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Liquid Nebulization-Ion Mobility Spectrometry Based Quantification of Nanoparticle-Protein Conjugate Formation

机译:基于液体雾化离子迁移谱的纳米粒子-蛋白质缀合物形成定量

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Despite the importance of examining the formation of nanoparticle protein conjugates, there is a dearth of routine techniques for nanoparticle protein conjugate characterization. The most prominent change to a nanoparticle population upon conjugate formation is a shift in the nanoparticle size distribution function. However, commonly employed dynamic light scattering based approaches for size distribution characterization are ineffective for non-monodisperse samples, and further they are relatively insensitive to size shifts of only several nanometers, which are common during conjugate formation. Conversely, gas phase ion mobility spectrometry (IMS) techniques can be used to reliably examine polydisperse samples, and are sensitive to similar to 1 nm size distribution function shifts; the challenge with IMS is to convert nanoparticle protein conjugates to aerosol particles without bringing about nonspecific aggregation or conjugate formation. Except in limited circumstances, electrospray based aerosolization has proven difficult to apply for this purpose. Here we show that via liquid nebulization (LN) with online, high-flow-rate dilution (with dilution factors up to 10 000) it is possible to aerosolize nanoparticle protein conjugates, enabling IMS measurements of their conjugate size distribution functions. We specifically employ the LN-IMS system to examine bovine serum albumin binding to gold nanoparticles. Inferred maximum protein surface coverages (similar to 0.025 nm(-2)) from measurements are shown to be in excellent agreement with reported values for gold from quartz crystal microbalance measurements. It is also shown that LN-IMS measurements can be used to detect size distribution function shifts on the order of 1 nm, even in circumstances where the size distribution function itself has a standard deviation of similar to 5 nm, In total, the reported measurements suggest that LN-IMS is a potentially simple and robust technique for nanoparticle-protein conjugate characterization.
机译:尽管检查纳米颗粒蛋白缀合物的形成的重要性,但缺乏用于纳米颗粒蛋白缀合物表征的常规技术。在缀合物形成时对纳米粒子群体的最显着变化是纳米粒子尺寸分布函数的变化。然而,通常采用的基于动态光散射的尺寸分布表征方法对非单分散样品无效,而且它们对缀合物形成过程中常见的仅几纳米的尺寸偏移相对不敏感。相反,气相离子迁移谱技术(IMS)可用于可靠地检查多分散样品,并且对类似于1 nm尺寸分布函数的位移敏感。 IMS面临的挑战是将纳米蛋白偶联物转化为气溶胶颗粒,而不会导致非特异性聚集或偶联物形成。除了在有限的情况下,事实证明基于电喷雾的雾化很难用于此目的。在这里,我们显示通过在线高流速稀释液稀释法(LN)(稀释因子高达10000),可以雾化纳米颗粒蛋白偶联物,从而实现IMS测量其偶联物大小分布功能。我们专门采用LN-IMS系统来检查牛血清白蛋白与金纳米颗粒的结合。从测量中推断出的最大蛋白质表面覆盖率(类似于0.025 nm(-2))与石英晶体微量天平测量中所报告的金值非常一致。还显示,即使在尺寸分布函数本身的标准偏差接近5 nm的情况下,LN-IMS测量也可用于检测1 nm量级的尺寸分布函数偏移。提示LN-IMS是用于纳米粒子-蛋白质共轭物表征的潜在简单而强大的技术。

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