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3D Cellular Morphotyping of Scaffold Niches

机译:支架壁ches的3D细胞形态学

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There is currently no method for assessing the nature of the cell niche provided by 3D biomaterial scaffolds. Analyzing human bone marrow stromal cell (hBMSC) 3D cell shape in response to different biomaterial scaffolds allowed the 3D cell niche promoted by biomaterial scaffolds to be evaluated. Primary hBMSCs (p5) were seeded (5,000 cells/cm2) in 10 different biomaterial scaffolds and cultured for 24 h. Samples were fixed and stained for actin and nucleus, imaged with confocal microscopy to obtain a 3D volume (z-stack), and 3D cell shape was analyzed with computational approaches. Over 100 cells were imaged per scaffold group (10 scaffold groups, ~1250 cells total), resulting in the largest known 3D stem cell dataset (~135,000 files, ~135 GB) and enabling a high degree of statistical rigor. The images were segmented using an automated algorithm and a final dataset of 969 well-segmented cells were analyzed with 79 shape metrics, which enabled 3D cellular morphotyping of scaffold niches. The variety of scaffolds studied promoted different cell morphologies during culture and there were significant differences in shape metrics, particularly for cell depth, surface area, and volume. This study demonstrated a quantitative approach to analyze 3D cell shape and morphotype and is the largest known study analyzing 3D cell shape in response to a variety of biomaterial scaffolds. The dataset is publically accessible with an online 3D viewer. These results could inform the selection of prospective scaffolds for applications based on 3D cell shape in the tissue of interest.
机译:当前尚无评估3D生物材料支架提供的细胞生态位性质的方法。分析人类骨髓基质细胞(hBMSC)响应不同生物材料支架的3D细胞形状可以评估由生物材料支架促进的3D细胞生态位。将原代hBMSC(p5)接种(5,000细胞/ cm2)到10种不同的生物材料支架中,并培养24小时。固定样品并进行肌动蛋白和细胞核染色,用共聚焦显微镜成像以获得3D体积(z堆栈),并使用计算方法分析3D细胞形状。每个支架组(10个支架组,总共约1250个细胞)对100多个细胞进行了成像,从而形成了最大的已知3D干细胞数据集(约135,000个文件,约135 GB),并实现了高度的统计严格性。使用自动算法对图像进行分割,并使用79个形状指标对969个细分良好的细胞的最终数据集进行了分析,从而实现了支架壁ches的3D细胞形态分型。所研究的各种支架在培养过程中促进了不同的细胞形态,并且形状指标存在显着差异,尤其是在细胞深度,表面积和体积方面。这项研究展示了一种定量方法来分析3D细胞的形状和形态,是已知的对3D细胞形状进行响应的各种生物材料支架的最大研究。可以使用在线3D查看器公开访问该数据集。这些结果可以为基于目的组织中3D细胞形状的应用选择预期的支架提供信息。

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