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用于承载和监测三维细胞培养的有机电子跨膜装置。

Organic electronic transmembrane device for hosting and monitoring 3D cell cultures.

作者信息

Pitsalidis Charalampos, van Niekerk Douglas, Moysidou Chrysanthi-Maria, Boys Alexander J, Withers Aimee, Vallet Romane, Owens Róisín M

机构信息

Department of Physics and Healthcare Engineering Innovation Center (HEIC), Khalifa University of Science and Technology, P. O. Box 127788, Abu Dhabi, UAE.

Department of Chemical Engineering and Biotechnology, University of Cambridge, Philippa Fawcett Drive, Cambridge CB3 0AS, UK.

出版信息

Sci Adv. 2022 Sep 16;8(37):eabo4761. doi: 10.1126/sciadv.abo4761.

Abstract

3D cell models have made strides in the past decades in response to failures of 2D cultures to translate targets during the drug discovery process. Here, we report on a novel multiwell plate bioelectronic platform, namely, the e-transmembrane, capable of supporting and monitoring complex 3D cell architectures. Scaffolds made of PEDOT:PSS [poly(3,4-ethylenedioxythiophene):polystyrene sulfonate] are microengineered to function as separating membranes for compartmentalized cell cultures, as well as electronic components for real-time in situ recordings of cell growth and function. Owing to the high surface area-to-volume ratio, the e-transmembrane allows generation of deep, stratified tissues within the porous bulk and cell polarization at the apico-basal domains. Impedance spectroscopy measurements carried out throughout the tissue growth identified signatures from different cellular systems and allowed extraction of critical functional parameters. This platform has the potential to become a universal tool for biologists for the next generation of high-throughput drug screening assays.

摘要

在过去几十年中,由于二维细胞培养在药物发现过程中无法将靶点转化为实际成果,三维细胞模型取得了长足进展。在此,我们报告了一种新型的多孔板生物电子平台,即电子跨膜平台,它能够支持和监测复杂的三维细胞结构。由PEDOT:PSS[聚(3,4 - 乙撑二氧噻吩):聚苯乙烯磺酸盐]制成的支架经过微工程处理,既作为分隔细胞培养的分离膜,又作为用于实时原位记录细胞生长和功能的电子元件。由于高表面积与体积比,电子跨膜平台能够在多孔主体内生成深层、分层的组织,并在顶端 - 基部区域实现细胞极化。在整个组织生长过程中进行的阻抗谱测量识别出了来自不同细胞系统的特征,并能够提取关键的功能参数。该平台有潜力成为生物学家用于下一代高通量药物筛选试验的通用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42bc/9481123/7cd30b4204c2/sciadv.abo4761-f1.jpg

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