Hexagon Bio, 1505 Adams Drive, Suite A, Menlo Park, CA 94025, USA.
Department of Pharmaceutical Sciences, University of Illinois at Chicago, 833 S Wood St, Chicago, IL 60612, USA,
Nat Prod Rep. 2020 Feb 26;37(2):150-162. doi: 10.1039/c9np00038k.
Covering: 2009-2019 Over the last decade, methods in imaging mass spectrometry (IMS) have progressively improved and diversified toward a variety of applications in natural products research. Because IMS allows for the spatial mapping of the production and distribution of biologically active molecules in situ, it facilitates phenotype and organelle driven discovery efforts. As practitioners of IMS for natural products discovery, we find one of the most important aspects of these experiments is the sample preparation and compatibility with different ionization sources that are available to a given researcher. As such, we have focused this mini review to cover types of ionization sources that have been used in natural products discovery applications and provided concrete examples of use for natural products discovery while discussing the advantages and limitations of each method. We aim for this article to serve as a resource to guide the broader natural product community interested in IMS toward the application/method that would best serve their natural product discovery needs given the sample and analyte(s) of interest. This mini review has been limited to applications using natural products and thus is not exhaustive of all possible ionization methods which have only been applied to image other types of samples such as mammalian tissues. Additionally, we briefly review how IMS has been coupled with other imaging platforms, such as microscopy, to enhance information outputs as well as offer our future perspectives on the incorporation of IMS in natural products discovery.
2009-2019 年 在过去的十年中,成像质谱(IMS)方法不断改进和多样化,应用于天然产物研究的各种领域。由于 IMS 允许原位映射生物活性分子的产生和分布的空间,它促进了表型和细胞器驱动的发现工作。作为 IMS 在天然产物发现中的实践者,我们发现这些实验中最重要的方面之一是样品制备和与特定研究人员可用的不同离子源的兼容性。因此,我们专注于这篇综述,涵盖了已用于天然产物发现应用的各种离子源类型,并在讨论每种方法的优缺点的同时提供了使用天然产物发现的具体示例。我们希望本文能够作为资源,指导更广泛的对 IMS 感兴趣的天然产物界,根据感兴趣的样本和分析物,选择最适合其天然产物发现需求的应用/方法。本文综述仅限于使用天然产物的应用,因此并非所有可能的离子化方法都详尽无遗,这些方法仅应用于其他类型的样本成像,如哺乳动物组织。此外,我们简要回顾了 IMS 如何与其他成像平台(如显微镜)相结合,以增强信息输出,并提供我们对 IMS 在天然产物发现中的应用的未来展望。