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Self-Assembled Surfactant Cyclic Peptide Nanostructures as Stabilizing Agents

机译:自组装表面活性剂环肽纳米结构作为稳定剂

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摘要

A number of cyclic peptides including [FR]4, [FK]4, [WR]4, [CR]4, [AK]4, and [WK]n (n = 3-5) containing L-amino acids were produced using solid-phase peptide synthesis. We hypothesized that an optimal balance of hydrophobicity and charge could generate self-assembled nanostructures in aqueous solution by intramolecular and/or intermolecular interactions. Among all the designed peptides, [WR]n (n = 3-5) generated self-assembled vesicle-like nanostructures at room temperature as shown by transmission electron microscopy (TEM), scanning electron microscopy (SEM), and/or dynamic light scattering (DLS). This class of peptides represents the first report of surfactant-like cyclic peptides that self-assemble into nanostructures. A plausible mechanistic insight into the self-assembly of [WR]5 was obtained by molecular modeling studies. Modified [WR]5 analogues, such as [WMeR]5, [WR(Me)2]5, [WMeR(Me)2]5, and [WdR]5, exhibited different morphologies to [WR]5 as shown by TEM observations. [WR]5 exhibited a significant stabilizing effect for generated silver nanoparticles and glyceraldehyde-3-phosphate dehydrogenase activity. These studies established a new class of surfactant-like cyclic peptides that self-assembled into nanostructures and could have potential applications for the stabilization of silver nanoparticles and protein biomolecules.
机译:产生了许多环肽,包括[L] 4,[FK] 4,[WR] 4,[CR] 4,[AK] 4和[WK] n(n = 3-5)含L-氨基酸采用固相肽合成法。我们假设疏水性和电荷的最佳平衡可以通过分子内和/或分子间的相互作用在水溶液中产生自组装的纳米结构。在所有设计的肽中,[WR] n(n = 3-5)在室温下生成自组装的囊状纳米结构,如透射电子显微镜(TEM),扫描电子显微镜(SEM)和/或动态光所示。散射(DLS)。这类肽代表了自组装成纳米结构的表面活性剂样环状肽的首次报道。通过分子建模研究获得了对[WR] 5自组装的合理的机械学见解。修饰的[WR] 5类似物,例如[WMeR] 5,[WR(Me)2] 5,[WMeR(Me)2] 5和[WdR] 5 ,与[ TEM观察显示WR] 5 。 [WR] 5 对生成的银纳米颗粒和3-磷酸甘油醛脱氢酶活性表现出显着的稳定作用。这些研究建立了一类新的表面活性剂样环状肽,它们自组装成纳米结构,并可能对稳定银纳米颗粒和蛋白质生物分子具有潜在的应用。

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