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Translocation of flexible polymersomes across pores at the nanoscale

机译:柔性聚合物小体在纳米级跨孔易位

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摘要

Hierarchical biological systems such as tissues and organs are often characterised by highly crowded and packed environments with nanoscopic interconnections between them. Engineering nanovectors that can penetrate and diffuse across these is critical to ensure enhanced delivery and targeting. Here we demonstrate that flexible polymeric vesicles, known as polymersomes, enable the translocation of large macromolecules across both synthetic and biological porous systems. We compare the translocation across narrow pores of different polymersome formulations. We demonstrate that effective translocation depends on the right combination of mechanical properties and surface lubrication. We prove that with the effect of external gradients (e.g. osmotic pressure, capillarity, hydration, etc.) polymersomes can translocate across pores with diameters one order of magnitude smaller without breaking. We demonstrate that these properties are essential to develop effective tissue penetration and show polymersome mediated transdermal delivery of large macromolecules such as dextran and antibodies using human ex vivo skin.
机译:诸如组织和器官之类的分层生物系统通常以高度拥挤和拥挤的环境为特征,它们之间具有纳米级互连。工程化的纳米载体可以渗透并扩散穿过这些载体,对于确保增强的递送和靶向性至关重要。在这里,我们证明了称为聚合小体的柔性聚合物囊泡能够使大分子跨合成和生物多孔系统转运。我们比较不同聚合物小体制剂的狭窄孔中的易位。我们证明有效的移位取决于机械性能和表面润滑的正确组合。我们证明了在外部梯度的影响下(例如渗透压,毛细作用,水合作用等),聚合物囊泡可以跨直径较小一个数量级的孔移位而不破裂。我们证明了这些特性对于发展有效的组织渗透是必不可少的,并显示了使用人离体皮肤的大分子(例如葡聚糖和抗体)的多聚体介导的透皮递送。

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