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Presenting Precision Glycomacromolecules on Gold Nanoparticles for Increased Lectin Binding

机译:在金纳米粒子上提出精密糖脂大分子以增加凝集素结合。

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Glyco-functionalized gold nanoparticles have great potential as biosensors and as inhibitors due to their increased binding to carbohydrate-recognizing receptors such as the lectins. Here we apply previously developed solid phase polymer synthesis to obtain a series of precision glycomacromolecules that allows for straightforward variation of their chemical structure as well as functionalization of gold nanoparticles by ligand exchange. A novel building block is introduced allowing for the change of spacer building blocks within the macromolecular scaffold going from an ethylene glycol unit to an aliphatic spacer. Furthermore, the valency and overall length of the glycomacromolecule is varied. All glyco-functionalized gold nanoparticles show high degree of functionalization along with high stability in buffer solution. Therefore, a series of measurements applying UV-Vis spectroscopy, dynamic light scattering (DLS) and surface plasmon resonance (SPR) were performed studying the aggregation behavior of the glyco-functionalized gold nanoparticles in presence of model lectin Concanavalin A. While the multivalent presentation of glycomacromolecules on gold nanoparticles (AuNPs) showed a strong increase in binding compared to the free ligands, we also observed an influence of the chemical structure of the ligand such as its valency or hydrophobicity on the resulting lectin interactions. The straightforward variation of the chemical structure of the precision glycomacromolecule thus gives access to tailor-made glyco-gold nanoparticles (glyco-AuNPs) and fine-tuning of their lectin binding properties.
机译:糖基官能化的金纳米颗粒由于其与碳水化合物识别受体(如凝集素)的结合增加,具有作为生物传感器和抑制剂的巨大潜力。在这里,我们应用先前开发的固相聚合物合成方法,获得了一系列精密的糖大分子,这些糖大分子允许其化学结构的直接变化以及通过配体交换对金纳米颗粒进行功能化。引入了一种新颖的结构单元,该结构单元允许在大分子支架内将间隔物结构单元从乙二醇单元变为脂族间隔物。此外,糖大分子的化合价和总长度是变化的。所有糖官能化的金纳米颗粒在缓冲溶液中均显示出高度的官能化以及高稳定性。因此,在模型凝集素伴刀豆球蛋白A存在的情况下,进行了一系列使用UV-Vis光谱,动态光散射(DLS)和表面等离子体共振(SPR)的研究,研究了糖官能化金纳米颗粒的聚集行为。与游离配体相比,糖大分子在金纳米颗粒(AuNPs)上的结合力显着增加,我们还观察到配体化学结构(例如其价键或疏水性)对所得凝集素相互作用的影响。因此,精确的糖大分子的化学结构的直接变化使人们可以使用特制的糖金纳米颗粒(glyco-AuNPs),并微调其凝集素结合特性。

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