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Multivariate analysis reveals activation-primed fibroblast geometric states in engineered 3D tumor microenvironments

机译:多变量分析揭示了工程化3D肿瘤微环境中的活化 - 灌注的成纤维细胞几何状态

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摘要

Fibroblasts are a heterogeneous group of cells comprising subpopulations that have been found to be activated in the stromal microenvironment that regulates tumor initiation and growth. The underlying mechanisms of such selective activation of fibroblasts are not understood. We propose that the intrinsic geometric heterogeneity of fibroblasts modulates the nuclear mechanotransduction of signals from the microenvironment, resulting in their selective activation. To test this, we developed an engineered 3D fibroblast tumor coculture system and used high resolution images to quantify multiple cell geometry sensitive nuclear morphological and chromatin organizational features. These features were then mapped to activation levels as measured by the nuclear abundance of transcription cofactor, megakaryoblastic leukemia, and protein levels of its target, alpha SMA. Importantly, our results indicate the presence of activation-"primed" cell geometries that present higher activation levels, which are further enhanced in the presence of stimuli from cancer cells. Further, we show that by enriching the population of activation-primed cell geometric states by either increasing matrix rigidity or micropatterning primed cell shapes, fibroblast activation levels can be increased. Collectively, our results reveal important cellular geometric states that select for fibroblast activation within the heterogenous tumor microenvironment.
机译:成纤维细胞是包含已经发现在调节肿瘤引发和生长的基质微环境中被激活的群体的异质细胞组。不理解这种选择性激活的潜在机制。我们提出了成纤维细胞的内在几何异质性调节来自微环境的信号核电机组,从而产生它们的选择性活化。为了测试这一点,我们开发了一种工程化的3D成纤维细胞肿瘤共培养系统,并使用了高分辨率图像来量化多个细胞几何敏感核形态和染色质组织特征。然后将这些特征映射到通过核丰富的转录辅因子,巨核细胞白血病和其目标的蛋白质水平测量的激活水平,αSMA。重要的是,我们的结果表明存在具有较高激活水平的激活 - “灌注”细胞几何形状,其在癌细胞的刺激存在下进一步增强。此外,我们表明,通过通过增加基质刚性或微型分析细胞形状来富集激活 - 灌注细胞几何状态,可以增加成纤维细胞活化水平。统称,我们的结果揭示了重要的细胞几何状态,可在异常肿瘤微环境内选择成纤维细胞活化。

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