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Structure-based design of peptides that self-assemble into regular polyhedral nanoparticles

机译:自组装成规则的多面体纳米粒子的肽的基于结构的设计

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Artificial particulate systems such as polymeric beads and liposomes are being applied in drug delivery,drug targeting,antigen display,vaccination,and other technologies.Here we used computer modeling to design a novel type of nanoparticles composed of peptides as building blocks.We verified the computer models via solid-phase peptide synthesis and biophysical analyses.We describe the structure-based design of a novel type of nanoparticles with regular polyhedral symmetry and a diameter of about 16 nm,which self-assembles from single polypeptide chains.Each peptide chain is composed of two coiled coil oligomerization domains with different oligomerization states joined by a short linker segment.In aqueous solution the peptides form nanoparticles of about 16 nm diameter. Such peptide nanoparticles are ideally suited for medical applications such as drug targeting and drug delivery systems,such as imaging devices,or they may be used for repetitive antigen display.
机译:诸如聚合物珠和脂质体之类的人造颗粒系统已应用于药物输送,药物靶向,抗原展示,疫苗接种和其他技术中。在这里,我们使用计算机建模设计了一种新型的由肽组成的纳米颗粒。我们通过固相肽合成和生物物理分析建立计算机模型。我们描述了一种结构新颖的纳米颗粒,其结构规则,多面体对称,直径约16 nm,由单个多肽链自组装而成。由两个具有不同低聚状态的卷曲螺旋低聚结构域组成,这些结构域通过一个短的连接片段连接在一起。在水溶液中,这些肽形成直径约16 nm的纳米颗粒。这样的肽纳米颗粒理想地适合于医学应用,例如药物靶向和药物递送系统,例如成像装置,或者它们可以用于重复性抗原展示。

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