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Atomic spectrometry and atomic mass spectrometry in bioanalytical chemistry

机译:生物分析化学中的原子光谱法和原子质谱

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Atomic spectrometry and atomic mass spectrometric (MS) techniques have been playing crucial roles in the field of biosciences. They detect elements with relatively high sensitivities and are thus applicable to a wide range of analytical targets. In the past decade, determination of bio-relevant metallic elements continues to be of interest, while particularly noteworthy are methods developed for small molecules, peptides, proteins, nucleic acids and even cells that well exploited the bio-analytical strengths of atomic spectrometry and atomic MS, either in a direct or indirect manner. Quantitation, as well as speciation and imaging analyses are all involved. The present review aims to assimilate recent advances in bio-analysis utilizing atomic spectrometry and atomic MS, primarily covering the period of 2013-2018, in an attempt to provide readers insight into the developing trends of this research frontier. Followed by concluding remarks and perspectives, the applications are divided into the following four catalogs: (i) toxicologically important metal-containing species, with an emphasis on quantitative and imaging analysis; (ii) quantitation of biomolecules using naturally occurring heteroatoms; (iii) exogenous metal ion or nanoparticle tagging-based strategies in bioassays; and (iv) label-free detection of biomolecules.
机译:原子光谱法和原子质谱(MS)技术在生物学领域一直在发挥至关重要的作用。它们检测具有相对高灵敏度的元素,因此适用于各种分析靶标。在过去的十年中,生物相关金属元素的确定仍然存在感兴趣的,而特别值得注意的是为小分子,肽,蛋白质,核酸和甚至细胞开发的方法,该方法很好地利用原子光谱法和原子的生物分析强度MS,无论是直接还是间接的方式。所有涉及量化,以及物种和成像分析。本综述旨在利用原子光谱和原子MS的生物分析中的最近进步,主要涵盖2013 - 2018年的原子MS,以便为读者深入了解这项研究前沿的发展趋势。其次是结束评论和观点,申请分为以下四种目录:(i)毒理学上重要的金属物种,重点是定量和成像分析; (ii)使用天然存在的杂原子进行生物分子的定量; (iii)生物测定中的外源金属离子或基于纳米粒子标记的策略; (iv)无标记的生物分子检测。

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