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Droplet microarrays for cell culture: effect of surface properties and nanoliter culture volume on global transcriptomic landscape

机译:用于细胞培养的液滴微阵列:表面性质和纳米培养物对全局转录组景观的影响

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摘要

The development of novel chemically developed and physically defined surfaces and environments for cell culture and screening is important for various biological applications. The Droplet microarray (DMA) platform based on hydrophilic-superhydrophobic patterning enables high-throughput cellular screening in nanoliter volumes and on various biocompatible surfaces. Here we performed phenotypic and transcriptomic analysis of HeLa-CCL2 cells cultured on DMA, with a goal to analyze cellular response on different surfaces and culture volumes down to 3 nL, compared with conventional cell culture platforms. Our results indicate that cells cultured on four tested substrates: nanostructured nonpolymer, rough and smooth variants of poly(2-hydroxyethyl methacrylate-co-ethylene dimethacrylate) polymer and poly(thioether) dendrimer are compatible with cells grown in Petri dish. Cells cultured on nanostructured nonpolymer coating exhibited the closet transcriptomic resemblance to that of cells grown in Petri dish. Analysis of cells cultured in 100, 9, and 3 nL media droplets on DMA indicated that all but cells grown in 3 nL volumes had unperturbed viability with minimal alterations in the transcriptome compared with 96-well plate. Our findings demonstrate the applicability of DMA for cell-based assays and highlight the possibility of establishing regular cell culture on various biomaterial-coated substrates and in nanoliter volumes, along with routinely used cell culture platforms.
机译:新型化学发育和物理定义的表面和细胞培养和筛选环境的开发对于各种生物应用很重要。基于亲水性 - 超疏水图案的液滴微阵列(DMA)平台使纳米凝胶体积和各种生物相容性表面的高通量蜂窝筛选能够。在这里,与常规细胞培养平台相比,我们对DMA培养的HelA-CCl2细胞进行了对培养的Hela-CCl2细胞的表型和转录组分析,与常规细胞培养平台相比,分析在不同表面和培养体积上的细胞反应。我们的结果表明,在四个测试的底物上培养的细胞:聚(2-羟乙基甲基丙烯酸酯 - 共乙烯二甲基丙烯酸酯)聚合物和聚(硫醚)树枝状聚合物的纳米结构的非聚合物,粗糙和光滑的变体与在培养皿中生长的细胞相容。在纳米结构非聚合物涂层上培养的细胞表现出佩特特·转录组与在培养皿中生长的细胞的转录组相似性。 DMA上100,9和3个NL培养基液滴培养的细胞分析表明,与96孔板相比,3nL体积中生长的所有细胞在转录组中具有最小的改变。我们的研究结果证明了DMA对基于细胞的测定的适用性,并突出了在各种生物材料涂覆的基材和纳米凝胶体积上建立常规细胞培养的可能性以及常规使用的细胞培养平台。

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