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A Computer-Assisted 3D Model for Analyzing the Aggregation of Tumorigenic Cells Reveals Specialized Behaviors and Unique Cell Types that Facilitate Aggregate Coalescence

机译:用于分析致瘤细胞聚集的计算机辅助3D模型显示了专门的行为和独特的细胞类型有助于聚集

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摘要

We have developed a 4D computer-assisted reconstruction and motion analysis system, J3D-DIAS 4.1, and applied it to the reconstruction and motion analysis of tumorigenic cells in a 3D matrix. The system is unique in that it is fast, high-resolution, acquires optical sections using DIC microscopy (hence there is no associated photoxicity), and is capable of long-term 4D reconstruction. Specifically, a z-series at 5 μm increments can be acquired in less than a minute on tissue samples embedded in a 1.5 mm thick 3D Matrigel matrix. Reconstruction can be repeated at intervals as short as every minute and continued for 30 days or longer. Images are converted to mathematical representations from which quantitative parameters can be derived. Application of this system to cancer cells from established lines and fresh tumor tissue has revealed unique behaviors and cell types not present in non-tumorigenic lines. We report here that cells from tumorigenic lines and tumors undergo rapid coalescence in 3D, mediated by specific cell types that we have named “facilitators” and “probes.” A third cell type, the “dervish”, is capable of rapid movement through the gel and does not adhere to it. These cell types have never before been described. Our data suggest that tumorigenesis in vitro is a developmental process involving coalescence facilitated by specialized cells that culminates in large hollow spheres with complex architecture. The unique effects of select monoclonal antibodies on these processes demonstrate the usefulness of the model for analyzing the mechanisms of anti-cancer drugs.
机译:我们已经开发了4D计算机辅助重建和运动分析系统J3D-DIAS 4.1,并将其应用于3D矩阵中致瘤细胞的重建和运动分析。该系统的独特之处在于它快速,高分辨率,使用DIC显微镜(因此没有相关的光致毒性)来获取光学切片,并且能够进行长期4D重建。具体而言,可以在不到一分钟的时间内从嵌入1.5 mm厚的3D Matrigel基质中的组织样本中以5μm的增量获得z系列。重建可以每分钟的间隔重复一次,并持续30天或更长时间。将图像转换为数学表示形式,可以从中得出定量参数。该系统对来自已建立的系和新鲜肿瘤组织的癌细胞的应用已经揭示了非致瘤系中不存在的独特行为和细胞类型。我们在这里报告说,致癌系和肿瘤中的细胞在3D中快速融合,这是由我们称为“促进子”和“探针”的特定细胞类型介导的。第三类细胞,“衍生”,能够在凝胶中快速移动并且不粘附。这些单元格类型从未被描述过。我们的数据表明体外肿瘤发生是一个发展过程,涉及由专门细胞促进的聚结,该细胞最终在具有复杂结构的大空心球体中达到顶点。选择的单克隆抗体对这些过程的独特作用证明了该模型用于分析抗癌药物机理的有用性。

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