金属稳定同位素标记和元素质谱法在生物大分子分析中的应用。

Ping Zhang, Ying Han, Yue Xu, Liang Gao
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引用次数: 0

摘要

包括蛋白质和核酸在内的生物大分子在维持生物系统的正常功能方面发挥着关键和不可替代的作用。通过将金属稳定同位素标记与元素质谱相结合,研究人员可以量化复杂生物系统中特定生物大分子的数量和空间分布。本文首先综述了探针的分类和金属稳定同位素标记策略。其次,介绍了电感耦合等离子体质谱和二次离子体质谱等元素质谱技术的技术特点和工作原理,实现了对多种生物大分子在分子、细胞和组织水平的高灵敏度检测。最后,我们强调了元素质谱结合金属稳定同位素标记策略的优点和局限性,并对未来的发展提出了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of metal stable isotopes labeling and elemental mass spectrometry for biomacromolecule profiling.

Biomacromolecules including proteins and nucleic acids are widely recognized for their pivotal and irreplaceable role in maintaining the normal functions of biological systems. By combining metal stable isotope labeling with elemental mass spectrometry, researchers can quantify the amount and track the spatial distribution of specific biomacromolecules in complex biological systems. In this review, the probes classification and metal stable isotope labeling strategies are initially summarized. Secondly, the technical characteristics and working principle of the elemental mass spectrometry techniques including inductively coupled plasma mass spectrometry and secondary ion mass spectrometry are introduced to achieve highly sensitive detection of multiple biomacromolecules at molecular, cellular and tissue levels. Lastly, we underline the advantages and limitations of elemental mass spectrometry combined with metal stable isotope labeling strategies, and propose the perspectives for future developments.

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