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首页> 外文期刊>Tissue engineering, Part C. Methods >A Three-Dimensional In Vitro Coculture Model to Quantify Breast Epithelial Cell Adhesion to Endothelial Cells
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A Three-Dimensional In Vitro Coculture Model to Quantify Breast Epithelial Cell Adhesion to Endothelial Cells

机译:一种三维体外共培养模型,以量化乳腺上皮细胞对内皮细胞的粘附性

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摘要

Three-dimensional (3D) in vitro culture models better recapitulate the tissue microenvironment, and therefore may provide a better platform to evaluate therapeutic effects on adhesive cell-cell interactions. The objective of this study was to determine if AD-01, a peptide derivative of FK506-binding protein like that is reported to bind to the adhesion receptor CD44, would induce a greater reduction in breast epithelial spheroid adhesion to endothelial tube-like networks in our 3D coculture model system compared to two-dimensional (2D) culture. MCF10A, MCF10A-NeuN, MDA-MB-231, and MCF7 breast epithelial cells were pretreated with AD-01 either as single cells or as spheroids. Breast epithelial cell adhesion to 2D tissue culture substrates was first measured, followed by spheroid formation (breast cell-cell adhesion) and spheroid adhesion to Matrigel or endothelial networks. Finally, CD44 expression was quantified in breast epithelial cells in 2D and 3D culture. Our results show that AD-01 had the largest effect on spheroid formation, specifically in breast cancer cell lines. AD-01 also inhibited breast cancer spheroid adhesion to and migration along endothelial networks. The different breast epithelial cell lines expressed more CD44 when cultured as 3D spheroids, but this did not universally translate into higher protein levels. This study shows that 3D coculture models can enable unique insights into cell adhesion, migration, and cell-cell interactions, thereby enhancing understanding of basic biological mechanisms. Furthermore, such 3D coculture systems may also represent a more relevant testing platform for understanding the mechanism-of-action of new therapeutic agents. Impact Statement Cell adhesion is inherently different in two dimensional (2D) compared to three dimensional (3D) culture; yet, most adhesion assays in academia and industry are still conducted in 2D because few simple, yet effective, adhesion models exist in 3D. Recently we developed a 3D in vitro coculture model to examine breast epithelial spheroid interactions with endothelial tubes. We now show that this 3D coculture model can effectively be used to interrogate and quantify drug-induced differences in breast epithelial cell adhesion that are unique to 3D cocultures. This 3D coculture adhesion model can furthermore be modified for use with other cell types to better predict drug effects on cell-vasculature adhesion.
机译:三维(3D)体外培养模型更好地重新延长组织微环境,因此可以提供更好的平台,以评估对粘合细胞 - 细胞相互作用的治疗效果。本研究的目的是确定AD-01,据报道呈粘附受体CD44结合的FK506结合蛋白的肽衍生物,将诱导乳腺上皮球体粘附到内皮管状网络中的更大减少我们的3D共养模型系统与二维(2D)文化相比。用Ad-01预处理MCF10A,MCF10A-NeUN,MDA-MB-231和MCF7乳房上皮细胞作为单细胞或作为球体。首先测量乳腺上皮细胞对2D组织培养基材的粘附,然后用球形形成(乳房细胞 - 细胞粘附)和对基质内皮网络的球形粘附。最后,在2D和3D培养的乳腺上皮细胞中定量了CD44表达。我们的研究结果表明,AD-01对乳腺癌细胞系具有最大的球形形成效果。 AD-01还抑制乳腺癌球体粘附和沿内皮网络迁移。当培养为3D球状体时,不同的乳房上皮细胞系表达了更多CD44,但这并未普遍平化为更高的蛋白质水平。该研究表明,3D共培养模型可以实现独特的见解,进入细胞粘附,迁移和细胞间相互作用,从而提高对基本生物机制的理解。此外,这种3D共培育系统还可以代表更相关的测试平台,以理解新的治疗剂的作用机制。与三维(3D)培养相比,冲击声明细胞粘附在二维(2D)中固有不同;然而,学术界和工业中大多数粘附测定仍然在2D中进行,因为少数简单但有效,粘合模型都存在于3D中。最近,我们开发了一种体外共培养模型,以检查与内皮管的乳房上皮球体相互作用。现在我们现在表明,该3D共培育模型可以有效地用于询问和量化药物诱导的乳腺上皮细胞粘附差异,这些乳房上皮细胞粘附是三维共培育的粘连。此外,该3D共培养粘合模型还可以改性与其他细胞类型一起使用,以更好地预测对细胞血管粘附的药物影响。

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