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Polypeptide folding-mediated tuning of the optical and structural properties of gold nanoparticle assemblies

机译:多肽折叠介导的金纳米粒子组件的光学和结构性质调节

摘要

Responsive hybrid nanomaterials with well-defined properties are of significant interest for the development of biosensors with additional applications in tissue engineering and drug delivery. Here, we present a detailed characterization using UV-vis spectroscopy and small angle X-ray scattering of a hybrid material comprised of polypeptide-decorated gold nanoparticles with highly controllable assembly properties. The assembly is triggered by a folding-dependent bridging of the particles mediated by the heteroassociation of immobilized helix-loop-helix polypeptides and a complementary nonlinear polypeptide present in solution. The polypeptides are de novo designed to associate and fold into a heterotrimeric complex comprised of two disulfide-linked four-helix bundles. The particles form structured assemblies with a highly defined interparticle gap (4.8 ± 0.4 nm) that correlates to the size of the folded polypeptides. Transitions in particle aggregation dynamics, mass-fractal dimensions and ordering, as a function of particle size and the concentration of the bridging polypeptide, are observed; these have significant effects on the optical properties of the assemblies. The assembly and ordering of the particles are highly complex processes that are affected by a large number of variables including the number of polypeptides bridging the particles and the particle mobility within the aggregates. A fundamental understanding of these processes is of paramount interest for the development of novel hybrid nanomaterials with tunable structural and optical properties and for the optimization of nanoparticle-based colorimetric biodetection strategies. © 2011 American Chemical Society.
机译:具有明确定义的特性的响应性混合纳米材料对于生物传感器的开发具有重大意义,并在组织工程和药物输送中有更多应用。在这里,我们提出了使用紫外可见光谱和小角度X射线散射的杂化材料的详细表征,杂化材料由多肽修饰的金纳米颗粒组成,具有高度可控的组装特性。通过由溶液中存在的固定的螺旋-环-螺旋多肽和互补的非线性多肽的异缔合介导的颗粒的折叠依赖性桥接来触发组装。从头设计多肽,以结合并折叠成由两个二硫键连接的四螺旋束组成的异三聚体复合物。颗粒形成具有高度定义的颗粒间间隙(4.8±0.4 nm)的结构化装配体,该间隙与折叠的多肽的大小相关。观察到颗粒聚集动力学,质量分数维和有序性随颗粒大小和桥联多肽浓度的变化。这些对组件的光学性能有重大影响。颗粒的组装和排序是非常复杂的过程,受许多变量影响,这些变量包括桥接颗粒的多肽数量和聚集体中的颗粒迁移率。对这些过程的基本理解对于开发具有可调结构和光学特性的新型杂化纳米材料以及优化基于纳米粒子的比色生物检测策略至关重要。 ©2011美国化学学会。

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