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通过对新鲜冷冻组织样本进行通用制备来实现形态和分子的保存,以适用于多模式成像工作流程。

Morphological and molecular preservation through universal preparation of fresh-frozen tissue samples for multimodal imaging workflows.

机构信息

Imaging and Data analytics, Clinical Pharmacology and Safety Sciences, R&D, AstraZeneca, Cambridge, UK.

Department of Digestion, Metabolism and Reproduction, Sir Alexander Fleming Building, Imperial College London, London, UK.

出版信息

Nat Protoc. 2024 Sep;19(9):2685-2711. doi: 10.1038/s41596-024-00987-z. Epub 2024 May 28.

Abstract

The landscape of tissue-based imaging modalities is constantly and rapidly evolving. While formalin-fixed, paraffin-embedded material is still useful for histological imaging, the fixation process irreversibly changes the molecular composition of the sample. Therefore, many imaging approaches require fresh-frozen material to get meaningful results. This is particularly true for molecular imaging techniques such as mass spectrometry imaging, which are widely used to probe the spatial arrangement of the tissue metabolome. As high-quality fresh-frozen tissues are limited in their availability, any sample preparation workflow they are subjected to needs to ensure morphological and molecular preservation of the tissues and be compatible with as many of the established and emerging imaging techniques as possible to obtain the maximum possible insights from the tissues. Here we describe a universal sample preparation workflow, from the initial step of freezing the tissues to the cold embedding in a new hydroxypropyl methylcellulose/polyvinylpyrrolidone-enriched hydrogel and the generation of thin tissue sections for analysis. Moreover, we highlight the optimized storage conditions that limit molecular and morphological degradation of the sections. The protocol is compatible with human and plant tissues and can be easily adapted for the preparation of alternative sample formats (e.g., three-dimensional cell cultures). The integrated workflow is universally compatible with histological tissue analysis, mass spectrometry imaging and imaging mass cytometry, as well as spatial proteomic, genomic and transcriptomic tissue analysis. The protocol can be completed within 4 h and requires minimal prior experience in the preparation of tissue samples for multimodal imaging experiments.

摘要

组织成像模式的格局正在不断快速发展。虽然福尔马林固定、石蜡包埋的材料仍然可用于组织学成像,但固定过程会不可逆地改变样本的分子组成。因此,许多成像方法需要使用新鲜冷冻的材料才能获得有意义的结果。这对于质谱成像等分子成像技术来说尤其如此,这些技术广泛用于探测组织代谢组的空间排列。由于高质量的新鲜冷冻组织的可用性有限,因此它们所经历的任何样品制备工作流程都需要确保组织的形态和分子保存,并尽可能与已建立和新兴的成像技术兼容,以从组织中获得最大的见解。在这里,我们描述了一种通用的样品制备工作流程,从冷冻组织的初始步骤到用富含羟丙基甲基纤维素/聚乙烯吡咯烷酮的新型水凝胶冷包埋,以及生成用于分析的薄组织切片。此外,我们还强调了优化的储存条件,可以限制切片的分子和形态降解。该方案与人类和植物组织兼容,并且可以轻松适应替代样品格式的制备(例如,三维细胞培养物)。集成的工作流程与组织学分析、质谱成像和成像质谱细胞术以及空间蛋白质组学、基因组学和转录组学组织分析完全兼容。该方案可以在 4 小时内完成,并且在为多模式成像实验准备组织样品方面需要最少的前期经验。

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