三维倒置胶体晶体在现实细胞迁移测定药物筛选应用。

IF 1.4
Joakim da Silva, Franziska Lautenschläger, Cheng-Hwa R Kuo, Jochen Guck, Easan Sivaniah
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引用次数: 13

摘要

除了靶向粘附和蛋白水解外,筛选药物对细胞力学的特定影响对于成功调节包括癌症转移在内的浸润性疾病的迁移至关重要。我们提出由水凝胶制成的3D倒置胶体晶体作为一种现实的细胞迁移实验,其中几何形状和刚度可以独立设置,以模拟所讨论的组织要求。我们通过调查影响细胞力学的常用细胞骨架毒素的作用,展示了这种3D分析用于药物筛选目的的实用性,特别是与传统的2D迁移研究相比。该分析允许研究大细胞数量的良好统计,但在单细胞分辨率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D inverted colloidal crystals in realistic cell migration assays for drug screening applications.

Screening drugs for their specific impact on cell mechanics, in addition to targeting adhesion and proteolysis, will be important for successfully moderating migration in infiltrative disorders including cancer metastasis. We present 3D inverted colloidal crystals made of hydrogel as a realistic cell migration assay, where the geometry and stiffness can be set independently to mimic the tissue requirements in question. We show the utility of this 3D assay for drug screening purposes, specifically in contrast to conventional 2D migration studies, by surveying the effects of commonly used cytoskeletal toxins that impact cell mechanics. This assay allows studying large cell numbers for good statistics but at single-cell resolution.

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