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基于激光解吸电离的纳米材料辅助质谱生物医学分析。

Nanomaterial-assisted laser desorption ionization for mass spectrometry-based biomedical analysis.

机构信息

Laboratoire d'Electrochimie Physique et Analytique, Ecole Polytechnique Fédérale de Lausanne, Station 6, CH-1015 Lausanne, Switzerland.

出版信息

Nanomedicine (Lond). 2010 Dec;5(10):1641-52. doi: 10.2217/nnm.10.127.

Abstract

Nanomaterials have been widely used to assist laser desorption ionization of biomolecules for mass spectrometry analysis. Compared with classical matrix-assisted laser desorption ionization, strategies based on nanomaterial-assisted ionization generate a clean background, which is of great benefit for the qualitative and quantitative analysis of small biomolecules, such as therapeutic and diagnostic molecules. As label-free platforms, they have successfully been used for high-throughput enzyme activity/inhibition monitoring and also for tissue imaging to map in situ the distribution of peptides, metabolites and drugs. In addition to widely used porous silicon nanomaterials, gold nanoparticles can be easily chemically modified by thiol-containing compounds, opening novel interesting perspectives. Such functionalized nanoparticles have been used both as probes to extract target molecules and as matrices to assist laser desorption ionization for developing new enzyme immunoassays or for studying DNA hybridization. More recently, semiconductor nanomaterials or quantum dots acting as photosensitive centers to induce in-source redox reactions for proteomics and to investigate biomolecule oxidation for metabolomics have been shown to offer new analytical strategies.

摘要

纳米材料已被广泛用于辅助生物分子的激光解吸电离,以进行质谱分析。与经典的基质辅助激光解吸电离相比,基于纳米材料辅助电离的策略产生干净的背景,这对小生物分子(如治疗和诊断分子)的定性和定量分析非常有利。作为无标记平台,它们已成功用于高通量酶活性/抑制监测,也用于组织成像,以原位映射肽、代谢物和药物的分布。除了广泛使用的多孔硅纳米材料外,金纳米粒子还可以很容易地通过含巯基的化合物进行化学修饰,开辟了新的有趣视角。这些功能化纳米粒子既可用作提取目标分子的探针,也可用作辅助激光解吸电离的基质,以开发新的酶免疫分析方法,或用于研究 DNA 杂交。最近,半导体纳米材料或量子点作为光敏中心,用于诱导蛋白质组学中的源内氧化还原反应,并研究代谢组学中的生物分子氧化,为分析提供了新的策略。

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