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Substrate-Sorting Nanoreactors Based on Permeable Peptide Polymer Vesicles and Hybrid Liposomes with Synthetic Macromolecular Channels

机译:基于可渗透的肽聚合物囊泡和具有合成大分子通道的杂化脂质体的基质吸附纳米反应器

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Vesicles with molecular permeability have attracted considerable attention as biomedical materials, e.g., as biocatalytic nanoreactors for drug delivery and artificial cells. However, their applications are limited by their low permeability for enzyme substrates. Here, we report the synthesis of oligo(aspartic acid)-b-poly(propylene oxide) polymer vesicle nanoreactors with a negatively charged surface, which are preferentially permeable for cationic and neutral compounds. The permeation of cationic substrates is accelerated by the electrostatic effect, which increases the apparent rate of the enzymatic reaction. Notably, the polymer can be incorporated into a phospholipid membrane, where it acts as a synthetic molecular channel. The obtained results clearly suggest that imparting the vesicle surface with an anionic charge represents a simple and versatile approach to substrate sorting and enhances molecular permeability. This study can thus be expected to open new avenues for the design of vesicles with molecular permeability that may serve as biocatalytic nanoreactors in artificial cells and drug delivery applications.
机译:具有分子渗透性的囊泡作为生物医学材料已经引起了相当大的关注,例如,作为用于药物递送和人造细胞的生物催化纳米反应器。但是,它们的应用受到酶底物低渗透性的限制。在这里,我们报告具有带负电表面的低聚(天冬氨酸)-b-聚(环氧丙烷)聚合物囊泡纳米反应器的合成,阳离子和中性化合物优先渗透。阳离子底物的渗透通过静电作用而加速,这增加了酶促反应的表观速率。值得注意的是,可以将聚合物掺入磷脂膜中,在该膜中充当合成分子通道。获得的结果清楚地表明,赋予囊泡表面带有阴离子电荷代表了一种简单而通用的底物分选方法,并增强了分子渗透性。因此,可以预期该研究将为设计具有分子渗透性的囊泡开辟新的途径,这些囊泡可以在人造细胞和药物递送应用中用作生物催化纳米反应器。

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