Université Grenoble Alpes, Grenoble, F-38000, France.
Commissariat à l'énergie atomique et aux énergies alternatives, Laboratoire d'électronique et de technologie de l'information, Grenoble, F-38054, France.
Sci Rep. 2018 Oct 31;8(1):16135. doi: 10.1038/s41598-018-34253-6.
Thanks to a novel three-dimensional imaging platform based on lens-free microscopy, it is possible to perform multi-angle acquisitions and holographic reconstructions of 3D cell cultures directly into the incubator. Being able of reconstructing volumes as large as 5 mm over a period of time covering several days, allows us to observe a broad range of migration strategies only present in 3D environment, whether it is single cell migration, collective migrations of cells and dispersal of cells. In addition we are able to distinguish new interesting phenomena, e.g. large-scale cell-to-matrix interactions (>1 mm), fusion of cell clusters into large aggregate (10,000 µm) and conversely, total dissociation of cell clusters into clumps of migrating cells. This work on a novel 3D + time lens-free microscopy technique thus expands the repertoire of phenomena that can be studied within 3D cell cultures.
得益于基于无透镜显微镜的新型三维成像平台,现在可以直接在培养箱中对 3D 细胞培养物进行多角度采集和全像重构。该平台能够在数天的时间内重建长达5mm 的体积,使我们能够观察到广泛的迁移策略,这些策略仅存在于 3D 环境中,无论是单细胞迁移、细胞的集体迁移还是细胞的分散。此外,我们还能够区分新的有趣现象,例如大规模的细胞-基质相互作用(>1mm)、细胞簇融合成大聚集体(10,000μm),以及相反的,细胞簇完全解离成迁移细胞的团块。这项关于新型 3D+时间无透镜显微镜技术的工作因此扩展了可以在 3D 细胞培养物中研究的现象范围。