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首页> 外文期刊>Combinatorial Chemistry & High Throughput Screening >Editorial [Hot Topic: New Frontiers in Biological Mass Spectrometry(Guest Editor: Francesco L. Brancia)]
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Editorial [Hot Topic: New Frontiers in Biological Mass Spectrometry(Guest Editor: Francesco L. Brancia)]

机译:社论[热门话题:生物质谱的新领域(来宾编辑:Francesco L. Brancia)]

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摘要

Although rooted in physics, today mass spectrometry (MS) has become an irreplaceable tool for scientists to study the mechanisms of elemental and molecular processes occurring in nature. Due to novel MS configurations and ionisation methods, the last two decades have witnessed rapid and extensive utilisation of mass spectrometry for qualitative and quantitative purposes. Among several research fields, combinatorial chemistry has benefited from the latest MS developments by providing innovative approaches for structural characterisation of library components. However, the high sensitivity required to detect low abundance biomolecular species together with the high mass accuracy/resolving power necessary for enhancing selectivity in analysis still represent major challenges for any new development in mass spectrometry. In addition, advances in mass analysers and hardware configurations together with novel ionisation methods must also be followed by improvements in software at both the control and processing levels. Only then, more robust mass spectrometers with higher levels of automation and throughput can be delivered.nnThrough the reviews appearing in this special issue of Combinatorial Chemistry & High Throughput Screening, we summarise the state-of-art of biological mass spectrometry. This issue brings together scientific leaders in their disciplines who approach the problems arising in mass spectrometry from different perspectives and provides a clear picture of instrumentation and applications in MS including advantages and limitations for the analysis of biomolecules.nnIn the review by Sara Crotti and Pietro Traldi, principles of the novel atmospheric pressure ionisation techniques DESI and SACI are described including their relevance for drug analysis and metabolic profiling. Recent developments in time-of-flight (ToF) geometries for MALDI tandem mass spectrometry are reviewed by Ernst Pittenauer and Gunter Allmaier highlighting the most recent applications with various biomolecules. Simona Francese and collaborators offer a thorough summary of MALDI profiling and imaging mass spectrometry for biological tissue analysis. The impact on peptide sequencing using gas-phase fragmentation of post-translationally modified and derivatized peptides during multistage tandem mass spectrometry are addressed in the review by Jennifer Froelich and Gavin Reid. Hyphenation with liquid chromatography and the most recent developments in microanoliquid chromatography interfaced with MALDI and electrospray ionisation for proteomics applications are discussed in the review by Jessica Bereszczak and Francesco Brancia. James Wright and Simon Hubbard summarise the current challenges that bioinformatics must tackle due to the high volume of complex data generated from large scale proteomics experiments. The current mass spectrometry based methods in being used to understand and characterise noncovalent protein complexes by means of electrospray ionisation are discussed by Bryan McCullogh and Simon Gaskell. Finally William Griffiths and Yuqin Wang present an overview on steroidomics in the study of neurodegenerative disease and ageing from a mass spectrometry perspective.nnAs reported here, mass spectrometry is growing rapidly towards new directions especially for peptide/protein analysis and related research fields. This special issue provides a detailed depiction of developments/applications in mass spectrometry, which can subsequently be applied to enhance drug target identification.
机译:尽管质谱学扎根于物理学,但如今它已成为科学家研究自然界中元素和分子过程机理的不可替代的工具。由于新颖的质谱配置和电离方法,近二十年来目睹了质谱在定性和定量方面的快速和广泛利用。在几个研究领域中,组合化学通过提供用于文库组分的结构表征的创新方法,得益于MS的最新发展。但是,检测低丰度生物分子种类所需的高灵敏度以及增强分析选择性所需的高质量精度/分辨能力仍然代表着质谱学任何新发展的主要挑战。此外,在质量分析仪和硬件配置的进步以及新颖的电离方法之后,还必须在控制和处理水平上改进软件。只有这样,才能交付具有更高自动化和通量水平的更强大的质谱仪。通过本期《组合化学与高通量筛选》特刊中的评论,我们总结了生物质谱的最新技术。本期杂志汇集了其学科的科学领导者,他们从不同的角度探讨了质谱法中出现的问题,并为MS的仪器和应用提供了清晰的图像,包括生物分子分析的优势和局限。 ,描述了新型大气压电离技术DESI和SACI的原理,包括它们与药物分析和代谢谱分析的相关性。 Ernst Pittenauer和Gunter Allmaier回顾了MALDI串联质谱的飞行时间(ToF)几何形状的最新进展,重点介绍了各种生物分子的最新应用。 Simona Francese和合作者全面概述了用于生物组织分析的MALDI分析和成像质谱。 Jennifer Froelich和Gavin Reid在评论中谈到了在多级串联质谱分析中使用气相翻译后修饰和衍生化肽段的气相片段化对肽段测序的影响。 Jessica Bereszczak和Francesco Brancia在综述中讨论了液相色谱联用技术以及与MALDI和电喷雾电离技术联用的微/纳液相色谱技术的最新进展。 James Wright和Simon Hubbard总结了由于大规模蛋白质组学实验产生的大量复杂数据,生物信息学必须应对的当前挑战。 Bryan McCullogh和Simon Gaskell讨论了当前基于质谱的方法,该方法用于通过电喷雾电离来理解和表征非共价蛋白复合物。最后,威廉·格里菲斯(William Griffiths)和王玉琴(Wang Yuqin Wang)从质谱学的角度对神经退行性疾病和衰老研究中的类固醇组学进行了概述。本特刊详细描述了质谱学的发展/应用,随后可将其用于增强药物靶标的识别。

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