Department of Chemistry, Columbia University, New York, NY, 10027, USA.
Department of Chemistry, Cardiff University, Cardiff, CF10 3AT, Wales, UK.
Sci Rep. 2023 Jul 31;13(1):12383. doi: 10.1038/s41598-023-38699-1.
Multicellular tumor spheroids embedded in collagen I matrices are common in vitro systems for the study of solid tumors that reflect the physiological environment and complexities of the in vivo environment. While collagen I environments are physiologically relevant and permissive of cell invasion, studying spheroids in such hydrogels presents challenges to key analytical assays and to a wide array of imaging modalities. While this is largely due to the thickness of the 3D hydrogels that in other samples can typically be overcome by sectioning, because of their highly porous nature, collagen I hydrogels are very challenging to section, especially in a manner that preserves the hydrogel network including cell invasion patterns. Here, we describe a novel method for preparing and cryosectioning invasive spheroids in a two-component (collagen I and gelatin) matrix, a technique we term dual-hydrogel in vitro spheroid cryosectioning of three-dimensional samples (DISC-3D). DISC-3D does not require cell fixation, preserves the architecture of invasive spheroids and their surroundings, eliminates imaging challenges, and allows for use of techniques that have infrequently been applied in three-dimensional spheroid analysis, including super-resolution microscopy and mass spectrometry imaging.
多细胞肿瘤球体嵌入 I 型胶原基质中,是研究实体瘤的常用体外系统,能反映体内生理环境的复杂性。I 型胶原环境与生理相关,并允许细胞浸润,但在这种水凝胶中研究球体对关键分析检测和各种成像模式提出了挑战。虽然这主要是由于 3D 水凝胶的厚度所致,在其他样本中,通常可以通过切片来克服,但由于其高度多孔的性质,I 型胶原水凝胶非常难以切片,特别是在保持水凝胶网络包括细胞浸润模式的方式下。在这里,我们描述了一种在双组分(I 型胶原和明胶)基质中制备和冷冻切片侵袭性球体的新方法,我们将其称为三维样本的双水凝胶体外球体冷冻切片(DISC-3D)。DISC-3D 不需要细胞固定,能保留侵袭性球体及其周围环境的结构,消除成像挑战,并允许使用在三维球体分析中很少应用的技术,包括超分辨率显微镜和质谱成像。