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用于评估电穿孔效果的新型 3D 细胞生长支架。

A Novel 3D Scaffold for Cell Growth to Asses Electroporation Efficacy.

机构信息

Department of Industrial Engineering, University of Padova, 35131 Padova, Italy.

Department of Theoretical and Applied Sciences, University of Insubria, 21100 Varese, Italy.

出版信息

Cells. 2019 Nov 19;8(11):1470. doi: 10.3390/cells8111470.

Abstract

Tumor electroporation (EP) refers to the permeabilization of the cell membrane by means of short electric pulses thus allowing the potentiation of chemotherapeutic drugs. Standard plate adhesion 2D cell cultures can simulate the in vivo environment only partially due to lack of cell-cell interaction and extracellular matrix (ECM). In this study, we assessed a novel 3D scaffold for cell cultures based on hyaluronic acid and ionic-complementary self-assembling peptides (SAPs), by studying the growth patterns of two different breast carcinoma cell lines (HCC1569 and MDA-MB231). This 3D scaffold modulates cell shape and induces extracellular matrix deposit around cells. In the MDA-MB 231 cell line, it allows three-dimensional growth of structures known as spheroids, while in HCC1569 it achieves a cell organization similar to that observed in vivo. Interestingly, we were able to visualize the electroporation effect on the cells seeded in the new scaffold by means of standard propidium iodide assay and fluorescence microscopy. Thanks to the presence of cell-cell and cell-ECM interactions, the new 3D scaffold may represent a more reliable support for EP studies than 2D cancer cell cultures and may be used to test new EP-delivered drugs and novel EP protocols.

摘要

肿瘤电穿孔(EP)是指通过短电脉冲使细胞膜穿孔,从而增强化疗药物的作用。标准的平板贴壁 2D 细胞培养由于缺乏细胞-细胞相互作用和细胞外基质(ECM),只能部分模拟体内环境。在这项研究中,我们评估了一种基于透明质酸和离子互补自组装肽(SAP)的新型 3D 细胞培养支架,研究了两种不同乳腺癌细胞系(HCC1569 和 MDA-MB231)的生长模式。这种 3D 支架调节细胞形状并诱导细胞周围细胞外基质的沉积。在 MDA-MB 231 细胞系中,它允许形成称为球体的三维结构生长,而在 HCC1569 中,它实现了类似于体内观察到的细胞组织。有趣的是,我们能够通过标准碘化丙啶测定法和荧光显微镜观察到在新支架中接种的细胞的电穿孔效应。由于存在细胞-细胞和细胞-ECM 相互作用,新的 3D 支架可能比 2D 癌细胞培养更能可靠地支持 EP 研究,并可用于测试新的 EP 输送药物和新的 EP 方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f10/6912677/657b28dbce7b/cells-08-01470-g001.jpg

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