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基于聚合物的网格作为支持多层 3D 细胞培养和测定的支架。

Polymer-based mesh as supports for multi-layered 3D cell culture and assays.

机构信息

Department of Chemistry & Chemical Biology, Harvard University, Cambridge, MA 02138, USA.

出版信息

Biomaterials. 2014 Jan;35(1):259-68. doi: 10.1016/j.biomaterials.2013.09.049. Epub 2013 Oct 2.

Abstract

Three-dimensional (3D) culture systems can mimic certain aspects of the cellular microenvironment found in vivo, but generation, analysis and imaging of current model systems for 3D cellular constructs and tissues remain challenging. This work demonstrates a 3D culture system-Cells-in-Gels-in-Mesh (CiGiM)-that uses stacked sheets of polymer-based mesh to support cells embedded in gels to form tissue-like constructs; the stacked sheets can be disassembled by peeling the sheets apart to analyze cultured cells-layer-by-layer-within the construct. The mesh sheets leave openings large enough for light to pass through with minimal scattering, and thus allowing multiple options for analysis-(i) using straightforward analysis by optical light microscopy, (ii) by high-resolution analysis with fluorescence microscopy, or (iii) with a fluorescence gel scanner. The sheets can be patterned into separate zones with paraffin film-based decals, in order to conduct multiple experiments in parallel; the paraffin-based decal films also block lateral diffusion of oxygen effectively. CiGiM simplifies the generation and analysis of 3D culture without compromising throughput, and quality of the data collected: it is especially useful in experiments that require control of oxygen levels, and isolation of adjacent wells in a multi-zone format.

摘要

三维(3D)培养系统可以模拟体内某些细胞微环境的特征,但目前用于 3D 细胞构建体和组织的模型系统的生成、分析和成像仍然具有挑战性。本工作展示了一种 3D 培养系统——细胞凝胶网格(Cells-in-Gels-in-Mesh,CiGiM),该系统使用堆叠的聚合物网格片来支撑嵌入凝胶中的细胞,以形成类似组织的构建体;通过将片层剥离,可以将堆叠的片层拆开,以分析构建体中培养的细胞——逐层分析。网格片留有足够大的开口,使光线能够穿透,同时最小程度地散射,因此为分析提供了多种选择——(i)通过光学显微镜进行简单的分析,(ii)通过荧光显微镜进行高分辨率分析,或(iii)通过荧光凝胶扫描仪进行分析。这些片层可以用基于石蜡膜的贴纸图案化,以便在并行进行多个实验;基于石蜡的贴纸膜还可以有效地阻止氧气的侧向扩散。CiGiM 简化了 3D 培养的生成和分析,而不会影响数据的质量和通量:它在需要控制氧气水平以及以多区格式隔离相邻孔的实验中特别有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc7a/3856254/e639c6cd08c3/nihms530654f1.jpg

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