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Control of Colloid Surface Chemistry through Matrix Confinement: Facile Preparation of Stable Antibody Functionalized Silver Nanoparticles

机译:通过基质限制控制胶体表面化学:稳定的抗体功能化的银纳米粒子的简便制备。

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摘要

Here we describe a simple yet efficient gel-matrix-assisted preparation method that improves synthetic control over the interface between inorganic nanomaterials and biopolymers and yields stable biofunctionalized silver nanoparticles. Covalent functionalization of the noble metal surface is aided by the confinement of polyethylene glycol acetic acid functionalized silver nanoparticles in thin slabs of a 1 % agarose gel. The gel-confined nanoparticles can be transferred between reaction and washing media simply by immersing the gel slab in the solution of interest. The agarose matrix retains nanoparticles but is swiftly penetrated by the antibodies of interest. The antibodies are covalently anchored to the nanoparticles using conventional cross-linking strategies, and the resulting antibody functionalized nanoparticles are recovered from the gel through electroelution. We demonstrate the efficacy of this nanoparticle functionalization approach by labeling specific receptors on cellular surfaces with functionalized silver nanoparticles that are stable under physiological conditions.
机译:在这里,我们描述了一种简单而有效的凝胶基质辅助制备方法,该方法改善了对无机纳米材料与生物聚合物之间界面的合成控制,并产生了稳定的生物功能化银纳米颗粒。贵金属表面的共价官能化通过将聚乙二醇乙酸官能化的银纳米颗粒限制在1%琼脂糖凝胶的薄板中来进行。只需将凝胶平板浸入目标溶液中,即可将凝胶限定的纳米颗粒在反应介质和洗涤介质之间转移。琼脂糖基质保留纳米颗粒,但很快被目标抗体穿透。使用常规的交联策略将抗体共价锚定在纳米颗粒上,然后通过电洗脱从凝胶中回收得到的抗体官能化纳米颗粒。我们通过用在生理条件下稳定的功能化银纳米粒子标记细胞表面上的特定受体,证明了这种纳米粒子功能化方法的功效。

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