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纳米电喷雾离子淌度谱与电感耦合等离子体质谱联用用于大分子蛋白质、DNA和纳米颗粒的尺寸分析

Nanoelectrospray ion mobility spectrometry online with inductively coupled plasma-mass spectrometry for sizing large proteins, DNA, and nanoparticles.

作者信息

Carazzone Chiara, Raml Reingard, Pergantis Spiros A

机构信息

Environmental Chemical Processes Laboratory, Department of Chemistry, University of Crete, Voutes, Heraklion, 71003, Crete, Greece.

出版信息

Anal Chem. 2008 Aug 1;80(15):5812-8. doi: 10.1021/ac7025578. Epub 2008 Jun 26.

Abstract

Recently it has been demonstrated that nanoelectrospray (nES) in conjunction with macro-ion mobility spectrometry (macroIMS) and condensed particle detection can be used to size various types of nanoparticles, including large biomolecules (proteins, DNA, etc.), having electrophoretic mobility diameters ranging from 3 nm to well over 100 nm. The technique is extremely sensitive; however, it lacks specificity as a result of the detector used. To explore the possibility to overcome this limitation, we demonstrate the direct coupling of the nES-macroIMS system to an inductively coupled plasma mass spectrometer (ICPMS). Technical challenges involving the coupling of the air-based nES-macroIMS with the argon-based ICPMS are addressed and overcome. The resulting novel hyphenated technique is used to determine the elemental composition of nanoparticles resulting from the electrospraying of solutions containing inorganic salts and acids (CsI and dimethylarsinic acid). Even though the sensitivity of the used ICPMS does not allow for the simultaneous sizing of proteins and the determination of their metal, metalloid, or halogen content, we have shown that it is feasible to detect and accurately size proteins at femtomole levels by adding CsI to their solutions and detecting the resulting Cs adducts. This is also possible with DNA molecules. A linear relationship between protein amount and ICPMS response for (133)Cs(+) is observed, thus hinting at the possibility of further developing the technique for quantitative analysis of large biomolecules.

摘要

最近有研究表明,纳米电喷雾(nES)与宏观离子淌度谱(macroIMS)以及凝聚粒子检测相结合,可用于测定各种类型纳米颗粒的大小,包括电泳淌度直径范围从3纳米到远超100纳米的大型生物分子(蛋白质、DNA等)。该技术极其灵敏;然而,由于所使用的检测器,它缺乏特异性。为探索克服这一局限性的可能性,我们展示了将nES - macroIMS系统直接与电感耦合等离子体质谱仪(ICPMS)联用。解决并克服了将基于空气的nES - macroIMS与基于氩气的ICPMS联用所涉及的技术挑战。由此产生的新型联用技术用于测定由含有无机盐和酸(碘化铯和二甲基胂酸)的溶液电喷雾产生的纳米颗粒的元素组成。尽管所使用的ICPMS的灵敏度不允许同时测定蛋白质大小及其金属、类金属或卤素含量,但我们已表明,通过向蛋白质溶液中添加碘化铯并检测产生的铯加合物,在飞摩尔水平检测和准确测定蛋白质大小是可行的。DNA分子也可以做到这一点。观察到蛋白质含量与ICPMS对(133)Cs(+)的响应之间存在线性关系,因此暗示了进一步开发该技术用于大型生物分子定量分析的可能性。

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