敏感性在很大程度上取决于共聚物的脂质含量。通过在水性囊泡悬浮液中添加CaCl_2,可以固定pH演化的组装结构和膜通透性,并具有增强的抵抗进一步pH改变的抵抗力,以及额外的抗衡离子筛选作用,该作用降低了pH极性溶质的出现所需的pH。一定的尺寸以通过膜。在水相中对囊泡结构进行小角度X射线散射(SAXS)测量表明,pH调节的对极性溶质的渗透性实际上受囊泡膜水化和溶胀程度以及每个囊泡中脂质残留的支配囊泡壁被包装成由PAAc片段包围的≈4-5个重复的层状胰岛结构。

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  • 来源
    《Advanced Functional Materials》 |2012年第11期|p.2267-2275|共9页
  • 作者单位

    Department of Chemical Engineering National Chung Hsing University Taichung 402, Taiwan;

    Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University Hsinchu 300, Taiwan;

    Department of Chemical Engineering National Chung Hsing University Taichung 402, Taiwan;

    Department of Chemical Engineering National Chung Hsing University Taichung 402, Taiwan;

    Department of Chemical Engineering National Tsing Hua University Hsinchu 300, Taiwan;

    Department of Chemical Engineering National Taiwan University of Science and Technology Taipei 106, Taiwan;

    Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University Hsinchu 300, Taiwan;

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