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Corona Isolation Method Matters: Capillary Electrophoresis Mass Spectrometry Based Comparison of Protein Corona Compositions Following On-Particle versus In-Solution or In-Gel Digestion

机译:电晕隔离方法很重要:基于毛细管电泳质谱的蛋白质电晕成分在溶液中与溶液中或凝胶中消化后的比较

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摘要

Increased understanding of the role of the nanomaterial protein corona in driving nanomaterial uptake into, and impacts on, cells and organisms, and the consequent need for characterization of the corona, has led to a flourishing of methods for isolation and analysis of the constituent proteins over the past decade. However, despite over 700 corona studies to date, very little is understood in terms of which methods provide the most precise and comprehensive characterization of the corona. With the increasing importance of the modeling of corona formation and its correlation with biological impacts, it is timely to properly characterize and validate the isolation approaches used to determine the protein corona. The current work introduces Capillary Electrophoresis with Electro Spray Ionization Mass Spectrometry (CESI-MS) as a novel method for protein corona characterizations and develops an on-particle tryptic digestion method, comparing peptide solubilization solutions and characterizing the recovery of proteins from the nanomaterial surface. The CESI-MS was compared to the gold standard nano-LC-MS for corona analysis and maintained a high degree of reproducibility, while increasing throughput by >3-fold. The on-particle digestion is compared to an in-solution digestion and an in-gel digestion of the protein corona. Interestingly, a range of different protein classes were found to be recovered to greater or lesser extents among the different methods. Apolipoproteins were detected at lower concentrations when a surfactant was used to solubilize peptides, whereas immunoglobulins in general have a high affinity for nanomaterials, and thus show lower recovery using on-particle digestion. The optimized on-particle digestion was validated using 6 nanomaterials and proved capable of recovering in excess of 97% of the protein corona. These are important factors to consider when designing corona studies and modeling corona formation and impacts, highlighting the significance of a comprehensive validation of nanomaterial corona analysis methods.
机译:对纳米材料蛋白质电晕在驱动纳米材料摄取和影响细胞和有机体中的作用的日益加深的了解,以及随之而来的对电晕物质表征的需求,导致了分离和分析组成蛋白的方法蓬勃发展。在过去的十年中。然而,尽管迄今为止进行了700多次电晕研究,但对于哪种方法能够提供最精确,最全面的电晕表征,人们了解甚少。随着电晕形成建模及其与生物学影响的相关性的重要性日益提高,应及时适当地表征和验证用于确定蛋白质电晕的分离方法。当前的工作介绍了电喷雾电离质谱毛细管电泳(CESI-MS)作为蛋白质电晕表征的新方法,并开发了一种颗粒上的胰蛋白酶消化方法,比较了肽溶解溶液并表征了从纳米材料表面回收蛋白质的特性。将CESI-MS与金标准纳米LC-MS进行了电晕分析比较,并保持了较高的重现性,同时将通量提高了3倍以上。将粒子内消化与蛋白质电晕的溶液内消化和凝胶内消化进行比较。有趣的是,在不同的方法中,发现一定范围的不同蛋白质类别或多或少地被回收。当使用表面活性剂溶解肽时,载脂蛋白的浓度较低,而免疫球蛋白通常对纳米材料具有较高的亲和力,因此使用颗粒消化显示出较低的回收率。使用6种纳米材料对优化的颗粒消化进行了验证,并证明其能够回收超过97%的蛋白质电晕。这些是设计电晕研究和对电晕形成和影响进行建模时要考虑的重要因素,从而突出了对纳米材料电晕分析方法进行全面验证的重要性。

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